pH-Regulated Na(+) influx into the mammalian ventricular myocyte: the relative role of Na(+)-H(+) exchange and Na(+)-HCO Co-transport.
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Regulation of intracellular Na(+) in health and disease: pathophysiological mechanisms and implications for treatmentCritical role of bicarbonate and bicarbonate transporters in cardiac functionThe Na(+) /H(+) exchanger and pH regulation in the heartThe divergence, actions, roles, and relatives of sodium-coupled bicarbonate transportersSabiporide improves cardiovascular function, decreases the inflammatory response and reduces mortality in acute metabolic acidosis in pigs.Antibodies against the cardiac sodium/bicarbonate co-transporter (NBCe1) as pharmacological tools.Increased Carbonic Anhydrase Activity is Associated with Sleep Apnea Severity and Related Hypoxemia.Regulation of cell survival by Na+/H+ exchanger-1.Regulation of intracellular and mitochondrial sodium in health and disease.The cardiac electrogenic sodium/bicarbonate cotransporter (NBCe1) is activated by aldosterone through the G protein-coupled receptor 30 (GPR 30).A model of Na+/H+ exchanger and its central role in regulation of pH and Na+ in cardiac myocytes.Modulation of the cardiac sodium/bicarbonate cotransporter by the renin angiotensin aldosterone system: pathophysiological consequences.Recent insights in the paracrine modulation of cardiomyocyte contractility by cardiac endothelial cells.Treatment of acute metabolic acidosis: a pathophysiologic approach.Regulation of the cardiac sodium/bicarbonate cotransporter by angiotensin II: potential Contribution to structural, ionic and electrophysiological myocardial remodelling.Intracellular levels of Na(+) and TTX-sensitive Na(+) channel current in diabetic rat ventricular cardiomyocytes.Blowing off acid: a new tool to study Na+/HCO3- co-transport.Mathematical modeling of buffers used in myocardial preservation.Coadministration of a Na+-H+ exchange inhibitor and sodium bicarbonate for the treatment of asphyxia-induced cardiac arrest in piglets.Extracellular acidosis and very low [Na+ ] inhibit NBCn1- and NHE1-mediated net acid extrusion from mouse vascular smooth muscle cells.NBCe1 Na-HCO3 cotransporter ablation causes reduced apoptosis following cardiac ischemia-reperfusion injuryNanomaterials-Based Approaches for the Modulation of Sodium Bicarbonate Cotransporters
P2860
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P2860
pH-Regulated Na(+) influx into the mammalian ventricular myocyte: the relative role of Na(+)-H(+) exchange and Na(+)-HCO Co-transport.
description
2006 nî lūn-bûn
@nan
2006年の論文
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name
pH-Regulated Na(+) influx into ...... ge and Na(+)-HCO Co-transport.
@ast
pH-Regulated Na(+) influx into ...... ge and Na(+)-HCO Co-transport.
@en
type
label
pH-Regulated Na(+) influx into ...... ge and Na(+)-HCO Co-transport.
@ast
pH-Regulated Na(+) influx into ...... ge and Na(+)-HCO Co-transport.
@en
prefLabel
pH-Regulated Na(+) influx into ...... ge and Na(+)-HCO Co-transport.
@ast
pH-Regulated Na(+) influx into ...... ge and Na(+)-HCO Co-transport.
@en
P2093
P2860
P50
P1476
pH-Regulated Na(+) influx into ...... nge and Na(+)-HCO Co-transport
@en
P2093
Kenneth W Spitzer
Richard D Vaughan-Jones
Taku Yamamoto
P2860
P304
P356
10.1111/J.1540-8167.2006.00394.X
P478
17 Suppl 1
P577
2006-05-01T00:00:00Z