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  • Biotechnology Projects for B.Sc, M.Sc & M.Tech

These are the Bio Technology Projects Titles for M.Tech/M.Sc/B.Sc Bio-Technology Students. These projects can be useful for Department of Biotechnology and Bioinformatics Students.

Here is a list of topics related to the fields of biology and biotechnology:

Bio Technology Projects

  • Examining Protein Aggregation and Toxicity through the Cloning of TTR-GFP in a Yeast Vector
  • Investigating Embryo Rescue Techniques in Grape Cultivation
  • Investigating the Neuroprotective Properties of Withania Somnifera Root Extract in Mouse Models of Maneb-Paraquat Parkinsonism
  • An Overview of the Working Principles and Applications of Analytical Instruments
  • Standardizing the Preparation of Sweet and Sour Soybean Pickle
  • Developing a Nutraceutical Supplement for Pregnant Women
  • The Benefits of Tissue Culture in Horticultural Practices
  • Improving the Specific Activity of Carboxyl Esterase for Drug Metabolism in Brain Tumor Cell Lines through Structural Modification with Lithium
  • Investigating the Effects of Zinc Oxide and Silver Nanoparticles on Biological Systems
  • Understanding the Mechanisms of Multidrug Resistance in Bacterial Pathogens.
  • An Exploration of Municipal Solid Waste Biogas Production and its Upgradation Through Cost-Effective Methods
  • Investigating Non-Invasive Prenatal Genetic Testing in the European Market
  • Assessing Antifungal Drug Sensitivity to Aspergillus Terreus and Aspergillus Flavus
  • Utilizing Biochar for Wastewater Treatment and Valuable Product Recovery
  • The Potential of Biochar for Capturing and Storing Carbon Dioxide (CO2)
  • Examining the Mechanisms, Tolerance, and Treatment of Hospital-Acquired Infections Caused by Biofilm
  • A Study on the Production of Biogas Using Co-digestion of Apple Pomace and Pine Needles
  • Bioleaching of Gold and Silver from Mobile Phone Printed Circuit Boards (MPPCBs) Using Pseudomonas Balearica SAE1
  • Understanding Biosimilars and Biosimilarity Identification
  • A Market Analysis of Cell Therapy Manufacturing.
  • An Assessment of Bio-similar Drugs for Treating Auto-Immune Disorders in the European Market
  • Bio-similar Comparison for Treating Auto-Immune Disorders in the European Market
  • Computational Analysis of Podophyllum Species and Scientific Validation of Medicinal and Aromatic Plants
  • Computational and Experimental Study of Alzheimer’s Disease Pathways with Emphasis on DNA Repair and Autophagy
  • Constructing an Anti-sense Knockout Mutant of Mycobacterium Fortuitum LipU and Its In-silico Analysis of Pathogenesis
  • Domestic System-based Cultivation of Agricus Biporus
  • Identifying the Genes Responsible for Quorum Sensing in Cronobacter Sakazakii
  • Enzymatic Conversion of Mustard Oil into Bio-jet Fuel
  • Testing Commercial Probiotics against Cronobacter Sakazakii
  • Exploring High Temperature Stress Responsive Genes in Potato During Tuberization Using Yeast Functional Screening.
  • Purification and Application of Cas12 (Lbcpf1) in Detection of Tomato Leaf Curl New Delhi Virus-Potato
  • Genetic Expression Analysis of Rhodiola Imbricata for Production and Biosynthesis of Medicinal Compounds
  • Fabrication of Microfluidic Devices using 3D Printing Technology
  • Development and Testing of Soft Gelatin Capsules
  • Assessment of Functional Properties of Soymilk Protein Hydrolysate
  • Global Market Study of Therapeutic Vaccines
  • Structural and Functional Analysis of Glucose Transporters and Their Role in Glucose Transport
  • College Campus Ground Survey Using Plane Table Method
  • Ground Survey Using Dumpy Level Instrument
  • Ground Survey Utilizing Prismatic Compass Technique.
  • Allergen Analysis of Pomfret Fish
  • Predictive Analysis of Potential Drug Targets and Molecules for Campylobacter Jejuni
  • Structural and Functional Analysis of Bacillus Megaterium Arginase through Computational Methods
  • In-Silico Investigation of Bacillus megaterium Asparaginase Functionality by Manisha Thakur
  • Computer-based Analysis of Commercially and Medicinally Significant Phytochemicals in Bauhinia Variegata
  • Exploring the Therapeutic Potential of Mushroom Products in the Fight Against COVID-19
  • The Effect of Quercetin and Rutin on Behavioral Dysfunctions Associated with Diabetes in Swiss Albino Mice
  • Isolation and Identification of Carbonic Anhydrase-Producing Bacterial Strains for CO2 Utilization
  • Management of Arteriosclerosis in the United States
  • Systematic Review of the TNF-α -308 G/A Polymorphism’s Role in Genetic Vulnerability to Vitiligo.
  • Estimating Methane Emissions from Apple Pomace
  • Micropropagation and Molecular Characterization of Picrorhiza Kurroa Chemotypes for Picroside-1 Production
  • Microencapsulating Probiotics with Milk-based Extrusion Method
  • Exploring Extremophilic Microbial Communities in Himachal Pradesh
  • Characterizing Rhodiola Imbricata for Biosynthesis of Salidroside and Rosavin
  • Monitoring Fecal Coliform Bacteria and Plant Growth Promotion
  • Determining the Longitudinal Profile of Mula River using Dumpy Level
  • Studying the Role of Serpini1 Gene in Alzheimer’s Disease through Mutational, Docking, and Simulation Studies and its Experimental Assay with Ascorbic Acid
  • Biogenic Synthesis of Noble Metal Nanoparticles using Natural Saccharides and their Applications in Biomedical Sciences
  • Optimizing the Hardening Conditions for Rhodiola Imbricata and Valeriana Jatamansi.
  • Optimizing Metal Leaching Bacteria through In Silico Analysis of Protein Expression and Pathways
  • In Vitro Studies on the Overexpression of Isocitrate Lyase in Mycobacterium Fortuitum
  • Development and Characterization of Phytase Supplement for Aquafeed from Bacillus Spp.
  • Quantifying Rare Phytochemicals in Arisaema propinquum
  • Food Beverage and Product Preparation
  • Characterizing Esterase Producing Bacterial Strains for Production
  • Enhancing Nutritional Content in Sauerkraut and Evaluating its Production
  • Enhancing Nutritional Value in Tempeh: Production and Evaluation
  • Molecular Characterization of Gentiopicroside in Gentiana kurroo and Swertia chirata
  • Biopolymer Production from Food Waste.
  • Utilizing Phytochemicals to Combat Mycotoxin-Producing Aspergilli and Penicillium Species: Recent Trends
  • Investigating the Role of the SNP Rs510432 of the ATG5 Gene in Asthma Susceptibility
  • Examining the Association of TYR Gene Variants with Vitiligo in the Himachal Pradesh Population
  • Characterizing Lignocellulosic Enzymes from Thermophilic Bacterial Isolates in the Anaerobic System
  • Discovering Potent Natural Compounds for Disinfection
  • Assessing the Wound Healing Potential of Phytochemicals from Azadirachta Indica and Curcuma Longa using Cell Line-Based Assays
  • Investigating the Role of the Trem2 Gene in Alzheimer’s Disease through Structural, Functional, and Evolutionary Mutational Analysis
  • The Role of Chemical Disinfectants as Antimicrobials
  • Examining the Degradation Kinetics of Wheat and Barley Proteins by Actobacillus paracasei CD4
  • Evaluating Natural Antimicrobial Compounds Against Bacterial Isolates
  • Characterizing Quercetin-Loaded Polycaprolactone Microparticles
  • Analyzing the Potential Effect of Copper Nanoparticles on Drosophila melanogaster through Green Synthesis of Copper Nanoparticles
  • Synthesizing and Investigating the Application of Silver Nanoparticles in Catalysis
  • Synthesizing, Characterizing, and Evaluating the Cytotoxicity of the Short Cationic Lipopeptide Lp24
  • Enhancing the Efficacy of Vitamin D2 on Cell Lines Using Cissus Quadrangularis
  • Investigating the Interactions of EGFR in Non-Small Cell Lung Cancer Using Virtual Screening and Molecular Docking of Protein Ligands.

Related Projects

  • BIO Medical Projects
  • Biotechnology Projects Ideas
  • Biotechnology Projects Work
  • Biotechnology Projects Education
  • Biotechnology Projects Topics

College of Science

Biotechnology.

The MS in Biotechnology program was created to respond to regional and national needs for a stronger scientific workforce by preparing our students with the biotechnology expertise and professional skills they need to be immediately productive in industrial, governmental, and clinical settings.

Northeastern’s MS in Biotechnology is an innovative, non-thesis graduate degree program. The curriculum of this professional science master’s combines advanced interdisciplinary training in biology, chemistry, chemical engineering, and pharmaceutical science with the development of high-value business skills critical to success in today’s dynamic workplace. Graduates are prepared to innovate, collaborate, and lead as research, managerial, or technical professionals in a wide range of biotechnology specialties. The program is taught by respected faculty who are also senior leaders in their fields. They bring extensive experience, first-hand knowledge of industry trends, and assure that the curriculum is rigorous, current, and relevant.

Students choose from concentrations in which core courses are combined with specialization and elective study. All concentrations feature a co-op work experience with an industry, academic, or government employer. All concentrations except the biotechnology enterprise concentration include a hands-on lab experience and opportunities to take part in independent work in research labs. The following concentrations are available on our Boston campus:

The agricultural concentration  goes beyond the production of biological drugs and focuses on the key agricultural biotechnology (agritech) principles and methods used today. Successful students learn the principles of agritech and the role they play in the concepts and fundamentals of agriculture today. The concentration addresses plant, animal, food, and ecological biotechnology.  The learning of the students is reinforced by both lecture courses and project-driven laboratory experience that provides hands-on learning of modern agricultural methodologies.

The biodefense concentration  prepares students for the initial homeland biodefense and bioterrorism response. Successful students learn the microbiology and epidemiology of biological agents that are potential threats, identify and propose countermeasures, and develop expertise in response and recovery strategies and policies. The learning combines the foundational biotechnology courses with case-based and hands-on bioethical, biowarfare, and bioterrorism courses.

The molecular biotechnology concentration provides students with didactic and practical knowledge in molecular biotechnology, protein expression, and structural biology. Students learn how to generate and optimize molecular forms used to express recombinant proteins to be used as biopharmaceuticals. Particular attention is paid to cutting-edge technologies such as RNAi and CRISPR/CAS9. In addition, the students learn how to purify biopharmaceuticals and analyze aggregation and how to prevent it.

The process science concentration focuses on the production of drug substance of biopharmaceuticals from the cell culture process to purification of biologic molecules. The students learn the principles of development and implementation of biological manufacturing processes through the integration of concepts and fundamentals of engineering and life sciences. The concentration addresses biochemical engineering, mammalian cell culture process development, and protein purification. The learning of the students is reinforced by both lecture courses and project-driven laboratory experience that provides hands-on learning of cell culture and protein separation.

The  manufacturing and quality operations concentration  trains students to ensure the production of quality medicines. Students will improve their competency and learn new practical skills, enabling them to increase productivity in various sectors of biotechnology—including basic research of biological systems, discovery, development, and manufacturing of biopharmaceuticals.

The biopharmaceutical analytical sciences concentration focuses on structures and activities of biological molecules and their variants formed during the production of biopharmaceuticals. Students learn the diversity of molecular forms derived from the biological products through various biological and chemical mechanisms, and the impact of these structural changes on the safety and efficacy of these biopharmaceuticals. The students learn the science and practice applied in the biotechnology industry to analyze and characterize these molecular forms. This is accomplished through both lecture courses of the analytical sciences and project-driven laboratory experience that utilizes analytical techniques such as mass spectroscopy and molecular separations.

The pharmaceutical technologies concentration focuses on the conversion of purified proteins to biopharmaceutical drug products that are compatible for clinical use. This concentration addresses the design of the product formulation, and the development and implementation of the drug product manufacturing processes. Students learn the sciences of the interactions of the biologic molecules in the process conditions and the relevant process technology, such as aseptic operations and freeze-drying, needed for drug product manufacturing. This is accomplished through both lecture courses and project-driven laboratory experience that provides hands-on learning of formulation design and drug product process development.

