Chandrashekhar Bobade
Dr. Vishwanath Karad MIT World Peace University, School of Pharmacy, Pune
About
Chandrashekhar D Bobade is currently working as Assistant Professor and Undergraduate Program Head at MITWPU's School of Pharmacy. He has 12 years of teaching experience.
Chandrashekhar D Bobade was graduated in pharmacy from Swami Ramanand Teerth Marathwada University Nanded in 2006 with Distinction and M Pharm in Pharmaceutics from Shivaji Unviersity Kolhapur in 2008 with first class. He received the best outgoing student of the year award 2008.
He has completed his Ph.D. from Savitribai Phule Pune University. He has 11 years of teaching 4 years in research. His area of research is Material Chemistry, Bioengineering, Drug delivery, and Nanotechnology.
He has received research grants from BCUD, Savitribai Phule Pune University. Experience of writing DBT grants.He has published 4 research, 1 review articles, 1 patent application, and 2 oral research and development presentations in International conferences.
He has recently published his Ph.D. research work in reputed RSC’s journal Nanoscale Advances.
He is a column writer for advanced career guidance in pharmacy and innovative pedagogy in leading newspapers like Maharashtra Times, Loksatta, etc.
He is a lifetime member of the Indian pharmaceutical association and association and pharmaceutical teachers in India. He is a joint secretary of the Indian pharmaceutical association Pune branch.
Employment
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Dr. Vishwanath Karad MIT World Peace University, School of Pharmacy, Pune2009 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (7)
- Correction to: pH-Responsive Natural Polymers as Versatile Carriers for Drug Delivery in Breast Cancer: A Review Save
- pH-Responsive Natural Polymers as Versatile Carriers for Drug Delivery in Breast Cancer: A Review Save
- Inverse 3D ‘lab-on-a-chip’ polymeric microfilms for selective capture of circulating tumor cells from patients' blood 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
- Remediation of medication error: Salience of labeling Save
- Cellular regeneration and proliferation on polymeric 3D inverse-space substrates and the effect of doxorubicin Save