DK
Dinesh Kumar
National Institute of Pharmaceutical Education and Research- Ahmedabad, North Dakota State University, National Institute of Pharmaceutical Education and Research, Manipal University
Employment
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National Institute of Pharmaceutical Education and Research- Ahmedabad Associate Professor2024 - 2026
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National Institute of Pharmaceutical Education and Research- Ahmedabad Assistant professor2017 - 2024
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North Dakota State University Postdoctoral Fellow2013 - 2017
Education
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National Institute of Pharmaceutical Education and Research PhD2008 - 2013
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National Institute of Pharmaceutical Education and Research MS2005 - 2007
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Manipal University B. Pharm.2001 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (42)
- Domino synthesis of functionalized pyridine carboxylates under gallium catalysis: Unravelling the reaction pathway and the role of the nitrogen source counter anion Save
- Water enabled, nickel-catalyzed highly chemoselective C-allylation of (NH)-indoles employing alcohols Save
- ‘In-water’, nickel-catalyzed mild preparation of allylic amines employing alcohols: application to ‘all-water’ synthesis of pharmaceuticals Save
- Computational Biology of BRCA2 in Male Breast Cancer, through Prediction of Probable nsSNPs, and Hit Identification Save
- Computational drug repurposing study elucidating simultaneous inhibition of entry and replication of novel corona virus by Grazoprevir Save
- Borrowing Carbonate-Enabled Allylic Amination Reactions under Additive- and Reductant-Free Nickel Catalysis Employing Allylic Alcohols Save
- Paradigm shift of “classical” HDAC inhibitors to “hybrid” HDAC inhibitors in therapeutic interventions Save
- A mechanistic explanation on degradation behavior of flibanserin for identification and characterization of its potential degradants using LC-DAD/ESI/APCI-Q-TOF-MS/MS Save
- Organic reactions in aqueous media catalyzed by nickel Save
- Structure Ligation Relationship of Amino Acids for the Selective Indole C−H Arylation Reaction: L‐Aspartic acid as Sustainable Alternative of Phosphine Ligands Save