The scientific information management concentration focuses on the collection, analysis, and visualization of scientific data. This concentration addresses the issues surrounding big data that face industry today. Students learn how to manage, store, visualize, and provide overall analysis of large scientific data sets. This is accomplished through both lecture courses and project-driven laboratory experiences that provide hands-on learning of the impacts of data on the scientific process.

The biotechnology   regulatory science concentration focuses on the science behind good regulatory practice today. This concentration addresses the issues surrounding current and innovative science practices that influence regulatory decisions. Students learn the science behind compliance. This is accomplished through both lecture courses and project-driven laboratory experiences that provide hands-on learning of the science behind dossier analysis.

The biotechnology enterprise concentration integrates business and management skills with the science of biotechnology. Students learn the fundamental concepts of leadership, entrepreneurship and innovation, financial decision making, and marketing. They gain teamwork, management, and business development skills in the process and graduate prepared to become scientist-managers. Some of the specialization courses for this concentration are offered only online.

Students are not required to declare a concentration. With the  elective option,  students select 17 credits of electives in place of concentration-specific courses.

More Details

Unique features.

  • Online format enables working students to pursue their degrees while maintaining work and family commitments
  • Three available concentrations
  • Two-week Boston residency required for some concentrations
  • Industry aligned faculty
  • Opportunities to participate in hands-on lab experience
  • Optional Co-op experience with a leading industry employer

Career Outlook

The multi-billion-dollar biotechnology industry is diverse, growing, and filled with opportunity. Individuals with advanced scientific knowledge, intellectual flexibility, drive, and professional skills can pursue paths of innovation with the potential to meet critical healthcare and environmental challenges—and to change lives. The industry’s unparalleled growth is projected to continue in the coming years. The result is an ongoing expansion of career opportunities on every level and in every industry sector, from large pharmaceutical operations to entrepreneurial biotechnology start-ups.

Testimonials

Neil sheth, class of '23, vasudev j., program graduate, greg zarbis-papastoitsis, lecturer, dr. jared auclair, academic director, biotechnology, looking for something different.

A graduate degree or certificate from Northeastern—a top-ranked university—can accelerate your career through rigorous academic coursework and hands-on professional experience in the area of your interest. Apply now—and take your career to the next level.

Program Costs

Finance Your Education We offer a variety of resources, including scholarships and assistantships.

How to Apply Learn more about the application process and requirements.

Requirements

  • Online application
  • Application fee
  • Transcripts from all institutions attended
  • Personal statement
  • 2 letters of recommendation
  • GRE not required
  • Degree earned or in progress at a U.S / Canadian institution
  • Degree earned or in progress at an institution where English is the only medium of instruction
  • Official exam scores from either the TOEFL iBT (institution code is 3682), IELTS, PTE exam, or Duolingo English Test. Scores are valid for 2 years from the test date.

Learn more about applying to the College of Science.

Are You an International Student? Find out what additional documents are required to apply.

Admissions Details Learn more about the College of Science admissions process, policies, and required materials.

Admissions Dates

Learn more about applying to the College of Science and our admissions deadlines.

Industry-aligned courses for in-demand careers.

For 100+ years, we’ve designed our programs with one thing in mind—your success. Explore the current program requirements and course descriptions, all designed to meet today’s industry needs and must-have skills.

View curriculum

Students in the MS in Biotechnology program gain real-world knowledge, awareness, perspective, and confidence during a three- to six-month graduate co-op in industry, academia, or government. As the recognized leader in experiential learning and a trusted source of high-caliber students, Northeastern boasts a network of more than 3,000 public and private sector co-op locations on seven continents. Recent biotechnology co-op placements have included Biogen Idec, EMD Serono/Millipore, Harvard Medical School, Medimmune, Momenta Pharmaceuticals, New England Biolabs, Regeneron, Novartis, and Genzyme, among others.

Our Faculty

Northeastern University faculty represents a broad cross-section of professional practices and fields, including finance, education, biomedical science, management, and the U.S. military. They serve as mentors and advisors and collaborate alongside you to solve the most pressing global challenges facing established and emerging markets.

Tony Graffeo

Tony Graffeo

Stephan Hatfield

Stephan Hatfield

Kevin Broadbelt

Kevin Broadbelt

Jared Auclair

Jared Auclair

Daniel Dixon

Daniel Dixon

Christa Dhimo

Christa Dhimo

By enrolling in Northeastern, you’ll gain access to students at 13 campus locations, 300,000+ alumni, and 3,000 employer partners worldwide. Our global university system provides students unique opportunities to think locally and act globally while serving as a platform for scaling ideas, talent, and solutions.

Below is a look at where our Science & Mathematics alumni work, the positions they hold, and the skills they bring to their organization.

Where They Work

  • State Street
  • Liberty Mutual Insurance

What They Do

  • Engineering
  • Business Development
  • Information Technology

What They're Skilled At

  • Project Management
  • Data Analysis

Learn more about Northeastern Alumni on  Linkedin.

Related Articles

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How to Choose a Biotechnology Concentration

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Choosing the Best Biotechnology Master’s Program

online projects for msc biotechnology students

Should You Get a Master’s or a PhD in Biotechnology?

Biotechnology Master’s Degree Program

Online Courses

11 out of 12 total courses

On-Campus Experience

1 week course in January

$3,220 per course

Gain insight into the latest biotechnology discoveries and trends.

Develop a solid foundation in research and innovation.

Program Overview

Through the master’s degree in the field of biotechnology you:

  • Develop an understanding of biotechnology theory and research, including human physiology and genetics, cancer, proteomics, genomics, and epigenetics.
  • Build knowledge of current industry practices, including biotechnology innovation and molecular biology techniques.
  • Gain experience in experimental or case study design, scientific data analysis, writing and communication, ethical practices, and effective collaboration.

Program Benefits

A faculty of biotech professionals and life science instructors from Harvard University

Personalized academic and career advising

Option to produce a capstone project focused on biotechnology innovation

Internship track to explore a topic in bioinformatics, biotech management, or project management

Entrepreneurial opportunities through the Harvard Innovation Labs

Harvard Alumni Association membership upon graduation

Customizable Course Curriculum

Our curriculum is flexible in pace and customizable by design. You’ll experience the convenience of online learning and the immersive benefits of learning in person. You can study part time, choosing courses that fit your schedule and align with your professional goals.

As you work through the 12-course program, you’ll have the opportunity to examine topics like evolutionary genetics in epidemiology, biomedical product development, neurobiology, and biomedical imaging. You’ll choose between two tracks — a capstone or an internship — and visit Cambridge for an immersive in-person experience.

11 Online Courses

  • Fall, spring, January, and summer options
  • Asynchronous and synchronous formats

Capstone or Internship Track

Create a capstone project focused on innovation in biotech, or complete an internship to explore a topic in bioinformatics, biotech management, or project management.

Come to campus for 1 week in January to attend Genetown , a course where you engage with the vibrant biotech community in Cambridge.

The path to your degree begins before you apply to the program.

First, you’ll register for and complete 3 required courses, earning at least a B in each. These foundational courses are investments in your studies and count toward your degree, helping ensure success in the program.

Getting Started

We invite you to explore degree requirements, confirm your initial eligibility, and learn more about our unique “earn your way in” admissions process.

Earning a Stackable Certificate

As you work your way toward your master’s degree, you can take courses that also count — or “stack” — toward a certificate. It’s a cost-effective, time-saving opportunity to build specialized skills and earn a professional credential along the way to your degree.

  • Bioinformatics Graduate Certificate
  • Biotechnology Management Graduate Certificate
  • Innovation and Entrepreneurship Graduate Certificate

A Faculty of Biotechnology Experts

You’ll learn from Harvard faculty and industry leaders who will help you gain real-world perspectives. Our instructors are renowned experts in the field of biotechnology and bring a genuine passion for teaching, with students giving our faculty an average rating of 4.6 out of 5.

Masha Fridkis-Hareli

Founder and President, ATR, LLC

Our Community at a Glance

Students in the biotechnology degree program are accomplished professionals who are pursuing the degree to continue their career advancement. They work in fields like biotech, academic research, pharmaceuticals.

Download: Biotechnology Master's Degree Fact Sheet

Average Age

Average Courses Taken Each Semester

Work Full Time

Would Recommend the Program

Professional Experience in the Field

Career Opportunities & Alumni Outcomes

Our biotechnology graduates have gone on to PhD programs in the fields of AI and machine learning, cell and systems biology, proteomics, pharmacy, genetics, and neurogenetics at national universities. They are employed in the field of biotechnology and related industries such as pharmaceuticals, hospital and health care, and medical devices.

Roles held by recent graduates include: 

  • Antibody Engineer
  • Biotechnology Engineer
  • Computational Biologist
  • Data Scientist
  • Field Application Specialist
  • Senior R&D Manager

Alumni work at a variety of organizations, including:

  • Boston Children’s Hospital
  • Broad Institute
  • New England BioLabs
  • Wyss Institute

Career Advising and Mentorship

Whatever your career goals, we’re here to support you. Harvard’s Mignone Center for Career Success offers career advising, employment opportunities, Harvard alumni mentor connections, and career fairs like the annual Harvard Biotech, Pharma, & Healthcare Expo on campus at Harvard.

Your Harvard University Degree

Upon successful completion of the required curriculum, you will receive your Harvard University degree — a Master of Liberal Arts (ALM) in Extension Studies, Field: Biotechnology.

Expand Your Connections: The Harvard Alumni Network

As a graduate, you’ll become a member of the worldwide Harvard Alumni Association (400,000+ members) and Harvard Extension Alumni Association (29,000+ members).

I leave not only with a master’s degree and certificate, but also a business plan and the knowledge, experiences, and resources that allow me to take this idea I had and turn it into something that can help others.

Tuition & Financial Aid

Affordability is core to our mission. When compared to our continuing education peers, it’s a fraction of the cost.

After admission, you may qualify for financial aid . Typically, eligible students receive grant funds to cover a portion of tuition costs each term, in addition to federal financial aid options.

Related Programs

  • Biology Master’s Degree Program

Harvard Division of Continuing Education

The Division of Continuing Education (DCE) at Harvard University is dedicated to bringing rigorous academics and innovative teaching capabilities to those seeking to improve their lives through education. We make Harvard education accessible to lifelong learners from high school to retirement.

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BioLim Pre-Industrial Internship Programmes

Currently available pre-industrial internships in online mode.

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Biotechnology Projects

Biotechnology academic project topic / title choice criteria:.

Choice Criteria represent the specific benchmarks, factors, or attributes considered when selecting academic projects, guiding decision-making and evaluation. Please scroll down to check various topics / titles allocated for Biotechnology Student Projects.

Capabilities in academic project navigation under Biotechnology:

Highlighting capabilities in academic project navigation, we excel in agile planning, precise execution, and comprehensive documentation. Our expertise spans adept navigation through project complexities. Biotechnology Academic Project Expertise at NTHRYS Biotech Labs Exploring Biotechnology Research Frontiers + Multifaceted Research Ventures : Engage in diverse Biotechnology research methodologies employing advanced tools for robust data analysis and impactful outcomes. In-depth Case Studies : Immersive Biotechnology case studies demonstrating adept problem-solving strategies and successful resolutions for complex academic challenges. Hands-on Experimental Initiatives : Detailed Biotechnology experimental procedures, exploring controlled variables and deriving compelling conclusions. Interdisciplinary Knowledge Integration : Demonstrating adaptability and holistic understanding across Biotechnology disciplines, fostering innovative collaborations. Empowering Skills for Biotechnology Excellence + Advanced Data Interpretation : Proficiency in SPSS, R, Python, and other tools for in-depth Biotechnology data analysis, driving informed insights. Versatile Programming Proficiency : Mastery in MATLAB, Java, C++, and other languages, facilitating seamless Biotechnology project development. Precision in Lab Techniques : Expertise in PCR, chromatography, and other advanced methods ensuring precise Biotechnology experimentation. Seamless Software Application : Command over CAD, GIS, simulations, enhancing Biotechnology project efficacy and outcomes. Strategic Project Governance + Meticulous Planning and Execution : Strategic Biotechnology project planning, resource allocation, and adherence to timelines for successful completion. Effective Team Synergy : Adept teamwork and leadership within Biotechnology environments, ensuring synergy and successful project outcomes. Adaptive Problem-solving Approach : Adapting to unforeseen challenges in Biotechnology projects, showcasing strategic solutions. Dissemination and Recognition + Impactful Academic Publications : Compilations of impactful Biotechnology academic papers and publications, emphasizing relevance and significant field impacts. Engaging Conference Presentations : Presenting at prestigious Biotechnology conferences, disseminating crucial findings and sparking insightful discussions. Interactive Knowledge Sharing : Engaging sessions showcasing Biotechnology project discoveries, fostering broader discussions and knowledge sharing. Recognitions and Milestones + Significant Project Impacts : Highlighting significant Biotechnology project impacts, underscoring contributions to academia and industry advancements. Acknowledgments and Awards : Recognition through awards and scholarships for pioneering Biotechnology studies and academic excellence.

