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Saikat Dewanjee

Researcher at Jadavpur University

Publications -  133
Citations -  3651

Saikat Dewanjee is an academic researcher from Jadavpur University. The author has contributed to research in topics: Medicine & Oxidative stress. The author has an hindex of 30, co-authored 107 publications receiving 2522 citations. Previous affiliations of Saikat Dewanjee include University of Lisbon.

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Mechanistic insight of diabetic nephropathy and its pharmacotherapeutic targets: An update.

TL;DR: Much research is required to find out new therapeutic agent/strategies for an adequate pharmacotherapy of diabetes nephropathy, where the involvement of multiple mechanisms makes it difficult to choose an optimum therapeutic agent.
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Molecular mechanism of diabetic neuropathy and its pharmacotherapeutic targets.

TL;DR: The main aim of this review is to highlight the putative role of various mechanisms and pathways involved in the development of diabetic neuropathy and to impart an in‐depth insight on new therapeutic approaches aimed at delaying or reversing various modalities of diabetic Neuropathy.
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Antidiabetic activity of Diospyros peregrina fruit: effect on hyperglycemia, hyperlipidemia and augmented oxidative stress in experimental type 2 diabetes.

TL;DR: The diabetic rats exhibited lower activities of superoxide dismutase, catalase, and reduced glutathione content in hepatic and renal tissues as compared with normal rats, and the activities of SOD, CAT, and GSH were found to be increased in extract treated diabetic rats in selected tissues.
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Bioautography and its scope in the field of natural product chemistry

TL;DR: This review critically describes the methodologies to identify antimicrobial, antioxidant, enzyme inhibitor lead/scaffolds by employing bioautography.
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Natural Products as Alternative Choices for P-Glycoprotein (P-gp) Inhibition

TL;DR: The present review aims to recapitulate the research findings on bioactive constituents of natural origin with P-gp inhibition characteristics with great potential for semi-synthetic modification to produce new scaffolds which could serve as valuable investigative tools to recognize the function of complex ABC transporters apart from evading the systemic toxicities shown by synthetic counterparts.