Published in Int J Cardiol on April 11, 2015
A spontaneous increase in intracellular Ca2+ in metaphase II human oocytes in vitro can be prevented by drugs targeting ATP-sensitive K+ channels. Hum Reprod (2015) 0.79
Phenylephrine preconditioning in embryonic heart H9c2 cells is mediated by up-regulation of SUR2B/Kir6.2: A first evidence for functional role of SUR2B in sarcolemmal KATP channels and cardioprotection. Int J Biochem Cell Biol (2015) 0.78
Anti-Apoptotic and Pro-Survival Effect of Alpinate Oxyphyllae Fructus (AOF) in a d-Galactose-Induced Aging Heart. Int J Mol Sci (2016) 0.77
CREB Negatively Regulates IGF2R Gene Expression and Downstream Pathways to Inhibit Hypoxia-Induced H9c2 Cardiomyoblast Cell Death. Int J Mol Sci (2015) 0.75
E2/ER β Enhances Calcineurin Protein Degradation and PI3K/Akt/MDM2 Signal Transduction to Inhibit ISO-Induced Myocardial Cell Apoptosis. Int J Mol Sci (2017) 0.75
SNPs, linkage disequilibrium, and chronic mountain sickness in Tibetan Chinese. Hypoxia (Auckl) (2017) 0.75
Exposure to 15% oxygen in vivo up-regulates cardioprotective SUR2A without affecting ERK1/2 and AKT: a crucial role for AMPK. J Cell Mol Med (2017) 0.75
Myocardial substrate metabolism in the normal and failing heart. Physiol Rev (2005) 6.06
Cardiac metabolic adaptations in response to chronic hypoxia. J Physiol (2007) 1.12
Cardiovascular and renal effects of chronic exposure to high altitude. Nephrol Dial Transplant (2012) 0.98
Mild hypoxia in vivo regulates cardioprotective SUR2A: A role for Akt and LDH. Biochim Biophys Acta (2015) 0.95
Upregulation of cardioprotective SUR2A by sub-hypoxic drop in oxygen. Biochim Biophys Acta (2014) 0.94
Creatine kinase overexpression improves ATP kinetics and contractile function in postischemic myocardium. Am J Physiol Heart Circ Physiol (2012) 0.89
Relation of myocardial oxygen consumption and function to high energy phosphate utilization during graded hypoxia and reoxygenation in sheep in vivo. J Clin Invest (1995) 0.88
Cardioprotective SUR2A promotes stem cell properties of cardiomyocytes. Int J Cardiol (2013) 0.87
Chronic hypoxia enhances expression and activity of mitochondrial creatine kinase and hexokinase in the rat ventricular myocardium. Cell Physiol Biochem (2014) 0.85