Research-Centric Student Project Workflow

Topic Selection and Literature Review + Purpose: Students explore various topics within their field of interest and conduct an extensive review of existing literature. Activities: Identifying research gaps, formulating initial ideas, and comprehensively reviewing relevant scholarly articles, books, and publications. Outcome: Clear understanding of existing knowledge and identification of a niche for potential research. Formulating Research Hypotheses + Purpose: Crafting specific hypotheses or research questions based on the gaps identified in the literature. Activities: Refining ideas into testable hypotheses or research questions that guide the experimental process. Outcome: Clear articulation of the research focus and the expected outcomes. Experimental Design and Ethical Approval + Purpose: Designing a structured plan outlining the methodology and procedures for conducting experiments. Activities: Determining variables, controls, and methodologies while ensuring ethical considerations are addressed. Outcome: Detailed experimental protocol and submission of proposals for ethical approval if necessary. Experiment Execution and Data Collection + Purpose: Implementation of the designed experiments and systematic collection of relevant data. Activities: Conducting experiments as per the outlined protocol, recording observations, and gathering data. Outcome: Raw data obtained from experiments for further analysis. Data Analysis and Interpretation + Purpose: Analyzing collected data to derive meaningful conclusions. Activities: Using statistical tools and methodologies to process and interpret data. Outcome: Interpreted data sets leading to preliminary findings and trends. Results Validation and Iterative Experimentation + Purpose: Validating initial results through repeated experimentation or additional analyses. Activities: Checking for consistency in findings, addressing any anomalies, and refining experiments if necessary. Outcome: Confirmed or refined findings, ensuring robustness and reliability. Drafting Research Reports + Purpose: Documenting the entire research process, from methodology to outcomes. Activities: Writing a comprehensive report following academic conventions and guidelines. Outcome: Complete draft containing introduction, methodology, results, and discussion sections. Peer Review and Feedback Incorporation + Purpose: Submitting the draft for review and integrating feedback to enhance quality. Activities: Presenting the report to peers, mentors, or instructors for constructive critique and suggestions. Outcome: Revised report incorporating valuable feedback for improvement. Final Paper Submission or Presentation + Purpose: Finalizing the research document or preparing for a presentation. Activities: Making final revisions based on feedback and preparing to present findings orally, if required. Outcome: Submission of the final research paper or successful presentation. Discussion and Conclusion Integration + Purpose: Summarizing findings and discussing implications and future directions. Activities: Reflecting on the significance of results and tying them back to initial hypotheses or research questions. Outcome: Conclusive insights, implications, and potential avenues for further research.

Exploring Dynamic Biotechnology Landscapes: Varied Topics and Titles Across Below Given Specialized Focussed Research Arenas / Areas

Research areas focussed for project students under biotechnology:.

NTHRYS provides Biotechnology Projects for interested candidates at its Hyderabad facility, Telangana. Please refer below for more details including Fee strctures, Eligibility, Protocols and Modules etc.,. Please do call / message / whatsapp for more details on 9014935156 [India - +91] Eligibility : BSc / BTech / MSc / MTech / MPhil / PhD in any Life Sciences studying or completed students Academic Projects are those works which students belonging to various courses like BSc, BTech, MSc, MTech, MPhil & PhD for partial fullfillment of their respective degrees. What do NTHRYS Provide under these Project Works? Training in Practicals to students who have not done those protocols earlier. Complete [Project Report] Thesis Assistance. Handson Practicals Experience Training in Content Writing with 9% Plagiarism Academic Reviews Assistance Project Presentation Assistance Project Publication Assistance in Scopus Indexed Journals with Impact Factor above 2.5 for required candidates Accommodation Assistance for Students coming from outstations to Hyderabad Topics / Titles Covered Note:Due to certain intellectual constrains complete titles of the topics are not mentioned Transformation of Umbilical cord blood stem cell to cardiomyocytes Isolation and Identification of Neural stem cells from human fetal brain samples Study on the effect of various food grade acidity regulators on the growth of various human stem cells Role of umbilical cord blood stem cells in repairing damaged hepatocytes Role of umbilical cord blood stem cells in repairing damaged pulomonary cells Study on the capabilities of various stem cells in repairing damaged or burnt skin cells Study on the enhancement of stem cell growth in the presence of various biomolecules procured from a variety of plant extracts Isolation and Identification human neural progenitor cells from various stages of human fetus Recombinant Human p53 Recombinant Eryhropoietin Recombinant scFv Fragments Recombinant Granulocyte colony-stimulating factor Recombinant DNA based Vectors for Gene Tharapy Design & Development of Recombinant Viral Vectors Recombinant DNA based non viral Gene Delivery systems design Bacteriophage-plasmid hybrid vectors designing using recombinant DNA technology Translational Research in recombinant DNA Technology Genetic modification of rare herbs for the production of isoquinoline alkaloids Genetic alteration studies in plant salt stress genes Achieving enzyme over expressions using plant biotech strategies Plant biotechnology studies in hairy roots Study on the probabilities of fungal tolerance in selected plants Exploring various genes and pathways for plant biotech applications which are involved in insect pest defence mechanisms using genome wide transcriptomic and proteomic databases Cadmium phytoremediation studies using plant biotechnology approaches Isolation Screening & Production of Biopesticides from natural & commercial strains like BtK, BtI etc.,. Production of Industrially important Enzymes from comercial microorganiss [ Isolation & Screening can be done from natural resources] Production of Antibiotics from commercial fungal & bacterial sources [Natural isolation and screening can be done] Production of Secondary metabolites from selected microorganisms Production of therapeutically important molecules Research studies on Quorum sensing in Plant & Animal microbial pathogens Screening & identification of keratinase producing bacteria from various natural habitats Production of restriction endonucleases from commercial bacterial sources Production of L - Asparaginase Production of Biofungcides   Research Objectives that are focussed at NTHRYS BIOTECH LABS in the Field of Biotechnology: 1. Develop microbial engineering strategies to optimize the production of advanced biofuels (Peralta-Yahya et al., 2012). 2. Investigate metabolic engineering techniques to enhance the production of native metabolites in cells (Nielsen & Keasling, 2016). 3. Explore the use of synthetic biology and systems biology approaches to improve industrial microbial strains (Lee & Kim, 2015). 4. Develop strategies for scaling up metabolic engineering to the industrial level (Nielsen & Keasling, 2016). 5. Investigate the potential of metabolic engineering to produce chemicals, fuels, and materials from renewable resources (Keasling, 2010). 6. Study the application of molecular plant breeding in crop improvement programs (Moose & Mumm, 2008). 7. Investigate the factors influencing the adoption of molecular plant breeding in crop improvement (Moose & Mumm, 2008). 8. Explore the use of nanotechnology in the control, prevention, and treatment of malaria (Rahman et al., 2019). 9. Investigate the potential of nano-biotechnology to create, improve, and utilize nanoscale structures for advanced biotechnology (Rahman et al., 2019). 10. Develop strategies to overcome drug resistance and environmental concerns in the fight against malaria (Rahman et al., 2019). 11. Study the use of natural reagents and plant-based particles for the control of malaria (Rahman et al., 2019). 12. Investigate vector elimination and effective chemotherapy as tactics to combat malaria (Rahman et al., 2019). 13. Examine the challenges of scientific research in molecular biotechnology in specific regions, such as Yemen (Al-hajj & KEKİLLİOĞLU>, 2023). 14. Investigate the use of data-driven and synthetic biology approaches to optimize host and pathways for fuel production (Peralta-Yahya et al., 2012). 15. Study the rewiring of cellular metabolism to enhance the production of new products (Nielsen & Keasling, 2016). 16. Explore the use of state-of-the-art tools of systems biology, synthetic biology, and evolutionary engineering in industrial bioprocesses (Lee & Kim, 2015). 17. Investigate the potential of metabolic engineering to produce a large number of chemicals from simple, readily available starting materials (Keasling, 2010). 18. Study the combination of enzymes or pathways from different hosts to enable the production of specialty chemicals, bulk chemicals, and fuels (Keasling, 2010). 19. Investigate the use of designer cells tailor-made for desired chemicals and production processes (Keasling, 2010). 20. Explore the use of systems approaches in industrial strain development to optimize cellular metabolism (Lee & Kim, 2015). 21. Investigate the complex interactions among metabolic, gene regulatory, and signaling networks in strain development (Lee & Kim, 2015). 22. Study the limitations and challenges of systems metabolic engineering at advanced levels (Lee et al., 2012). 23. Investigate the inclusion of challenging modules on biotechnology in the curriculum to enhance student understanding (Steele & Aubusson, 2004). 24. Explore the use of practical activities and ethical discussions to make biotechnology interesting for students (Steele & Aubusson, 2004). 25. Investigate the historical developments and key principles influencing the practice of molecular plant breeding (Moose & Mumm, 2008). 26. Study the factors influencing the adoption of molecular plant breeding in crop improvement programs (Moose & Mumm, 2008). 27. Investigate the contribution of molecular plant breeding to discoveries of genes and their functions in basic plant biology research (Moose & Mumm, 2008). 28. Explore the potential of nanotechnology in analytical applications (Rahman et al., 2019). 29. Investigate the control, prevention, and treatment of malaria using nanotechnology (Rahman et al., 2019). 30. Study the challenges of drug resistance and environmental concerns in the fight against malaria (Rahman et al., 2019). 31. Investigate the use of lipids, proteins, nucleic acids, and metallic nanoparticles for malaria control (Rahman et al., 2019). 32. Explore the potential of plant-based particles for antagonistic responses against malaria (Rahman et al., 2019). 33. Investigate strategies for vector elimination and effective chemotherapy in the fight against malaria (Rahman et al., 2019). 34. Study the process of scientific research and its importance in biotechnology (Al-hajj & KEKİLLİOĞLU>, 2023). 35. Investigate the application of older biological knowledge and newer approaches in biotechnology (Al-hajj & KEKİLLİOĞLU>, 2023). 36. Explore the responsible use of biotechnology and its societal implications (Al-hajj & KEKİLLİOĞLU>, 2023). Contact for any topic which is not present in the above lists. References in String Format: Al-hajj, M. and KEKİLLİOĞLU>, A. (2023). Challenges Of Scientific Research In Molecular Biotechnology In Yemen. Turkish Journal of Agriculture - Food Science and Technology, 2(11), 338-342. https://doi.org/10.24925/turjaf.v11i2.338-342.5757 Keasling, J. (2010). Manufacturing Molecules Through Metabolic Engineering. Science, 6009(330), 1355-1358. https://doi.org/10.1126/science.1193990 Lee, J., Na, D., Park, J., Lee, J., Choi, S., Lee, S. (2012). Systems Metabolic Engineering Of Microorganisms For Natural and Non-natural Chemicals. Nature Chemical Biology, 6(8), 536-546. https://doi.org/10.1038/nchembio.970 Lee, S. and Kim, H. (2015). Systems Strategies For Developing Industrial Microbial Strains. Nature Biotechnology, 10(33), 1061-1072. https://doi.org/10.1038/nbt.3365 Moose, S. and Mumm, R. (2008). Molecular Plant Breeding As the Foundation For 21st Century Crop Improvement. Plant Physiology, 3(147), 969-977. https://doi.org/10.1104/pp.108.118232 Nielsen, J. and Keasling, J. (2016). Engineering Cellular Metabolism. Cell, 6(164), 1185-1197. https://doi.org/10.1016/j.cell.2016.02.004 Peralta-Yahya, P., Zhang, F., Cardayre, S., Keasling, J. (2012). Microbial Engineering For the Production Of Advanced Biofuels. Nature, 7411(488), 320-328. https://doi.org/10.1038/nature11478 Rahman, K., Khan, S., Fahad, S., Chang, M., Abbas, A., Khan, W., … & Khan, D. (2019). nano-biotechnology: a New Approach To Treat And Prevent Malaria. International Journal of Nanomedicine, (Volume 14), 1401-1410. https://doi.org/10.2147/ijn.s190692 Steele, F. and Aubusson, P. (2004). The Challenge In Teaching Biotechnology. Research in Science Education, 4(34), 365-387. https://doi.org/10.1007/s11165-004-0842-1 What do NTHRYS provide in Biotechnology Projects schedule / module? Certification Issued to candidates doing Biotechnology Projects. Live Practical exposure to all protocols in Biotechnology Projects methodologies. Complete assistance in Thesis / project report making. Complete guidance for reviews in the middle of project works. [Optional] - Accommodation assistance [Lodging & Bording] for girls & Boys separately. Following Plagiarism rule for report making if required by candidates belonging to certain Universities which has such rule. Publication assistance for 5 months & above duration Biotechnology Projects. A website profile to every candidate after completion of project work to facilitate direct project proof to placements / consultancies / feedback checking firms

Fee Strctures for Biotechnology Projects:

Fee reduction chances:.

