Ideas

December 17, 2017

Molecular therapy for Cardiomyopathy: A pharmaceutical mixture (PMSFN) encompassing  Pyridoxamin (PM) and Sulphoraphane (SFN) decreases the expression of Sox6, restores the balance between slow- and fast-twitch myofiber proteins and alleviates Cardiomyopathy via up regulation of its target gene, 17/December/2017,  11.03 pm

Introduction: What they say   A study from the Department of Cardiology, Boston Children’s Hospital, Harvard Medical School, Boston, Massachusetts, USA; and Harvard Stem Cell Institute, Harvard University, Cambridge, Massachusetts, USA shows that “Trbp regulates heart […]
December 17, 2017

Amino acid-based therapy for ageing-associated diseases and Lifespan extension: D-Serine increases NMN/NAD levels, decreases interaction of DBC1 with PARP1, increases PARP1 activity, promotes DNA repair, augments tolerance against radiation, cancer and aging via down regulation of its target gene, 17/December/2017, 10.52 pm

Introduction: What they say A study from Department of Genetics, Paul F. Glenn Center for the Biology of Aging, Harvard Medical School, Boston, MA, USA; and […]
December 16, 2017

Natural product-derived combinatorial therapy for Myocardial Infarction: A pharmaceutical mixture encompassing Pyridoxamine (PM) and Sulforaphane (SFN) inhibits DNA damage responses, induces telomerase expression, inhibits telomere shortening, and promotes cardiomyocyte survival after myocardial infarction via up regulation of PNUTS,  16/December/2017, 11.49 pm

What they say:  A recent study from the Institute for Cardiovascular Regeneration, Centre of Molecular Medicine, Frankfurt, Germany shows that “MicroRNA-34a regulates cardiac ageing and function.” This study was published, in the 7 March  2013 issue of Nature,  by Prof Dimmler, […]
December 16, 2017

Natural product-based therapy for Diabetic retinopathy: Notoginsenoside R1, isolated from Panax Notoginseng, inhibits Soluble epoxide hydrolase (sEH) expression, decreases toxic 19,20-dihydroxydocosapentaenoic acid levels, inhibits pericyte loss, vascular permeability, and inflammation of the eye and progression of diabetic retinopathy, via down regulation of its target gene, 16/December/2017, 11.38 pm

Introduction: What they say A study from the Institute for Vascular Signalling, Centre for Molecular Medicine, Goethe University, Frankfurt am Main, Germany; and German Centre for […]
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