Rini Joshi

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2009-2013  
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"Rini Joshi"
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Diwan S Rawat grad student 2009-2013
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Publications

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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
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