  • Group Reductions: Given for all durations for students who are joining in a group of 4 and above. There will be a considerable reduction given on total fee per head. Contact on below given number.
  • Early Bird Reductions: Given for all students who are registering minimum three months before joining date. There will be 20% reduction given on total fee. Contact on below given number.
  • MoU Reductions: Given for all students who are joining from institutions which has MoU with NTHRYS BIOTECH LABS will. There will be considerable reduction given on total fee. Contact on below given number.
  • Toppers Reduction: Given for 3 months and above durations for all students who are top rankers in their institutions. Students can request fee reduction with the help of the head of institution (Principal, Not HOD) from the principals official email id. Contact on below given number.
  • Economically Backward Class Reductions: Given for all durations to all students belonging to economically backward class can request for fee reduction. Contact on below given number.

Application Process

  • Reg Fee payment screenshot / photocopy (Paid via "Pay Reg Fee" button available on "Fee" tab
  • Any ID Card Photocopy
  • Draft an email with 1, 2 as attachments, provide Postal Address along with parents name and pincode, and email id, mobile number and joining date.
  • Send the above drafted mail to counselor.bio ( a t ) nthrys.com
  • Update about the email as well as send payment screenshot / photocopy via whatsapp on +91-7993084748
  • Our Academic Services department will confirm the application with in 10 mins to 1 hour.

Testimonials

VB. Bhavana View on Google I have completed my 6 month dissertation in NTHRYS biotech labs. The lab is adequately equipped with wonderful, attentive and receptive staff. It is a boon to the students venturing into research as well as to students who would like to garner lab exposure. I had a pleasant experience at NTHRYS thanks to Balaji S. Rao Sir for his constant support, mettle and knowledge. I would also like to give special regards to Zarin Mam for teaching me the concepts of bioinformatics with great ease and for helping me in every step of the way. I extend my gratitude to Vijaya Mam, and Sindhu Mam for helping me carry out the project smoothly. Durba C Bhattacharjee View on Google I have just completed hands on lab trainings at NTHRYS in biotechnology which includes microbiology, molecular and immunology and had gained really very good experience and confidence having good infra structures with the guidance of Sandhya Maam and Balaji Sir. Recommending to any fresher of biotechnology or microbiology field who wants to be expert before joining to related industry. Razia View on Google Best place to aquire and practice knowledge.you can start from zero but at the end of the internship you can actually get a job that is the kind of experience you get here.The support and encouragement from the faculty side is just unexplainable because they make you feel like family and teach you every bit of the experiment.I strongly recommend NTHRYS Biotech lab to all the students who want to excel in their career. Srilatha View on Google Nice place for hands on training Nandupandu View on Google Very good place for students to learn all the techniques Sadnaax View on Google I apprenticed in molecular biology and animal tissue culture, helped me a lot for my job applications. Sandhya and Balaji sir were very supportive, very helpful and guided me through every step meticulously. Helped me learn from the basics and helped a lot practically. The environment of the lab is very hygienic and friendly. I had a very good experience learning the modules. Would recommend Shivika Sharma View on Google I did an internship in NTHRYS under Balaji sir and Sandhya maam. It was a magnificent experience. As I got hands-on experience on practicals and I was also provided with protocols and I learned new techniques too.This intership will help me forge ahead in life. The staff is very supportive and humble with everyone. Both sir and maam helped me with my each and every doubts without hesitation. Digvijay Singh Guleria View on Google I went for 2 months for different training programs at NTHRYS Biotech, had a fun learning experience. Everything was hands-on training and well organised protocols. Thank you Balaji sir and Sandhya mam for this life time experience. Anushka Saxena View on Google I’m a biotechnology student from Dy patil University mumbai and I recently completed my 6 months dissertation project at Nthrys Biotech Labs in Hyderabad. I had a great experience and I would highly recommend this lab to other students as well . The first thing that I appreciated about Nthrys Biotech Labs was the friendly and supportive environment. Balaji sir and the staff Ragini and Sandhya ma’am were always willing to help me and they were always patient with my questions. I also felt like I was part of a team and that I was making a real contribution to the companys research. I learned a lot during my dissertation at Nthrys Biotech Labs not only academically but also personally . I had the opportunity to work on a variety of projects, which gave me a broad exposure to the field of biotechnology. I also learned a lot about the research process and how to conduct experiments. In addition to the technical skills that I learned, I also developed my soft skills during my internship. I learned how to communicate effectively, how to work independently, and how to work as part of a team. Overall, I had a great experience at Nthrys Biotech Labs and I would highly recommend this company to other students. Once again I would like to render a big thank you to Balaji Sir and Vijayalakshmi ma’am for imbibing with all the knowledge along with helping me publish my research paper as well and its all because of them I scored unbelievably well in my final semester. Nithin Pariki View on Google Lab equipment and protocols are good, it gives good hands on experience for freshers.

Frequently Asked Questions (FAQs)

Please choose our whatsapp button or web chat button to ask your questions. Our team will be glad to answer you.

Placement Assistance

NTHRYS Biotech Labs HR Team has launched Placements drive to Life Sciences candidates in various life sciences institutions / companies / units Please visit NTHRYS Biotech Labs to view NTHRYS placement offers.

Biotechnology Projects Updates

Nthrys updates, commence of nthrys abstract and indexing services, biopesticides cry proteins database completion, plant probiotics, mdr research commencement.

online projects for msc biotechnology students

BSc and MSc Thesis Subjects of the Bioinformatics Group

On this page you can find an overview of the BSc and MSc thesis topics that are offered by our group. The procedure to find the right thesis project for you is described below.

MSc thesis: In the Bioinformatics group, we offer a wide range of MSc thesis projects, from applied bioinformatics to computational method development. Here is a list of available MSc thesis projects . Besides the fact that these topics can be pursued for a MSc thesis, they can also be pursued as part of a Research Practice .

BSc thesis: As a BSc student you will work as an apprentice alongside one of the PhD students or postdocs in the group. You will work on your own research project, closely guided by your supervisor. You will be expected to work with several tools and/or databases, be creative and potentially overcome technical challenges. Below you will find short descriptions of the research projects of our PhDs and Postdocs. In addition you can take a look at the list of MSc thesis projects above.

Procedure for WUR students:

  • Request an intake meeting with one of our thesis coordinators by filling out the MSc intake form or BSc intake form and sending it to [email protected]
  • Contact project supervisors to discuss specific projects that fit your background and interest
  • Upon a match, take care of the required thesis administration together with your supervisor(s) and enroll in the thesis BrightSpace site to find more information on a thesis in the Bioinformatics group

Procedure for non-WUR students or students in other non-standard situations: We have limited space for interns from other institutes. If you are interested, please email our thesis coordinators at [email protected]; please attach your CV and indicate what are your main research interests.

BSc thesis topics

Integrative omics for the discovery of biosynthetic pathways in plants, molecular function prediction of natural products, from gene to networks: bridging the gap between two temperature-regulated plant reproductive traits.

Aalt-Jan van Dijk

Both ambient temperature-controlled flowering time and seed dormancy setting are temperature-regulated traits, which have been recently proposed to be interconnected. Plant reproductive success is the result of the evolution of complex gene regulatory networks. A challenge is to interconnect the variety of publicly available information, such as transcriptomic and genome-wide chromatin immunoprecipitation data sets. We hypothesize that the plant reuses the same regulatory modules throughout development. For instance, the same transcription factor, can positively or negatively regulate a set of genes depending on its differential interaction with other proteins. In this project, you will perform a network analysis starting from a set of 306 genes known to be relevant for flowering, and from publicly accessible gene expression data of Arabidopsis fruit tissue. Initially, a search for available high quality data-sets will be performed, followed by network analyses. Prior knowledge will be used to evaluate predictions and to improve the accuracy in estimating the gene network structure. The ultimate goal is to build a highly connected network and to identify potential hubs in it. Potentially, once the network is fully built and validated, it can be further used for predicting relevant genes and their functions.

Genome-guided discovery and structure prediction of novel bio-surfactants

Linking the metabolome and genome, pangenomic applications for plants and pathogens, linking metagenomics and metatranscriptomics to study the endophytic root microbiome, exploiting variation in lettuce and its wild relatives.

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online projects for msc biotechnology students

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online projects for msc biotechnology students

Research Proposal Topics In Biotechnology

Biotechnology is a fascinating subject that blends biology and technology and provides a huge chance to develop new ideas. However, before pursuing a career in this field, a person needs to complete a number of studies and have a thorough knowledge of the matter. When we begin our career must we conduct study to discover some innovative innovations that could benefit people around the world. Biotechnology is one of a variety of sciences of life, including pharmacy. Students who are pursuing graduation, post-graduation or PhD must complete the research work and compose their thesis to earn the satisfaction in their education. When choosing a subject for biotechnology-related research it is important to choose one that is likely to inspire us. Based on our passion and personal preferences, the subject to study may differ.

What is Biotechnology?

In its most basic sense, biotechnology is the science of biology that enables technology Biotechnology harnesses the power of the biomolecular and cellular processes to create products and technologies that enhance our lives and the wellbeing of the planet. Biotechnology has been utilizing microorganisms' biological processes for over six thousand years to create useful food items like cheese and bread as well as to keep dairy products in good condition.

Modern biotechnology has created breakthrough products and technology to treat rare and debilitating illnesses help reduce our footprint on the environment and feed hungry people, consume less energy and use less and provide safer, more clean and productive industrial production processes.

Introduction

Biotechnology is credited with groundbreaking advancements in technological development and development of products to create sustainable and cleaner world. This is in large part due to biotechnology that we've made progress toward the creation of more efficient industrial manufacturing bases. Additionally, it assists in the creation of greener energy, feeding more hungry people and not leaving a large environmental footprint, and helping humanity fight rare and fatal diseases.

Our writing services for assignments within the field of biotechnology covers all kinds of subjects that are designed to test and validate the skills of students prior to awarding their certificates. We assist students to successfully complete their course in all kinds of biotechnology-related courses. This includes biological sciences for medical use (red) and eco-biotechnology (green) marine biotechnology (blue) and industrial biotechnology (white).

What do we hope to gain from all these Initiatives?

Our primary goal in preparing this list of the top 100 biotechnology assignment subjects is to aid students in deciding on effective time management techniques. We've witnessed a large amount of cases where when looking for online help with assignments with the topic, examining sources of information, and citing the correct order of reference students find themselves stuck at various points. In the majority of cases, students have difficulty even to get through their dilemma of choosing a topic. This is why we contribute in our effort to help make the process easier for students in biotech quickly and efficiently. Our students are able to save time and energy in order to help them make use of the time they are given to write the assignment with the most appropriate topics.

Let's look at some of the newest areas of biotechnology research and the related areas.

