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Journal of Cellular and Molecular Medicine|March 1, 2011
Regeneration of infarcted myocardium with resveratrol-modified cardiac stem cellsNikolai Gorbunov, Goran Petrovski, Narasimman Gurusamy, et al.
Journal of Cellular and Molecular Medicine|August 14, 2021
Comparative analysis of human induced pluripotent stem cell-derived mesenchymal stem cells and umbilical cord mesenchymal stem cellsSheeja Rajasingh, Vinoth Sigamani, Vijay Selvam, et al.
Antioxidants & Redox Signaling|February 7, 2007
Spatial coordination of cell-adhesion molecules and redox cycling of iron in the microvascular inflammatory response to pulmonary injuryNikolai V Gorbunov, Dipak K Das, Shyamal K Goswami, et al.
Biological & Pharmaceutical Bulletin|June 3, 2005
Inactivation of 14-3-3 protein exacerbates cardiac hypertrophy and fibrosis through enhanced expression of protein kinase C beta 2 in experimental diabetesNarasimman Gurusamy, Kenichi Watanabe, Meilei Ma, et al.
Free Radical Biology & Medicine|November 30, 2007
Redox regulation of resveratrol-mediated switching of death signal into survival signalSamarjit Das, Nadeem Khan, Subhendu Mukherjee, et al.
Cells|January 5, 2021
Role of Human Mesenchymal Stem Cells in Regenerative TherapyJayavardini Vasanthan, Narasimman Gurusamy, Sheeja Rajasingh, et al.
Journal of Cellular and Molecular Medicine|September 17, 2008
Cardioprotection by adaptation to ischaemia augments autophagy in association with BAG-1 proteinNarasimman Gurusamy, Istvan Lekli, Nikolai V Gorbunov, et al.
Experimental Biology and Medicine (Maywood, N.J.)|October 14, 2021
Modern approaches on stem cells and scaffolding technology for osteogenic differentiation and regenerationShivaani Kirankumar, Narasimman Gurusamy, Sheeja Rajasingh, et al.
Biochemical and Biophysical Research Communications|July 9, 2004
Dominant negative 14-3-3 promotes cardiomyocyte apoptosis in early stage of type I diabetes mellitus through activation of JNKNarasimman Gurusamy, Kenichi Watanabe, Meilei Ma, et al.
Experimental Cell Research|February 10, 2024
scaRNA20 promotes pseudouridylatory modification of small nuclear snRNA U12 and improves cardiomyogenesisSelene Perales, Vinoth Sigamani, Sheeja Rajasingh, et al.
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