Yuvraj N. Patil
MITWPU School of Health Sciences and Technology, Skeiron Group - BioPharma, Louisiana State University, National Institute of Pharmaceutical Education and Research, MIMER Medical College
About
Classical Biologist and Biomaterials Expert with insight into Metabolism, Metabolic Disorders, Cancer Biology, Enzymology, Animal studies and Cell and Tissue Engineering.
Mitochondrial Physiology Expertise with Clinical Studies in Nutritional and Pharmaceutical Intervention in Obesity, Insulin Resistance and PCOS.
Active research into Cell related - Materials Science. Physiologically identical cell and tissue engineering, Elucidation of cell volumetrics and its role in metabolism and cell function. Development of functionally robust cell attachment surfaces for 3D-cell culturing.
Employment
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MITWPU School of Health Sciences and Technology Associate Professor2022 - Present
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Skeiron Group - BioPharma Head-Technical2021 - 2022
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MIMER Medical College Research Faculty2016 - 2021
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MITWPU School of Pharmacy Guest Researcher2015 - 2016
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Pennington Biomedical Research Center Postdoctoral Researcher2013 - 2015
Education
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Louisiana State University PhD2005 - 2012
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National Institute of Pharmaceutical Education and Research Masters in Pharmaceutical Sciences (Biotech)2002 - 2004
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Maharashtra Institute of Pharmacy Bachelors in Pharmacy1998 - 2002
Projects & Funding
Projects & funding information is unavailable.
Publications (17)
- PD-1/PD-L1 Inhibitors for the Treatment of Lung Cancer Save
- OXPHOS capacity is diminished and the phosphorylation system inhibited during diapause in an extremophile, embryos of Artemia franciscana Save
- Chemical tunability of advanced materials used in the fabrication of micro/nanobots Save
- Designing 3D-nanosubstrates mimicking biological cell growth: pitfalls of using 2D substrates in the evaluation of anticancer efficiency Save
- Erratum: Designing 3D-nanosubstrates mimicking biological cell growth: Pitfalls of using 2D substrates in the evaluation of anticancer efficiency (Nanoscale (2021)13 I7473-17485) (DOI: 10.1039/d1nr03816h) Save
- Water-powered self-propelled magnetic nanobot for rapid and highly efficient capture of circulating tumor cells Save
- Nanocarrier anticancer drug-conjugates cause higher cellular deformations: culpable for mischief Save
- Self-Propelling Targeted Magneto-Nanobots for Deep Tumor Penetration and pH-Responsive Intracellular Drug Delivery Save
- Cellular regeneration and proliferation on polymeric 3D inverse-space substrates and the effect of doxorubicin Save
- A graphene-sandwiched DNA nano-system: regulation of intercalated doxorubicin for cellular localization Save