  • Renewable Energy Technology Management Promoting Village
  • Molasses is a molasses-based ingredient that can be used to produce and the treatment of its effluent
  • Different ways to evapotranspirate
  • Scattering Parameters of Circulator Bio-Technology
  • Renewable Energy Technology Management Promoting Village.

Structural Biology of Infectious Diseases

A variety of studies are being conducted into the techniques used by pathogens in order to infect humans and other species and for designing strategies for countering the disease. The main areas that are available to study by biotech researchers include:

  • inlA from Listeria monocytogenes when combined with E-cadherin from humans.
  • InlC in Listeria monocytogenes that are multipart with human Tuba.
  • Phospholipase PatA of Legionella pnemophila.
  • The inactivation process of mammalian TLR2 by inhibiting antibody.
  • There are many proteins that come originate from Mycobacterium tuberculosis.

Plant Biotechnology

Another significant area for research in biotechnology for plants is to study the genetic causes of the plant's responses to scarcity and salinity, which have a significant impact on yields of the crop and food.

  • Recognition and classification of genes that influence the responses of plants to drought and salinity.
  • A component of small-signing molecules in plants' responses to salinity and drought.
  • Genetic enhancement of plant sensitivity salinity and drought.

Pharmacogenetics

It's also a significant area for conducting research in biotechnology. One of the most important reasons for doing so could be the identification of various genetic factors that cause differences in drug effectiveness and susceptibility for adverse reactions. Some of the subjects which can be studied are,

  • Pharmacogenomics of Drug Transporters
  • Pharmacogenomics of Metformin's response to type II mellitus
  • The pharmacogenomics behind anti-hypertensive medicines
  • The Pharmacogenomics of anti-cancer drugs

Forensic DNA

A further area of research in biotechnology research is the study of the genetic diversity of humans for its applications in criminal justice. Some of the topics that could be studied include,

  • Y-chromosome Forensic Kit, Development of commercial prototype.
  • Genetic testing of Indels in African populations.
  • The Y-chromosome genotyping process is used for African populations.
  • Study of paternal and maternal ancestry of mixed communities in South Africa.
  • The study of the local diversity in genetics using highly mutating Y-STRs and Indels.
  • South African Innocence Project: The study of DNA extracted from historical crime scene.
  • Nanotechnology is a new technology that can be applied to DNA genotyping.
  • Nanotechnology methods to isolate DNA.

Food Biotechnology

It is possible to conduct research in order to create innovative methods and processes in the fields of food processing and water. The most fascinating topics include:

  • A molecular-based technology that allows for the rapid identification and detection of foodborne pathogens in intricate food chains.
  • The effects of conventional and modern processing techniques on the bacteria that are associated with Aspalathus lineriasis.
  • DNA-based identification of species of animals that are present in meat products that are sold raw.
  • The phage assay and PCR are used to detect and limit the spread of foodborne pathogens.
  • Retention and elimination of pathogenic, heat-resistant and other microorganisms that are treated by UV-C.
  • Analysis of an F1 generation of the cross Bon Rouge x Packham's Triumph by Simple Sequence Repeat (SSR/microsatellite).
  • The identification of heavy metal tolerant and sensitive genotypes
  • Identification of genes that are involved in tolerance to heavy metals
  • The isolation of novel growth-promoting bacteria that can help crops cope with heavy metal stress . Identification of proteins that signal lipids to increase the tolerance of plants to stress from heavy metals

This topic includes high-resolution protein expression profiling for the investigation of proteome profiles. The following are a few of the most fascinating topics:

  • The identification and profile of stress-responsive proteins that respond to abiotic stress in Arabidopsis Thalian and Sorghum bicolor.
  • Analyzing sugar biosynthesis-related proteins in Sorghum bicolor, and study of their roles in drought stress tolerance
  • Evaluation of the viability and long-term sustainability of Sweet Sorghum for bioethanol (and other by-products) production in South Africa
  • In the direction of developing an environmentally sustainable, low-tech hypoallergenic latex Agroprocessing System designed specifically especially for South African small-holder farmers.

Bioinformatics

This is an additional aspect of biotechnology research. The current trend is to discover new methods to combat cancer. Bioinformatics may help identify proteins and genes as well as their role in the fight against cancer. Check out some of the areas that are suitable to study.

  • Prediction of anticancer peptides with HIMMER and the the support vector machine.
  • The identification and verification of innovative therapeutic antimicrobial peptides for Human Immunodeficiency Virus In the lab and molecular method.
  • The identification of biomarkers that are associated with cancer of the ovary using an molecular and in-silico method.
  • Biomarkers identified in breast cancer, as possible therapeutic and diagnostic agents with a combination of molecular and in-silico approaches.
  • The identification of MiRNA's as biomarkers for screening of cancerous prostates in the early stages an in-silico and molecular method
  • Identification of putatively identified the genes present in breast cancer tissues as biomarkers for early detection of lobular and ductal breast cancers.
  • Examining the significance of Retinoblastoma Binding Protein 6 (RBBP6) in the regulation of the cancer-related protein Y-Box Binding Protein 1 (YB-1).
  • Examining the role played by Retinoblastoma Binding Protein 6 (RBBP6) in the regulation of the cancer suppressor p53 through Mouse Double Minute 2 (MDM2).
  • Structural analysis of the anti-oxidant properties of the 1-Cys peroxiredoxin Prx2 found in the plant that resurrects itself Xerophyta viscosa.

Nanotechnology

This is a fascinating aspect of biotechnology, which can be used to identify effective tools to address the most serious health issues.

  • Evaluation of cancer-specific peptides to determine their applications for the detection of cancer.
  • The development of a quantum dot-based detection systems for breast cancer.
  • The creation of targeted Nano-constructs for in vivo imaging as well as the treatment of tumors.
  • Novel quinone compounds are being tested as anti-cancer medicines.
  • Embedelin is delivered to malignant cells in a specific manner.
  • The anti-cancer activities of Tulbaghia Violacea extracts were studied biochemically .
  • Novel organic compounds are screened for their anti-cancer potential.
  • To treat HIV, nanotechnology-based therapeutic techniques are being developed.

Top 100 Biotechnology Research Proposal Topics to Consider in 2022

We've prepared a list of the top 100 most suggested dissertation topics, which were compiled by our experts in research. They've made sure to offer a an extensive list of topics that cover all aspects of the topic. We hope that this list will meet all of the requirements for assistance with your dissertation . Let us start with our list of subjects, one at a time each one

  • Achieving effective control of renewable power technologies to help the village
  • The production of ethanol through the aid of molasses and the treatment of its effluent
  • Different approaches and aspects of Evapotranspiration
  • Its scattering parameter is biotechnology circulator
  • The inactivation of mammalian TLR2 via an inhibiting antibody
  • The number of proteins produced by Mycobacterium tuberculosis
  • Recognition and classification of genes that shape the responses of plants to drought and salinity.
  • The small sign molecules that are involved in the response that plants have to the effects of salinity as well as drought
  • Genetic improvement of the plant's sensitivity to drought and saltiness
  • The pharmacogenomics of drug transporters
  • The anti-cancer drugs' pharmacogenomics are based on pharmac
  • The pharmacogenomics of antihypertensive medications
  • Indels genotyping of African populations
  • Genomics of the Y-chromosomes of African populations
  • The profiling of DNA extracted from historical crime scenes Consider the implications of South African Innocence Project
  • Nanotechnology-related methods for DNA isolation
  • Nanotechnology applications in the context of DNA genotyping
  • Recognizing the heavy metals that are tolerant with genotypes that are sensitive.
  • Genetic characteristics that play a role within the procedure of gaining tolerance to metals
  • The animal's DNA is authenticated by the species by the commercial production of raw meat products
  • The use of molecular-based technology is in the sense of detection and identification of foodborne pathogens in complicated food systems
  • Assessing the effectiveness of cancer-specific peptides that are suitable for efficient implementations in the area of diagnosis and treatment for cancer
  • Quantum Dot-based detection system is being developed in relation to a positive breast cancer diagnosis
  • It is targeted delivery of the embelin to cancerous cells
  • Exploring the potential of novel quinone compounds as anti-cancer agents
  • Treatment strategies for treating HIV in addition to the significance of nanotechnology the treatment of HIV.
  • A review of the medicinal value the antioxidants found in nature.
  • An in-depth examination of the structure of COVID spike proteins
  • A review of the immune response to the stem therapy using cells
  • CRISPR-Cas9 technology to aid in the process of editing the genome
  • Tissue engineering and delivery of drugs through the application of Chitosan
  • Evaluation of beneficial effects of cancer vaccines
  • Use of PacBio sequencing in relation to genome assembly of model organisms
  • Examining the connection between mRNA suppression and its effect on the growth of stem cells
  • Biomimicry is a method of identifying of cancer cells
  • The sub-classification and characterisation of the Yellow enzymes
  • The process of producing food products that are hypoallergenic and fermented.
  • The production of hypoallergenic milk
  • The purification process for the thermostable phytase
  • Bioconversion of the cellulose produce products that are significant for industry
  • The investigation of the gut microbiota of the model organisms
  • The use of fungal enzymes for the manufacture of chemical glue
  • A look at those inhibitors to exocellulase as well as endocellulase
  • Examine the value of microorganisms to aid in the recovery of gas from shale.
  • Examine the thorough analysis of the method of natural decomposition
  • Examine ways to recycle bio-wastes
  • Improved bio-remediation in the case of oil spills
  • The process of gold biosorption is accomplished with the aid of the cyanobacterium
  • A healthy equilibrium between the biotic and the abiotic elements by using biotechnological devices
  • The measurement of the mercury level in fish by means of markers
  • Exploring the biotechnological capabilities from Jellyfish related microbiomes Jellyfish related microbiome
  • What is the role of marine fungi to aid in attempts to break down plastics and polymers?
  • Examine the biotechnological possibilities that can be extracted of dinoflagellates
  • Removing endosulfan residues using the use of biotechnology the agriculture sector
  • The creation of the ELISA method for the detection of crop virus
  • Enhancing the quality of drinking water by the aid of the E.coli consortium
  • The characterisation of E.coli is its isolation from the feces of Zoo animals
  • Enhancing the resistance of crops to the attack of insects
  • The reduction of the expenditure on agriculture by using efficient bio-tools
  • Are there the most efficient ways to stop erosion of soils using the help of biotechnology-based tools?
  • What can biotechnology do to assist in increasing the levels of vitamin content in GM food items?
  • Enhancing the distribution of pesticides by using biotechnology
  • Comparing the biofortification of folate in various types of corpses
  • Examine the photovoltaic-based generation of ocean-based crop
  • What is the best way to use nanotechnology will improve the efficiency of the agriculture sector?
  • Analyzing the mechanisms that govern resistance to water stresses in models of plants
  • Production and testing of human immune boosters within the test organisms
  • Comparing genomic analysis to the usefulness of tools intended for bioinformatics
  • The Arabinogalactan protein sequence and its value in the field of computational methods
  • Analyzing and interpreting gut microbiota from model organisms
  • Different methods of purification of proteins A comparative analysis
  • The diagnosis of microbes and their function in micro-arrays of oligonucleotide oligonu
  • The use of diverse techniques within the biomedical research field that includes micro-arrays technology
  • The use of microbial community to produce the greenhouse effect
  • Evaluation of the computational properties of various proteins that are derived from the marine microbiota
  • E.coli gene mapping through the help of different tools for microbial research
  • Intensifying the strains of Cyanobacterium the aid of gene sequencing
  • Assessment and description by computation of crystallized proteins that are found in the natural world.
  • MTERF protein and the use of it to end the process of transcription that occurs in mitochondrial DNA inside algae
  • Reverse column chromatography in phase and its use in the separation of proteins
  • The study of the various proteins that are found within Mycobacterium leprae.
  • A review of the methods that are ideal to ensure the success of cloning RNA
  • Examine the most common mistakes of biotechnology in conserving the ecology and natural environment.
  • Is there a method to ensure that the medicinal plants are free of insects? Discuss
  • What are the dangers caused by pest resistant animals on birds and human beings?
  • What are the many areas of biotechnology that remain unexplored in terms research?
  • What's the future of biotechnology in the medical field?
  • Recombinant DNA technology to develop of new medical treatments
  • What is the reason for the type of bacteria that is used to make vaccines with the aid of biotechnology?
  • How can biotechnology aid in the development of new medicines that are resistant to the mutations of viruses and bacteria?
  • Is there a long-term treatment for cancer that is available in the near term? Biotechnology could play an essential role in this?
  • What is the reason it is so important that students remember the DNA codes in biotechnology?
  • How can we create hybrid seeds with assistance of biotechnology?
  • How can one create resistant plants to pests and what are the benefits of these seeds in final yields in agriculture?
  • Examine bio-magnification and its effects on the ecology
  • What are the causes to the reasons ecologists do not approve the use of pest-resistant seed, even though they are in application in agriculture?
  • How has biotechnology influenced the lives of farmers in developing countries?
  • Biotechnology can be used to boost the yield of plant species?
  • Examine the role played by biotechnology to increase the production of the seasonal crops
  • Are there any adverse side effects associated with pharmaceutical drugs when they are manufactured with biotechnological techniques? Let the issue with real-world examples

We attempted to cover the essential topics needed for research work. Other topics are available that could be picked based on our interests, the facilities available and resources available for the research, as well as resources and time limits.

