About
Dr. Ayush Madan is a researcher and academic professional in the field of Biotechnology with expertise in nanobiotechnology, cytogenetics, cell culture, and toxicological assessment. He earned his Ph.D. in Biotechnology with research focused on the cytotoxic effects of gold and silver nanoparticles on human cells, with special reference to chromosomal aberrations. His work integrates nanoparticle synthesis, characterization, antimicrobial studies, and biomedical applications. He has published more than 100 research papers, review articles, and book chapters. He has also served as editor of more than 50 books with reputed international publishers including Springer, IGI Global, Taylor & Francis, CABI, Cambridge Scholars Publishing, Jenny Stanford Publishing, River Publishers, and Wiley. He has experience in teaching, curriculum development, laboratory establishment, academic administration, and accreditation processes. His research interests include nanotechnology, biotechnology, microbiology, biomedical sciences, and multidisciplinary life science innovations.
Employment
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People’s University Assistant Professor2024 - Present
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Shobhit University Assistant Professor2018 - Present
Education
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Graphic Era University M.Tech. Biotechnology
Projects & Funding
Projects & funding information is unavailable.
Publications (33)
- Function of Gut Microbiota in Longevity as a Futuristic Approach of Personalised Nutrition Save
- Microbial Metabolites and Their Role in Human Health Save
- Future Directions in Nano-Virology Save
- Herbal Nanotechnology in Detection of Health Hazardous Molecules Save
- Function of Gut Microbiota in Cancer as a Microbial Approach for Personalised Therapy Save
- AI technologies for enhancing recycling processes Save
- Hydroponics/Aquaponics and Its Co-benefits Save
- Combined Application of Biochar and Arbuscular Mycorrhizae Enhances Growth and Soil Functionality in Common Bean Under Drought Stress Save
- Challenges and Breakthroughs: Lessons from Stem-Cell-Based Cancer Therapies Save
- Cell free systems for biodesign Save