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首页> 外文期刊>American Journal of Physiology >Intracellular chloride activity increases in guinea pig ventricular muscle during simulated ischemia.
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Intracellular chloride activity increases in guinea pig ventricular muscle during simulated ischemia.

机译:模拟缺血期间,豚鼠心室肌​​的细胞内氯化物活性增加。

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We investigated the effects of simulated ischemia on intracellular Cl- activity ([Cl-]i) in isolated guinea pig ventricular papillary muscles using ion-selective microelectrode techniques. Simulated ischemia in ventricular muscles was produced by stopping the flow of superfusion and immersing preparations in mineral oil as previously described [B. Vanheel, L. Leybaert, A. De Hemptinne, and I. Leusen. Am. J. Physiol. 257 (Cell Physiol. 26): C365-C379, 1989; Z. F. Lai, J. Liu, and K. Nishi. Jpn. J. Pharmacol. 72: 161-174, 1996]. When preparations were exposed to paraffin oil for 15 min, [Cl-]i markedly increased and the peak magnitude of [Cl-]i reached 55.3 +/- 2.5 mM from 18.7 +/- 3.5 mM, whereas membrane potentials (Vm) depolarized from -82.5 +/- 1.1 to -54.7 +/- 2.4 mV (n = 6 muscles from 6 animals). SITS (0.5 mM), a known blocker of the Cl-/HCO-3 exchanger, suppressed the ischemia-induced depolarization of Vm and delayed the onset of the ischemia-induced increase in [Cl-]i but did not suppress the magnitude of the increase of [Cl-]i. Under Cl--free conditions created by replacing Cl- with equimolar gluconate, the increase in [Cl-]i during ischemia was transient and suppressed by >60% compared with that in normal-Cl- conditions (peak value was 20. 3 +/- 1.7 mM, n = 6 muscles from 6 animals). The present results provide direct evidence that [Cl-]i in ventricular muscle increases in ischemic conditions in quiescent guinea pig ventricular muscle, suggesting that activation of the Cl-/HCO-3 exchanger by ischemia would partially contribute to the elevation of [Cl-]i during the initial stage of ischemia.
机译:我们使用离子选择性微电极技术研究了模拟缺血对离体豚鼠心室乳头肌细胞内Cl活性([Cl-] i)的影响。如前所述,通过停止灌注流并将制剂浸入矿物油中来产生心室肌的模拟缺血[B. Vanheel,L。Leybaert,A。De Hemptinne和I. Leusen。上午。 J.生理学。 257(Cell Physiol.26):C365-C379,1989;和黎Z F.刘J.西K.日本。 J.Pharmacol。 72:161-174,1996]。将制剂暴露于石蜡油中15分钟后,[Cl-] i显着增加,[Cl-] i的峰值从18.7 +/- 3.5 mM达到55.3 +/- 2.5 mM,而膜电位(Vm)去极化从-82.5 +/- 1.1到-54.7 +/- 2.4 mV(n =来自6只动物的6条肌肉)。 SITS(0.5 mM)是一种已知的Cl- / HCO-3交换剂阻滞剂,抑制了缺血诱导的Vm去极化并延迟了缺血诱导的[Cl-] i升高的发生,但并未抑制[Cl-] i的增加。在用等摩尔葡萄糖酸代替Cl-产生的无Cl-条件下,缺血期间[Cl-] i的增加是短暂的,与正常Cl-条件下(峰值为20)相比,抑制了> 60%。 -1.7 mM,n =来自6只动物的6条肌肉)。本研究结果提供直接证据,表明静息豚鼠心室肌​​缺血状态下心室肌中的[Cl-] i升高,表明缺血引起的Cl- / HCO-3交换子的激活将部分促进[Cl-] i的升高。 ] i在缺血初期。

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