Prakriti Tayalia
Indian Institute of Technology Bombay, Harvard University, University of Delaware, GE India Technology Centre Pvt Ltd
About
Prof. Prakriti Tayalia is currently an Associate Professor in the Department of Biosciences & Bioengineering at Indian Institute of Technology Bombay. She is the Principal Investigator of the Cell and Tissue engineering Lab and has more than 15 years of interdisciplinary experience working in the field of additive manufacturing, biomaterials and immunology with applications in tissue engineering, immunotherapy and drug delivery. Her work focuses on utilizing engineering tools, state-of-the-art characterization techniques and biological assays to develop physiologically relevant material systems that would support multicellular culture in a more controlled fashion. Her group is also involved in developing material platforms to recruit and program cells for applications involving activation of immune system and prevention of tumor growth. Her expertise and interdisciplinary experience in developing biomaterials for various applications are the strength of the team. Prof. Tayalia has several awards, patents and many publications in international journals of repute to her credit.
Employment
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Indian Institute of Technology Bombay Associate Professor2019 - 2033
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Indian Institute of Technology Bombay Assistant Professor2011 - 2019
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Harvard University Postdoctoral Fellow2009 - 2011
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GE India Technology Centre Pvt Ltd Materials Scientist2003 - 2003
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University of Delaware Research Assistant2000 - 2002
Education
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Harvard University Ph.D? - 2009
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University of Delaware M.S.? - 2002
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Indian Institute of Technology Bombay B.Tech? - 1999
Projects & Funding
Projects & funding information is unavailable.
Publications (29)
- Clove Oil-Incorporated Antibacterial Gelatin–Chitosan Cryogels for Tissue Engineering: An In Vitro Study Save
- Particulate leaching improves spheroid formation in PEG and gelatin-based matrices for 3D tumor model Save
- Novel combination of bioactive agents in bilayered dermal patches provides superior wound healing Save
- Bio‐Mimicking Brain Vasculature to Investigate the Role of Heterogeneous Shear Stress in Regulating Barrier Integrity Save
- Immunomodulation via macrophages to fight solid tumor malignancies Save
- A bilayered skin substitute developed using an eggshell membrane crosslinked gelatin–chitosan cryogel Save
- Three‐dimensional cryogel matrix for spheroid formation and anti‐cancer drug screening Save
- Differential Influence of IL-9 and IL-17 on Actin Cytoskeleton Regulates the Migration Potential of Human Keratinocytes Save
- Gelatin-Based Matrices as a Tunable Platform To Study in Vitro and in Vivo 3D Cell Invasion Save
- Amyloid Fibrils with Positive Charge Enhance Retroviral Transduction in Mammalian Cells Save