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Assistant Professor at Bioinformatics Centre
Ask questions about Rohan J. Meshram's research, publications, and ongoing work
Evaluated the efficacy and limitations of anti-angiogenic therapy by targeting angiogenic factors, providing insights into cancer treatment strategies.
Synthesized and biologically evaluated novel pyrazoline derivatives as potent anti-inflammatory and antioxidant agents, demonstrating their therapeutic potential.
Focused on the tumor microenvironment to design novel anti-angiogenic agents, aiming to arrest tumor growth through targeted therapies.
Synthesized and investigated thiazoles bearing pyrazoles derivatives using in silico methods, identifying their potential as anti-inflammatory agents.
Designed, synthesized, and studied pyridine-based 1,3,4-oxadiazole embedded hydrazinecarbothioamide derivatives as potent anti-tubercular agents using computational methods.
Investigated the role of dietary flavonoids in mitigating sugar-induced cataractogenesis, highlighting their potential in managing diabetic cataracts.
Explored flavonoids as a scaffold for developing novel anti-angiogenic agents through experimental and computational approaches.
Utilized green synthesis and in silico methods to identify dihydro-2H-benzo[1,3]oxazine derivatives as inhibitors of Mycobacterium tuberculosis.
Rohan J. Meshram is an Assistant Professor specializing in bioinformatics and computational drug discovery, focusing on the design, synthesis, and in silico evaluation of novel therapeutic agents for diseases like tuberculosis, cancer, and parasitic infections. His research integrates computational methods with experimental validation to develop effective drug candidates and understand disease mechanisms.
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