We have reached the end of this list. We feel it was beneficial in satisfying the selection criteria. Furthermore, the inclusion of biotechnology-related assignment themes was done in such a manner that they may help us with the requirements of assignment writing kinds and forms. The themes listed above can meet our demands for topic selection linked to aid with case studies and essay assistance, research paper writing help , or thesis writing help .

Frequently asked questions

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Some of biotechnology topics are:

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35+ Amazing Biochemistry Project Topics To Boost Your Skills

biochemistry project topics

Biochemistry is a rapidly-evolving field that has made incredible strides in understanding the molecular processes that underpin life. As such, there are a wealth of exciting and novel research projects available to students interested in pursuing a career in biochemistry.

In this blog, we’ll take a deep dive into some of the most cutting-edge biochemistry project topics that are currently being explored in labs around the world. We’ll explore everything from the latest techniques in synthetic biology and metabolic engineering to new drug design strategies, and discuss how these projects are helping to advance our understanding of the underlying biology.

What is Biochemistry?

Table of Contents

Biochemistry is the branch of science that studies the chemical processes and substances that occur within living organisms. It focuses on the chemical reactions and interactions that take place at the molecular level, including the structure and function of biomolecules such as proteins, carbohydrates, lipids, and nucleic acids.

Biochemists work to understand the mechanisms that govern the behavior of these biomolecules, and how they contribute to the overall functioning of living systems. They investigate everything from the synthesis and breakdown of complex biomolecules to the regulation of metabolic pathways and the interactions between different cellular components.

The knowledge gained from biochemistry research has numerous applications, including the development of new drugs and therapies, the design of new materials and biomolecules, and the optimization of industrial processes. Biochemistry also has important implications for understanding human health and disease, as many diseases are caused by abnormalities in biochemical processes.

On the other hand, if you face any difficulty in any type of assignment/homework, then do not worry you can get the best microbiology assignment help from us at an affordable price. You can also check nursing project topics .

Significance of Biochemistry Project Topics

Biochemistry projects are significant for a number of reasons, including:

Advancing scientific knowledge

Biochemistry projects provide opportunities for researchers to make new discoveries and gain a deeper understanding of the underlying biochemical mechanisms that govern living systems. This knowledge can be applied to a wide range of fields, from drug design to agriculture to environmental science.

Developing new technologies

Biochemistry projects often involve the development of new technologies and techniques, such as genetic engineering or protein synthesis. These technologies can have wide-ranging applications and may lead to the development of new products or processes.

Improving human health

Biochemistry projects can have a significant impact on human health by leading to the development of new drugs or therapies. For example, biochemists may investigate the molecular mechanisms underlying a particular disease and develop a drug that targets those mechanisms, leading to more effective treatments.

Addressing environmental challenges

Biochemistry projects can also be used to address environmental challenges, such as developing new methods for cleaning up pollutants or improving the efficiency of renewable energy sources.

Providing opportunities for education and career development

Biochemistry projects can provide valuable educational opportunities for students at all levels, from high school to graduate school. They can also lead to career opportunities in academia, industry, and government, as biochemists are in high demand in many fields.

6 Elements Of Biochemistry Project You Must Know

Biochemistry projects typically involve several key elements, including:

Background research

Before beginning a biochemistry project, it’s important to thoroughly research the topic to gain a solid understanding of the current state of knowledge in the field. This may involve reading scientific literature, attending lectures or seminars, and consulting with experts in the field.

Hypothesis development

Once background research is complete, researchers typically develop a hypothesis to guide their investigations. This hypothesis should be testable and based on the available evidence.

Experimental design

Biochemistry projects often involve conducting experiments to test the hypothesis. This may involve designing experiments to test the effects of different variables or to compare different treatments. Experimental design should be carefully thought out to ensure that the results are meaningful and informative.

Data collection and analysis

Once experiments are underway, data must be collected and analyzed to determine whether the hypothesis is supported or not. This may involve using statistical methods to analyze data and draw conclusions from the results.

Conclusion and interpretation

After the data is analyzed, researchers must draw conclusions from the results and interpret what they mean in the context of the hypothesis. This may involve developing new hypotheses or refining existing ones based on the results.

Communication

Finally, biochemistry projects typically involve communicating the results to others. This may involve writing a scientific paper, giving a presentation at a conference or seminar, or publishing findings in a scientific journal. Effective communication is critical to ensure that the results are understood and can be used to inform future research.

How to Choose Biochemistry Project Topics

Choosing a biochemistry project topic can be challenging, but there are several strategies you can use to identify a promising area of investigation. Here are a few tips:

Identify your interests

Start by thinking about the areas of biochemistry that interest you the most. This could be anything from protein synthesis to metabolic pathways to genetic engineering. By focusing on an area of interest, you are more likely to be motivated and engaged throughout the project.

Consider current research

Look at the latest research in biochemistry to identify areas that are currently being investigated. This can help you identify areas where there is a gap in knowledge or where new techniques or technologies are being developed.

Identify a research question

Once you have identified an area of interest, develop a research question that can guide your investigation. This should be a clear and specific question that can be answered through experimentation or analysis of existing data.

Consult with your advisor

T alk to your advisor or a mentor in the field to get their input on potential project topics. They may be able to provide valuable insights into areas that are particularly promising or areas where there is a need for further investigation.

Consider practical considerations

Finally, consider practical considerations such as the availability of resources or the feasibility of conducting experiments in a particular area. You want to choose a project topic that is challenging but achievable given the time and resources available.

Here in this section we will explain more than 35 biochemistry project topics that will boost your skills which are as follows:

Protein folding and misfolding

Investigating the molecular mechanisms underlying protein folding and misfolding, and how this can lead to diseases such as Alzheimer’s and Parkinson’s.

Enzyme kinetics

Studying the kinetics of enzyme-catalyzed reactions, and how factors such as temperature and pH affect enzyme activity.

Metabolic pathways

Investigating the regulation of metabolic pathways in living systems, and how this can be used to develop new drugs or therapies.

Lipid metabolism

Exploring the mechanisms underlying lipid metabolism, including the synthesis and breakdown of lipids, and how this relates to metabolic disorders such as obesity and diabetes.

Molecular imaging

Developing new methods for visualizing molecules and molecular processes in living systems, including the use of fluorescent tags and advanced microscopy techniques.

Studying the function and regulation of proteins on a large scale, including the use of mass spectrometry to identify and quantify proteins in complex mixtures.

DNA damage and repair

Investigating the molecular mechanisms underlying DNA damage and repair, and how this relates to cancer and other diseases.

Genetic engineering

Developing new methods for manipulating genes and genomes, including the use of CRISPR-Cas9 and other genome editing technologies.

Glycobiology

Studying the structure and function of carbohydrates and their role in biological processes, including the development of new glycan-based therapies.

Investigating the physical properties of biological molecules and their interactions, including the use of techniques such as X-ray crystallography and nuclear magnetic resonance (NMR) spectroscopy.

Bioinformatics

Developing new computational methods for analyzing biological data, including the use of machine learning and other artificial intelligence techniques.

RNA biology

Studying the structure and function of RNA molecules, including their role in gene expression and regulation.

Cell signaling

Investigating the molecular mechanisms underlying cell signaling pathways, and how these pathways can be manipulated to treat diseases.

Cancer metabolism

Exploring the metabolic changes that occur in cancer cells, and how these changes can be targeted for therapy.

Drug discovery

Developing new drugs and therapies based on a better understanding of biological processes and molecular mechanisms.

Biomaterials

Developing new materials for use in biomedical applications, including drug delivery, tissue engineering, and biosensors.

Studying the metabolic pathways involved in energy production in living systems, including the development of new methods for producing biofuels.

Protein-protein interactions

Investigating the molecular mechanisms underlying protein-protein interactions, and how these interactions can be manipulated for therapeutic purposes.

Mitochondrial biology

Studying the function and regulation of mitochondria, including their role in energy production and metabolism.

Nanobiotechnology

Developing new nanoscale materials and devices for use in biological applications, including drug delivery and sensing.

Structural biology

Investigating the structure and function of biological molecules at the atomic level, including the use of X-ray crystallography and cryo-electron microscopy.

Biochemistry of aging

Exploring the molecular mechanisms underlying aging and age-related diseases, and how these processes can be targeted for therapeutic interventions.

Protein engineering

Developing new methods for engineering proteins with specific functions or properties, including the use of directed evolution and computational design.

Plant biochemistry

Studying the biochemical processes that occur in plants, including photosynthesis, respiration, and secondary metabolite biosynthesis.

Biomolecular simulations

Using computational simulations to model and predict the behavior of biological molecules and systems.

Drug metabolism

Investigating the metabolic pathways involved in drug metabolism, including the role of enzymes such as cytochrome P450, and how this can affect drug efficacy and toxicity.

Epigenetics

Studying the mechanisms by which gene expression is regulated, including the role of epigenetic modifications such as DNA methylation and histone acetylation.

Synthetic biology

Developing new biological systems or organisms with specific functions, including the engineering of biosensors, bioreactors, and biocomputers.

Neurochemistry

Investigating the chemical processes that occur in the nervous system, including the mechanisms underlying neurotransmitter synthesis and release.

Environmental biochemistry

Studying the biochemical processes that occur in the environment, including bioremediation, nutrient cycling, and the degradation of pollutants.

Membrane biochemistry

Investigating the structure and function of biological membranes, including the transport of molecules across membranes and the role of membrane proteins.

Studying the molecular mechanisms underlying the immune system, including the production and function of antibodies and the role of cytokines and chemokines in immune response.

Microbial biochemistry

Investigating the biochemistry of microorganisms, including their metabolism, growth, and adaptation to different environments.

Metabolomics

Studying the metabolic profile of biological systems, including the use of mass spectrometry and other analytical techniques to identify and quantify metabolites.

Nutritional biochemistry

Investigating the role of nutrients and other dietary factors in human health and disease, including the metabolism of macronutrients such as carbohydrates, fats, and proteins.

Enzyme engineering

Developing new methods for engineering enzymes with specific functions or properties, including the use of directed evolution and protein engineering techniques.

Metalloprotein biochemistry

Studying the role of metal ions in biological processes, including the function of metalloproteins such as hemoglobin, myoglobin, and cytochrome c.

These are just a few examples of the many potential biochemistry project topics. The field of biochemistry is vast and constantly evolving, offering many exciting avenues for investigation and discovery. The key is to identify an area of interest and develop a research question that can guide your investigation.

What To Consider When Choosing Biochemistry Project Topics

When choosing a biochemistry project topic, there are several factors to consider. Here are a few things to keep in mind:

Your interests

Choose a topic that you find interesting and engaging. This will help keep you motivated throughout the project and ensure that you enjoy the research process.

Feasibility

Consider the feasibility of your project in terms of time, resources, and equipment. Make sure that you have access to the necessary materials and equipment, and that you have enough time to complete the project within your timeframe.

Choose a topic that has not been extensively studied before, or one that builds on previous research in a new and innovative way. This will help your project stand out and contribute to the field of biochemistry.

Choose a topic that is relevant to current issues in the field of biochemistry, such as emerging research trends or topics of public health importance.

Collaborations

Consider opportunities for collaboration with other researchers or organizations in the field. Collaborations can enhance your project and provide new perspectives on your research question.

