
Assistant Professor
Sweety Ahalawat
Scientific Writing
About me
Dedicated, research-oriented Assistant Professor with a Ph.D. in Biotechnology with 10 yrs of experience in teaching, academics and interdisciplinary research. Expertise in molecular biology, immunology, biosensors, nanobiotechnology, and cancer diagnostics, with a strong publication record, granted patents, Experienced in curriculum development, student mentoring, and academic leadership, with a commitment to advancing innovative research and delivering high-quality biotechnology teaching.
Interests: My research focuses on the development of innovative biotechnological solutions for healthcare, environmental sustainability, and diagnostic applications through the integration of nanotechnology, molecular biology, and biosensor engineering. I am particularly interested in designing advanced nano-enabled biosensors for the rapid, sensitive, and cost-effective detection of disease biomarkers, infectious agents, and environmental contaminants. My doctoral research involved the fabrication of nanoporous membrane-based nanoimmunosensors for cancer biomarker detection, providing expertise in biosensor development, electrochemical sensing, nanomaterial synthesis, surface functionalization, and biomolecular interactions. Building upon this foundation, I continue to explore translational diagnostic technologies that can bridge the gap between laboratory research and real-world clinical applications. My research interests also encompass molecular diagnostics, immunology, recombinant DNA technology, microbiology, and nanobiotechnology. I have extensive experience with molecular and immunological techniques including PCR, ELISA, electrophoresis, protein analysis, microbial culture, and analytical characterization methods. These competencies enable me to conduct interdisciplinary research addressing challenges in human health, infectious diseases, and biomedical sciences. Currently, I am expanding my research into emerging areas such as green nanotechnology, antimicrobial and antibiofilm strategies, biosensor-based point-of-care diagnostics, CRISPR-enabled technologies, cancer biomarkers, and AI-assisted biotechnology applications. I am also interested in developing sustainable biomaterials and biosensing platforms for precision medicine, food safety, and environmental monitoring. In addition to research, I actively contribute to academic curriculum development, student mentoring, and collaborative interdisciplinary projects. My long-term objective is to establish research that combines fundamental biological sciences with engineering and computational approaches to develop affordable, scalable, and socially relevant technologies. Through collaborative research, innovation, and mentorship, I aim to contribute to scientific advancement while training future researchers capable of addressing global challenges in biotechnology and life sciences.
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