Distribution, Abundance and habitat interaction of threatened birds with response to climate change in Sikkim Himalaya
Other
Agency: Department of Science and TechnologyRole: Co-Principal Investigator
Studies on the molecular protective mechanism of sulforaphane (sfn) against arsenic (ar) induced oxidative stress mediated multi-organ toxicity in rats by assessing the biochemical, inflammation and apoptotic markers: exploring the role of pi3k/akt signal
Completed
Agency: Department of Science and TechnologyRole: Principal Investigator
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Scholarly Publications
Retraction Note: Sulforaphane potentially attenuates arsenic-induced nephrotoxicity via the PI3K/Akt/Nrf2 pathway in albino Wistar rats
A mechanism underlying the neurotoxicity induced by sodium fluoride and its reversal by epigallocatechin gallate in the rat hippocampus: involvement of NrF2/Keap-1 signaling pathway