Ethical considerations

Consider ethical issues related to your project, such as the use of human or animal subjects, and ensure that your research follows ethical guidelines and regulations.

How To Make Your Biochemistry Project Worth It

Making your biochemistry project worth it involves several key steps:

Set clear goals

Identify the specific goals and objectives of your project, and ensure that they align with your research question and hypothesis. This will help keep your project focused and ensure that you are making progress towards a specific outcome.

Develop a solid research plan

Create a detailed research plan that outlines the methods and techniques you will use to gather data, analyze results, and draw conclusions. This will help ensure that your project is well-structured and that you are collecting high-quality data.

Utilize appropriate methods and techniques

Use appropriate methods and techniques for data collection and analysis that are relevant to your research question. This will help ensure that your results are reliable and accurate.

Collaborate with other researchers

Communicate your findings.

Communicate your research findings effectively through scientific publications, presentations, or other forms of outreach. This will help ensure that your research has a broader impact and contributes to the field of biochemistry.

Reflect on your experience

Reflect on your research experience and identify areas for improvement or future research questions. This will help ensure that your project has lasting value and can inform future research in the field.

This is the end of this post which is about Biochemistry Project Topics. On the other hand, undertaking a biochemistry project is an excellent opportunity for students to gain valuable experience in scientific research and contribute to the field of biochemistry. 

By selecting the right project topic, developing a solid research plan, and effectively communicating your findings, you can make a meaningful contribution to the field and enhance your skills and knowledge in biochemistry. Furthermore, in this post we mentioned more than 35 Biochemistry Project Topics so that you can enhance your skills.

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  • Mr. Sandip Senan
  • Dr. Annie John
  • Dr. Renu Mohan
  • Ms. Mary Steny Joseph
  • Research and Development
  • Workshops / Projects / Services
  • Celebrations
  • Project Students / Interships

online projects for msc biotechnology students

Basic Hands on Training with Certificate Program (Duration: 2 weeks) Those who are interested to apply for certificate based  internship can send  CV to  [email protected]                               OR               call @ 9778739414

Basic hands on training

The basic concepts of Mammalian cell culture Microbiology Biochemistry Instrumentation

Basic hands ontraining with certificate program (duration: 1 month)                                                                          those who are interested to apply for certificate based  internship can send  cv to [email protected]                                      or                          call @ 9778739414                                         , whole concepts of mammalian cell culture + 3 assays molecular biology                                                    microbiology                                                                nano technology                                                      mammalian cell culture  biochemistry, offline internship programs.

Bioroot offers paid internship opportunities in core areas of research development and encourage Graduate (BSc), Post graduate (MSc ), B.Tech, MPhil & PhD students of biotechnology and life sciences to pursue internships at Bioroot. The internship programs are designed to give students first-hand experience of working for a research project and help them to develop transferable skills as well as earn course credits.(Subjects Included – Molecular Biology, Microbiology,Biochemistry, Mammalian Cell Culture, Immunology, Genetics, Cancer Biology)

online Internship programs

Bioroot offers paid online internship certificate program for  Graduate (BSc), Post graduate (MSc ), B.Tech,  students of biotechnology and life sciences at Bioroot. The internship programs are designed to develop transferable skills as well as earn course credits.  Subjects Included – Molecular Biology, Microbiology, Biochemistry, Mammalian Cell Culture, Immunology, Genetics, Cancer Biology)    

                                               ONLINE TWO WEEK CERTIFICATE PROGRAM                                                         (4 Classes in two weeks, 45 mins per class and training reports included)                                                                                                                                                                 

 ONLINE ONE MONTH CERTIFICATE PROGRAM

               those who are interested to apply for certificate based  internship can send  cv to  [email protected]   or call                           @ 9778739414, phd projects.

Projects in specialized areas such as Cell culture, Nanomedicine, Neurodegnerative disorders, Infertility, Molecular biology and Micrbiology.

B.Tech and M.Tech Projects

Biotechnology, Nanotechnology, Electronics and Applied Electronics 

MPhil Projects

Any branch of Life Science

BSc & MSc Projects

Biotechnology, Microbiology, Molecular Biology, Botany, Genetics or any field of Life Science

The project works for the above categories will be done solely based on the needs, syllabus and demand of the respective degree levels along with a valid certificate from the institution registered in Kerala Startup Mission & Startup India Scheme.

Nanotechnology projects.

  • Development of nanosensors/ Fabrication of thinfilims / Nanomaterial characterization and data analysis ( 1 month )
  • Nanomaterials for antimicrobial and antifungal applications / Superhydrophobic nanomaterials for nanotexilts  (2 months minimum)
  • Nanomaterials for medical diagnosis ( 3 months)
  • Integrated Skill development programmes (15 days/30 days/6 months)
  • Multifunctional nanocontrast agents and biomarkers/ Synthesis and characterization of Fe2O3  and Fe3O4  (6 months)
  • Synthesis, physicochemical and biological characterization of nanophosphors and nanosensors for biomedical applications  (6 months)
  • Development of metal oxide based nanocatalysts for environmental remediation and its biocompatibility  (6 months)
  • Synthesis and characterization of quatum dots for theranostics and drug delivery  (6 months)
  • Nanomaterials and therir biocompatibility and toxicity analysis (6 months)
  • Green synthesis and phytofabrication of nanomaterials with high biocompatibility  (6 months)
  • Development of clean energy materials for energy conversion and storage (1 year )

online projects for msc biotechnology students

BIOLOGICAL ASSAYS (Cell Culture)

Cell viability assay (using haemocytometer), cell cytotoxicity assay (mtt), wound scratch assay, glucose uptake assay, anti inflammatory assays, anti oxidant assay, anti diabetic assay, anti ulcer assay, hemocompatibility assay, cox lox analysis, microbiology, anti bacterial assay mic agar well diffusion disc diffusion, effect of various chemicals on bacterial growth, determination of quality of milk sample, shelf life testing, anti fungal assay, lactophenol cotton blue mounting on fungi, water quality analysis, molecular identification of bacteria, sterility test, endospore staining, effect of ph & salt concentration on bacterial growth, bacterial motility, biochemical characterization of bacteria, germicidal effect of uv on bacterial growth, biochemical assays, anti diabetic assay alpha amylase/alpha glucosidase inhibition, column chromatography, mineral analysis, determination of spf, anti oxidant assay dpph, frap, hrsa, rp, abts, nutritional analysis, aggregation assay, anti inflammatory assay protein denaturation protease inhibition nos, antinutritional analysis, nucleation assay, estimation of vitamin c, stability test, assessment of 4hne, other services, availability of adherent cell lines, any type of sample extraction available, dna/rna isolation (cell/bacteria/plant), gene expression study using rt-pcr, gel electrophoresis, immunohistochemistry & immunocytochemistry ft - ir confocal microscopy sem tem, protein estimation using flow cytometry western blotting southern blotting phytochemical works (qualitative & quantitative), cell lines available for purchase on payment basis.

Phase-contrast-micrograph-at-10-magnification-of-HeLa-cells-24-h-after-seeding-to

rabbit ADMSC

86041809_IMR_32_48hrs_post_seeding

Food & Accommodation @ Bioroot

Here for you.

+91 751 044 4482 +91 977 873 9414 +91 471 272 3535

Where to find us

Kairali Nagar, KNRA-15, BLOCK-A, Upper Meridian Road, Kuravankonam, Kowdiar P.O, Thiruvananthapuram - 695003, Kerala

Keep in touch

online projects for msc biotechnology students

Next Gen Scientists Foundation

Time for the Next Gen to rise and shine

online projects for msc biotechnology students

NGSF Internship Program 2024

Next Gen Scientists Foundation (registered under the Trust act of India 1882)  offers  an opportunity to fund  internships  for undergraduate and postgraduate students who wish to gain research experience in life sciences. Interns will conduct independent research under  the  mentorship of Principal Investigator of their interest at select Indian institutes. This year, we will continue to accept applications for remote internships in Computational Biology, in addition to the usual on-site internships. However, please note that remote interns will comprise a maximum of 20% of the final selected cohort. NGS interns can apply to get their final year thesis projects funded starting 2025.

Applications for NGSF Internship Program 2024 are now open! Head to the Application Forms page to apply.

Eligibility:   

Applicants will be deemed eligible if the following conditions are satisfied:

  • Be interested in undertaking a life science-associated internship for a period of two (minimum of 56 days) or three (minimum of 84 days) months
  • Be a student in the (i) 2 nd   year of a 3-year undergraduate program or   (ii)  2 nd  /3 rd year of a 4-year undergraduate program or (iii) 1 st  year of a 2-year masters program or  (iv)  2 nd  /3 rd  /4 th   year of a 5-year integrated program at an Indian institute
  • Be accepted to work in the lab of a principal investigator in any Indian Institute outside of their institute of study

Students receiving financial assistance from the principal investigator and/or any other agencies (KVPY, INSA, JNCASR, IIT, IISER) cannot get additional support from the program. NGSF does not support internships where interns have to pay a fee to gain experience. Funds from the program are meant to support interns in traditional unpaid internships without fees.

Finding a PI mentor for your internship:

We DO NOT provide internship opportunities directly. The program only funds students accepted by PIs to work in their labs. We want you to have a productive internship experience. So, please ensure that the prospective PI mentor has at least three years of experience as faculty and at least three publications in peer-reviewed journals as a corresponding (last) author. If you’re unsure where to look, visit the list of recommended institutes .

Application process:  

We accept applications only through the online application system . Carefully  read the application guidelines before applying and follow the instructions.  The application system opens on December 1  2023 and closes at 12:00 midnight on March 31 2024.  Applications will be reviewed on a rolling basis. Hence, early applications are encouraged. Selected  applicants will be invited to interview via Skype in April.

Result announcement:  

Results will be announced before April 31 2024. Selected candidates will be informed via email.

Financial support: 

NGS Interns will receive a stipend amount of INR 6000 per month for on-site internships and INR 3000 for remote internships for a period of up to 3 months upon satisfying requirements . For on-site interns, travel will also be reimbursed up to the cost of a III class AC train ticket (round-trip).

Internship period : 

The internship can span any two to three month period between May and July 2024 as per the convenience of the student and the PI.

Scientific Communication: 

Besides funding your research experience, our program also emphasizes on effective scientific communication. During the internship period, interns are required to contribute  an article to NGS blog and submit a monthly progress report. At the  end of the program, participants should give a presentation on their experience as a part of the NGS Internship webinar  program.

Dissertation Program: 

Starting from 2022, candidates who have been selected as NGSF interns get the added benefit of applying to get support during their Bachelors/Masters thesis research work after their internship period. The only requirements for applying to the program are 1) Be selected as part of the NGSF Internship Program previously and 2) Perform your dissertation/thesis work outside of your institute of study. If selected, we will provide a stipend of INR 6000 per month for up to 6 months.

Any further questions regarding the internship program will be addressed at [email protected]  or you can chat with our team directly in Indian Life Science Network ( NGSF Category/#internship-queries ). Please note, enquiries made through made through our Discord server will be addressed quicker than those made through email.

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Biotech Online Internships Career Booster for Biotechnology Students

3 minutes                                                                                                                                  Read Date:20-May-2022

Biotech Online Internships- Career Booster for Biotechnology Students

Biotechnology, the perfect blend of engineering and natural sciences, is increasingly being used to modify living organisms. With the advancement in biotechnology, its application scope has increased multifold. Scientific technology is being applied to reduce environmental footprint, treat rare diseases, feed the hungry, improve manufacturing processes, etc. Online biotech internships are a great help for job seekers to get the valuable experience required for a high-paying job.

WIDER APPLICATION OF BIOTECHNOLOGY

online projects for msc biotechnology students

IMPORTANCE OF BIOTECH ONLINE INTERNSHIP

online projects for msc biotechnology students

SUMMER INTERNSHIPS FOR BIOTECHNOLOGY STUDENTS IN 2022

How to leverage the benefits of biotechnology summer internships.

online projects for msc biotechnology students

Whether you plan to join an advanced course or a job, you need to join a biotechnology internship in both cases. The internship certification adds value to your credentials for advanced study that helps you get admission and a scholarship at your favorite college. In case you want a job after completing a basic biotechnology course, then you need to join an internship to get hands-on experience. The benefits of biotech internships can be leveraged by working as a freelancer biotechnology expert in different job roles- medical writer, science journalist, health informatics specialist, big data analytics for medical institutions, product marketing strategist, etc.

