Na+-H+ exchange inhibition at reperfusion is cardioprotective during myocardial ischemia-reperfusion; P-31 NMR studies

被引:13
作者
Docherty, JC [1 ]
Yang, LJ [1 ]
Pierce, GN [1 ]
Deslauriers, R [1 ]
机构
[1] UNIV MANITOBA,DEPT PHYSIOL,INST CARDIOVASC SCI,ST BONIFACE GEN HOS,RES CTR,WINNIPEG,MB R2H 2A6,CANADA
关键词
dimethyl amiloride; intracellular pH; ischemia-reperfusion injury; P-31; NMR; sodium-hydrogen exchange; rat;
D O I
10.1023/A:1006861414737
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
To help resolve the controversy as to whether or not Na+-H+ exchange is functioning during reperfusion of the ischemic myocardium we assessed the effects of dimethylamiloride (DMA, an amiloride analogue possessing selectivity for inhibition of the Na+-H+ exchanger) on cardiac function and intracellular pH during ischemia-reperfusion. Studies were performed in the presence of bicarbonate (modified Krebs-Henseleit buffer) or in the nominal absence of bicarbonate (HEPES buffer) in order to determine if similar cardioprotection and effects on intracellular pH were observed in the presence and absence of bicarbonate dependent transport processes, Isovolumic rat hearts were perfused in the Langendorff mode at a constant pressure of 80 mm Hg and subjected to 28 min total global ischemia at 37 degrees C, Intracellular pH was determined from the pH dependent shift of the inorganic phosphate peak in P-31 nuclear magnetic resonance spectra. DMA (20 mu M) was infused for either 2.5 min before ischemia, for the initial 5 min of reperfusion, or at both time intervals. DMA had no effect on the intracellular pH during ischemia. Intracellular pH returned to pre-ischemic levels within 2.5 min of reperfusion in bicarbonate buffer. This normalization of pH was slower in HEPES perfusate. In both bicarbonate and HEPES perfused hearts all drug dosing regimens caused a significant increase in the recovery of mechanical function after reperfusion and slowed the recovery of intracellular pit during reperfusion. These results suggest that the Na+-H+ exchanger is activated during reperfusion of the ischemic myocardium, that this activation of the exchanger contributes to ischemia-reperfusion induced cardiac dysfunction and that administration of an inhibitor of Na+-H+ exchange at reperfusion significantly attenuates the deleterious effects of exchanger activation.
引用
收藏
页码:257 / 264
页数:8
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