Rini Joshi
Affiliations: | 2009-2013 |
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Joshi R, Singh P, Sharma NK, et al. (2021) Site-directed mutagenesis in the P-domain of calreticulin transacylase identifies Lys-207 as the active site residue. 3 Biotech. 11: 113 |
Joshi R, Rohil V, Arora S, et al. (2017) Corrigendum to The Competence of 7,8-Diacetoxy-4-Methylcoumarin and Other Polyphenolic Acetates in Mitigating the Oxidative Stress and their Role in Angiogenesis. Current Topics in Medicinal Chemistry. 17: 1115 |
Joshi R, Arora S, Kumar A, et al. (2015) The Competence of 7,8-Diacetoxy-4-Methylcoumarin and Other Polyphenolic Acetates in Mitigating the Oxidative Stress and their Role in Angiogenesis. Current Topics in Medicinal Chemistry. 15: 179-86 |
Joshi R, Arora S, Kumar A, et al. (2014) The Competence Of 7,8-Diacetoxy-4-Methylcoumarinand Other Polyphenolic Acetates In Mitigating The Oxidative Stress And Their Role In Angiogenesis. Current Topics in Medicinal Chemistry |
Joshi R, Kumar A, Manral S, et al. (2013) Calreticulin transacetylase mediated upregulation of thioredoxin by 7,8-diacetoxy-4-methylcoumarin enhances the antioxidant potential and the expression of vascular endothelial growth factor in peripheral blood mononuclear cells. Chemico-Biological Interactions. 206: 327-36 |
Kumar A, Sushama A, Manral S, et al. (2012) Calreticulin Transacetylase mediated activation of human platelet nitric oxide synthase by acetyl group donor compounds Nitric Oxide - Biology and Chemistry. 26: 9-19 |
Manral S, Bhatia S, Sinha R, et al. (2011) Normalization of deranged signal transduction in lymphocytes of COPD patients by the novel calcium channel blocker H-DHPM. Biochimie. 93: 1146-56 |
Kumari R, Bansal S, Gupta G, et al. (2010) Calreticulin transacylase: genesis, mechanism of action and biological applications. Biochimie. 92: 1173-9 |