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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Functional impairment of cardiac transient outward K+ current as a result of abnormally altered cellular environment.
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Functional impairment of cardiac transient outward K+ current as a result of abnormally altered cellular environment.

机译:由于细胞环境异常改变,导致心脏短暂性外向K +电流的功能受损。

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1. Physiological functions of cardiac cells require a normal cellular environment. Under pathological conditions, there is a loss of normal cellular environment due to metabolic perturbations and other abnormalities. To test the hypothesis that cellular environmental stresses can create an electrophysiological substrate for electrical disorders in the heart, we investigated the effects of hypoxia, acidosis and ischaemia on transient outward K+ current (I(to)) in single canine ventricular myocytes. 2. The I(to) was studied because it plays a critical role in initiating cardiac repolarization and, thereby, arrhythmias. It was found that I(to) was significantly depressed by some 30% under hypoxic conditions relative to that in a normal cellular environment with normal Tyrode's solution. 3. Acidosis created by lowering the pH of the external solution from 7.4 to 7.2 produced a substantial (approximately 35%) reduction of the I(to) amplitude. 4. A marked impairment of I(to) function was consistently observed in ischaemic hearts in the canine coronary artery ligation model, with an approximate 30% decrease in the size of I(to). 5. Importantly, the impairment of I(to) under these environmental stresses was largely reversible following restoration to normal conditions. 6. The results of the present study suggest that I(to) is susceptible to changes in the cellular environment and the functional impairment of I(to) under environmental stresses contributes to arrhythmias under relevant pathological conditions of the heart.
机译:1.心脏细胞的生理功能需要正常的细胞环境。在病理条件下,由于代谢扰动和其他异常而导致正常细胞环境的丧失。为了检验细胞环境压力可以为心脏电障碍创建电生理底物的假设,我们研究了缺氧,酸中毒和局部缺血对单个犬心室肌细胞瞬时外向K +电流(I(to))的影响。 2.研究了I(to),因为它在启动心脏复极化和心律不齐中起关键作用。已经发现,在低氧条件下,相对于在正常细胞环境中使用常规泰洛德溶液的情况下,I(to)显着降低了约30%。 3.通过将外部溶液的pH值从7.4降低到7.2而产生的酸中毒会导致I(to)振幅大幅降低(约35%)。 4.在犬冠状动脉结扎模型的缺血性心脏中始终观察到I(to)功能明显受损,I(to)大小减少了约30%。 5.重要的是,恢复到正常状态后,在这些环境压力下I(to)的损害在很大程度上是可逆的。 6.本研究的结果表明,I(to)易受细胞环境变化的影响,在环境压力下I(to)的功能受损会导致心脏相关病理条件下的心律失常。

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