RM
Raghavender medishetti
Dr Reddy's Institute of Life Sciences, JSS University, Rajiv Gandhi University of Health Sciences, Manipal University
Employment
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Dr Reddy's Institute of Life Sciences Research fellow2016 - 2018
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Dr Reddy's Institute of Life Sciences Senior research fellow2013 - 2016
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Dr Reddy's Institute of Life Sciences Research trainee2013 - 2013
Education
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JSS University M.Pharmacy2011 - 2013
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Rajiv Gandhi University of Health Sciences B.pharm2007 - 2011
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Manipal University Ph. D
Projects & Funding
Projects & funding information is unavailable.
Publications (16)
- Correlation of pharmacokinetics and brain penetration data of adult zebrafish with higher mammals including humans Save
- Novel Zebrafish EAE model: A quick in vivo screen for multiple sclerosis Save
- ChemInform Abstract: NaSH in the Construction of Thiophene Ring Fused with N-Heterocycles: A Rapid and Inexpensive Synthesis of Novel Small Molecules as Potential Inducers of Apoptosis. Save
- ChemInform Abstract: Ligand-Free MCR for Linking Quinoxaline Framework with a Benzimidazole Nucleus: A New Strategy for the Identification of Novel Hybrid Molecules as Potential Inducers of Apoptosis. Save
- Design and synthesis of novel quinoline-aminopiperidine hybrid analogues as Mycobacterium tuberculosis DNA gyraseB inhibitors Save
- Dual drug conjugate loaded nanoparticles for the treatment of cancer Save
- Exploring the gyrase ATPase domain for tailoring newer anti-tubercular drugs: Hit to lead optimization of a novel class of thiazole inhibitors Save
- ChemInform Abstract: A Pd-Based Regioselective Strategy to Indole-1,2-fused 8- and 9-Membered Rings: Their Evaluation as Potential Scaffolds for Apoptosis in Zebrafish. Save
- Ligand-free Pd-catalyzed C–N cross-coupling/cyclization strategy: An unprecedented access to 1-thienyl pyrroloquinoxalines for the new approach towards apoptosis Save
- ChemInform Abstract: Zebrafish Based Strategy for the Identification of a Potential Pharmacophore for Apoptosis: A Greener CuAAC Approach for Novel 1,2,3-Triazoles Derived from Mefenamic Acid. Save