Improved cardiac function after prolonged hypothermic ischemia with the Na+/H+ exchange inhibitor HOE 694.
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[1] R. Bohle,et al. Myocardial Protection by Na+-H+ Exchange Inhibition in Ischemic, Reperfused Porcine Hearts , 1995 .
[2] J. Pouysségur,et al. Hormonal regulation, pharmacology, and membrane sorting of vertebrate Na+/H+ exchanger isoforms. , 1995, The American journal of physiology.
[3] W. Scholz,et al. Potential of selective sodium-hydrogen exchange inhibitors in cardiovascular therapy. , 1995, Cardiovascular research.
[4] M. Karmazyn,et al. Sodium-hydrogen exchange inhibitors improve postischemic recovery of function in the perfused rabbit heart. , 1995, Cardiovascular research.
[5] M. Yasutake,et al. Exacerbation of reperfusion arrhythmias by alpha 1 adrenergic stimulation: a potential role for receptor mediated activation of sarcolemmal sodium-hydrogen exchange. , 1995, Cardiovascular research.
[6] M. Karmazyn,et al. Role of Na(+)-H+ exchange in mediating effects of endothelin-1 on normal and ischemic/reperfused hearts. , 1994, Circulation research.
[7] P. van Hecke,et al. New Na(+)-H+ exchange inhibitor HOE 694 improves postischemic function and high-energy phosphate resynthesis and reduces Ca2+ overload in isolated perfused rabbit heart. , 1994, Circulation.
[8] W. Schaper,et al. Effects of a New Na+/H+ Antiporter Inhibitor on Postischemic Reperfusion in Pig Heart , 1994, Journal of cardiovascular pharmacology.
[9] L. Opie,et al. Role for the Na+/H+ Exchanger in Reperfusion Stunning in Isolated Perfused Rat Heart , 1993, Journal of cardiovascular pharmacology.
[10] L. Fliegel,et al. The Na+/H+ exchanger: an update on structure, regulation and cardiac physiology. , 1993, The Biochemical journal.
[11] J. Pouysségur,et al. Pharmacological characterization of stably transfected Na+/H+ antiporter isoforms using amiloride analogs and a new inhibitor exhibiting anti-ischemic properties. , 1993, Molecular pharmacology.
[12] M. Karmazyn,et al. Protective effects of the potent Na/H exchange inhibitor methylisobutyl amiloride against post-ischemic contractile dysfunction in rat and guinea-pig hearts. , 1993, Journal of molecular and cellular cardiology.
[13] W. Linz,et al. Hoe 694, a new Na+/H+ exchange inhibitor and its effects in cardiac ischaemia , 1993, British journal of pharmacology.
[14] G. Pierce,et al. Effect of amiloride and selected analogues on postischemic recovery of cardiac contractile function. , 1993, The American journal of physiology.
[15] M. Karmazyn,et al. Role of Na+/H+ exchange in cardiac physiology and pathophysiology: mediation of myocardial reperfusion injury by the pH paradox. , 1993, Cardiovascular research.
[16] J. Hegge,et al. LIMITATIONS OF HEART PRESERVATION BY COLD STORAGE , 1992, Transplantation.
[17] R. London,et al. Amiloride delays the ischemia-induced rise in cytosolic free calcium. , 1991, Circulation research.
[18] G. Pierce,et al. Protective effects of 5-(N,N-dimethyl)amiloride on ischemia-reperfusion injury in hearts. , 1990, The American journal of physiology.
[19] M. Karmazyn,et al. Amiloride enhances postischemic ventricular recovery: possible role of Na+-H+ exchange. , 1988, The American journal of physiology.
[20] M. Lazdunski,et al. The sodium/hydrogen exchange system in cardiac cells: its biochemical and pharmacological properties and its role in regulating internal concentrations of sodium and internal pH. , 1985, Journal of molecular and cellular cardiology.
[21] S. Rosalki. An improved procedure for serum creatine phosphokinase determination. , 1967, The Journal of laboratory and clinical medicine.