Getting the best career suitable online biotechnology summer internship is not as easy as it seems seeing the availability of online biotechnology internship offers. You need to filter searches based on your qualification, personal interest, career plan, location, financial needs, etc.

Sign Up Complete your profile

Must contain atleast 1 uppercase, 1 lowercase and 1 numeric characters. Minimum 8 characters.

online projects for msc biotechnology students

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Projects in Biotechnology

We offer 3 Projects in Biotechnology. Students who have novel project ideas and would like to pursue them with us are requested to  share with their project ideas by giving us a detailed outline of the project and methodology.

P1. Scale up of Pichia Pastoris using Fermentation Technology: Duration : 1 Month

Course Code: PW 01

Pharmaceutical proteins produced via fermentation technology, i.e mass cultivation of cells in recombinant microbes provide economical system for production of therapeutic proteins such as antibiotics; vaccines blood products and etc in the biopharmaceutical sector. For this Pichia pastoris is a widely strain and is used for protein expression using recombinant DNA techniques. Scale up of Pichia pastoris In this project students analyze concepts of scale up technology and develop a protocol to scale-up from shake flask level to Lab scale fermentor and further to Pilot Scale Fermentor by optimizing the process parameters.

P2. Scale-up of Monolayer cultures using Microcarrier technology: Duration: 1 Month

Course Code: PW 02

Monolayer cultures are adherent in nature and require a substrate for attachment while growing. Microcarrier technology is used for the scale up of adherent cultures which produce stable therapeutics. Due to large surface area, the beads are grown in suspension and are often continuously perfused with fresh medium to achieve high cell densities. In this project BHK 21 cell line which is a widely used cell line for the production of vaccines or therapeutics; are used to scale up process for mass cultivation. As the culture is of an adherent type, Microcarrier are used for scale up to Lab Scale.

P3. Purification of proteins from fermentation broth: Duration : 1 Month

Course Code: PW 03

Protein purification is a series of critical processes intended to isolate one or a few proteins from a complex mixture, usually cells, tissues or whole organisms. Separation steps usually exploit differences in protein size, physic-chemical properties, binding affinity and biological activity. In this project the fermentation broth is subjected to primary purification techniques to remove cell debris, concentrate the broth and exchange buffer. Thereafter the secondary purification techniques are used to further purify the sample. Protein quantification techniques are carried out to identify and confirm the purified protein.

To obtain more information, you could connect with us at  [email protected] .

We are into the business of Saving Lives

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BIOTECH WORLD INDIA

(Your Own Biotechnology Corner)

Training/Internship Programmes for Biotechnology/Life Sciences Students-2023

There are various training and internship opportunities for Life Science and Biotechnology candidates in various companies, Labs and many of them are funded by the Government. We have listed out some of them as below with application links and some details. We have also provided list of some labs and institutions providing internships and training with their contact details.

1. DBT – Biotech Industrial Training Programme (BITP) 2022-23

DBT Biotech Industrial Training Programme is a plan for students majoring in biotechnology and bioinformatics who are pursuing degrees in B.E., B.Tech., M.Sc., M.Tech., M.V.Sc., or MBA. This programme seeks to give biotech students industry-specific training for skill development and to increase their employment possibilities in biotech businesses. With the help of this programme, biotech and life science businesses may hire and train the best employees. A trainee receives a stipend during the six-month training period. It is a wonderful opportunity for Biotechnology UG and PG students.

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Dates to remember:-

For application CLICK HERE

2. IIT Hyderabad summer Undergraduate Research Exposure 2023

IIT Hyderabad is inviting application for Summer Undergraduate Research Exposure (SURE) Internships 2023. Total 150 seats available with a fellowship of Rs. 15000/-. Interested 2nd and 3rd year Biotechnology Students of B.Tech and 1st year M.Sc students can avail the wonderful oppurtunity.

online projects for msc biotechnology students

APPLICATION LINK

3. IIT Guwahati summer training

For undergraduate and graduate students in scientific and engineering disciplines, the biosciences and bioengineering department offers internships, summer training, and other opportunities in multidisciplinary biotechnology fields. Biochemical engineering, plant biotechnology, nanobiotechnology, protein biophysics & proteomics, industrial biotechnology & bioengineering, as well as offering state-of-the-art facilities in these core fields, are the department’s main focus. The department also conducts internal activities involving a plant tissue culture facility for mass multiplication and an animal cell-culture facility for evaluating bio active substances with therapeutic potential.

The Department offers training to the external students only during summer vacation from May to July every year for a duration of maximum 10 weeks. Students can work in any of the following areas:

  • Protein structure, dynamics & aggregation
  • Molecular biophysics
  • Protein engineering & protein function
  • Structural-function-folding relationship
  • Enzyme and Microbial Technology
  • Biocatalysis, Biosensor & Biofuel cell
  • Plant Cell and Tissue Culture
  • Plant Genetic Engineering
  • Gene Therapy for Viral and Metabolic Diseases
  • Biological Control of Insect Pests
  • Biochemistry and Molecular Biology of Carbohydrate Enzymes
  • Fungal Biotechnology and Bio-pesticides
  • Molecular Fingerprinting and Expression Systems in Food Grade bacteria
  • Environmental bioremediation, Bioprocess development (upstream to downstream)
  • Metabolic Engineering
  • Stem Cell Biology
  • Hormone regulated Gene Expression

Students having flair in physical, chemical or life sciences or related engineering disciplines along with a zeal for research in any of the above mentioned thrust areas can approach the respective faculty members via email mentioned in the website. 

Based on the consent of the respective supervisor only, the trainee shall submit the application form to the respective supervisor in the format given below .

COURSE FEE: A non-refundable Rs. 5000/- (as DD drawn in favour of Registrar, IIT Guwahati) is to be paid by the selected candidate to get admission in the training programme. ACCOMMODATION: Accomodation will be provided on request in separate boys/girls hostel at IIT Guwahati subject to availability of the seats. No TA/DA will be provided for joining/leaving the training programme and during the training period. Trainee can make a request for accomodation to respective faculty supervisor.

APPLICATION FORM

With inputs from https://www.iitg.ac.in/

For more details you may contact

Department of Biosciences and Bioengineering

Indian Institute of Technology Guwahati 781039

Email:-  [email protected]

 Phone:- 0361-2582250

  (0361) 258-2249

4. Council of Science & Technology, U.P.-Summer Research Fellowship

The Council of Science & Technology, U.P. offers summer research fellowships for 02 months to bright students to work with renowned Professors/Scientists from premier institutes of India.

Approximately 80 such fellowships will be awarded in the year 2023-24 with a monthly stipend of Rs. 25000.00. The fellowship will be given only for those students who are studying in Uttar Pradesh. Applications will be received online on our portal  www.cst.up.gov.in  from 08.02.2023 to 31.03.2023.

Forwarded for interested and eligible candidates. Notification attached below

online projects for msc biotechnology students

5. Summer Training Program 2023 (CSIR-Centre for Cellular and Molecular Biology, Hyderabad (CSIR-CCMB) invites online applications for the Summer Training Program 2023 )

Eligibility Criteria:

The program is open to the following students from all branches of life science studying at any Indian University/College/Research Institute.

  • M.Sc. Program: Students admitted in 2022 (who finished first year of M.Sc). 
  • B.Tech./B.Pharm Program: Students admitted in the year 2020 (who finished 3 years of B. Tech).
  • Integrated B.Tech.-M.Tech or B.Sc-M.Sc. or BVSc: Students who finished 8th Semester (or 4 years of their study)
  • MBBS /BDS students in any year of their study can apply.
  • M.Tech/ M.Pharm students are not eligible
  • B.Sc in Biosciences 4years program: Students admitted in the year 2020 (who finished 3 years of B.Sc)

Note:  3 years B.Sc program students are not eligible Training Program

It is not a conventional classroom lecture-based training program. Instead, each selected candidate/trainee will be assigned to a CCMB staff scientist who will supervise/mentor them during the stay. Each student is expected to execute a small project work under the guidance of the scientist. A lecture series on popular science topics, scientific ethics, good laboratory practices, and opportunities in life sciences will be organized for the students. At the end of the program, students must submit a ‘Project Report’ of the work done and also would be required to make a poster presentation.

The program is mainly intended to give students a real-time exposure/hands-on experience to inculcate zeal for research.

Although efforts are made to take into consideration the ‘statement of purpose’/research interest of the selected students (while assigning to different Scientists), it is generally not possible as the allotments are mainly based on the availability of working place(s) in different labs.

Therefore, students should be ready to work in any laboratory of CCMB, if selected, irrespective of their stated research interest. Application procedure

Application, authorization letter from the HOD/DEAN of the Institute/ University/ College for the Summer Program 2023 can be submitted online. The names of the selected candidates will be put up on the CCMB Website.  It may be noted that no separate intimation would be sent to any candidate, and thus all applicants are expected to check the ‘selection list’ on CCMB Website. Selection Process

Academic excellence along with the ‘Statement of purpose’ are considered for the selection of candidates.  Boarding/Lodging

There is no ‘Fee’ charged for this program. Selected candidates must self-finance their stay in CCMB, Hyderabad. However, CCMB offers shared accommodation for the outstation students in the CCMB housing facility depending upon vacant flats/space availability.

Important points to note

  • Applications for Summer Program 2023  MUST be submitted ONLINE only.
  • Duration of the program is 60 days (~eight weeks) between May-July 2023.
  • Requests/applications for the program sent prior to this notification will not be considered. Any such candidate  MUST  apply again using the prescribed application form.
  • Upload the copies of marks/grades obtained in 10th standard, B.Sc and M.Sc (first year) or B.Tech/B.Pharm (first three years) or Integrated B.Tech – M.Tech (first four years).
  • In case the marks sheet/grades for the 2nd semester (or first year) of M.Sc or 6th semester (last semester of pre-final year) in case of B.Tech or 8th semester (last semester of pre-final year) Integrated B.Tech – M.Tech students are not available, the candidate  MUST  upload a certificate from the college/institute that he/she has appeared for the exams and the results are awaited.
  • Incomplete applications will not be considered/be rejected.
  • Academic excellence, Statement of purpose will be considered as the criteria for selection of the candidates. However, the average chance of selection is less than 10% as the number of applications is very high.
  • The decision of the Centre regarding the selection of candidates shall be final.
  • Canvassing in any form and/or bringing in any influence, political or otherwise, will be treated as a disqualification.
  • All candidates selected for the program would need to spend a minimum of 60 days in CCMB without any break.
  • All candidates are required to furnish authorization letter from the Head of the Department/DEAN in the prescribed format.

FORMAT OF AUTHORIZATION LETTER

For more information you can visit:- https://www.ccmb.res.in/Academics/Training-Programs?rr=Summer-Training-Program

6. Summer Internship of Under Graduate Engineering students at CSIR–CMERI

Applications are invited for Summer Internship at CSIR–CMERI in 2023 from students who would be completing 6th Semester of their B.E./B.Tech. courses by May/June, 2023 at IITs, NITs and other reputed Universities and Engineering Colleges of the country.

6. Summer Fellowship 2023 at IIT Madras with monthly stipend

Through a focused summer mini-project carried out at the Indian Institute of Technology Madras, the  IITM – Summer Fellowship Programme  of two months with stipend aims to increase awareness and interest in high quality academic research among young Engineering, Management, Sciences, and Humanities students.

Eligibility: Candidates pursuing  3 rd  year  of B.E./B.Tech./B.Sc. (Engg) or  3 rd  or 4 th  year  of Integrated M.E./M.Tech. programme,  1 st  year of ME/M.Tech/M.Sc./M.A, MBA with outstanding academic background  in terms of high ranks in university examinations are encouraged to apply, highlighting their academic performance and achievement including papers presented at seminars, projects executed, design contests participated, score/rank in Mathematics Olympiad and any other awards/distinctions obtained. 

[IIT students are not eligible to apply].

Bonafide : Letter from the Institute: Should certify that you are a bonafide student issued by the Head of Institution (download template of  UG/DD bonafide  and  PG Bonafide )

The Last date for Online Submission : 31-03-2023 at 5.00 pm.

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