DU
Dr. V V SATHIBABU UDDANDRAO
Karpagam Academy of Higher Education, KS Rangasamy College of Arts and Science (Autonomous), Periyar University, K.S.RANGASAMY COLLEGE OF ARTS AND SCIENCE, Indian Council of Medical Research
Employment
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Karpagam Academy of Higher Education Assistant Professor2025 - Present
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KS Rangasamy College of Arts and Science (Autonomous) Assistant Professor2021 - 2025
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Indian Council of Medical Research Senior Research Fellow (SRF)2019 - 2021
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K.S.RANGASAMY COLLEGE OF ARTS AND SCIENCE SENIOR RESEARCH FELLOW2015 - 2019
Education
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Periyar University PH.D2016 - 2020
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K.S.RANGASAMY COLLEGE OF ARTS AND SCIENCE M.Sc2008 - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (63)
- Betulinic acid attenuates obesity-associated hepatic steatosis by modulating hepatic lipid handling and bile acid-regulated nuclear receptor signaling in high-fat diet-fed rats Save
- Thrombin concentration shapes endothelial extracellular vesicle profiles with divergent inflammatory functions Save
- Combination of hydroxycitric acid and capsaicin regulates IRS-1/AMPK-mTOR-SREBP-1c Axis/NLRP3-NF-κB/Nrf-2-ARE signaling pathways to ameliorate the two-hit process in high-fat diet-induced hepatic steatosis Save
- Activated protein C promotes human lung cancer progression through the release of tumor extracellular vesicles and transfer of microRNA-200a Save
- Pathophysiology of obesity-related infertility and its prevention and treatment by potential phytotherapeutics Save
- Linalool attenuates lipid accumulation and oxidative stress in metabolic dysfunction-associated steatotic liver disease via Sirt1/Akt/PPRA-α/AMPK and Nrf-2/HO-1 signaling pathways Save
- Phytoformulation with hydroxycitric acid and capsaicin protects against high-fat-diet-induced obesity cardiomyopathy by reducing cardiac lipid deposition and ameliorating inflammation and apoptosis in the heart Save
- Biochanin-A Protects Rats from Diabetes-associated Cardiorenal Damage by Attenuating Oxidative Stress through Activation of Nrf-2/HO-1 Pathway Save
- Linalool Mitigated High-Fat Diet–Induced Non-alcoholic Fatty Liver Disease by Regulating the Intestinal-Hepatic Axis via TGF-β/NF-kB/TLR4/ZO-1 Pathway Save
- Βeta‐glucan suppresses high‐fat‐diet‐induced obesity by attenuating dyslipidemia and modulating obesogenic marker expressions in rats Save