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首页> 外文期刊>Life sciences >CALCIUM DYNAMICS IN CULTURED HEART CELLS EXPOSED TO DEFIBRILLATOR-TYPE ELECTRIC SHOCKS
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CALCIUM DYNAMICS IN CULTURED HEART CELLS EXPOSED TO DEFIBRILLATOR-TYPE ELECTRIC SHOCKS

机译:暴露于去纤颤器型电击的培养心脏细胞中的钙动力学

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摘要

Spatial and temporal changes in intracellular calcium ion concentration and transmembrane voltage were recorded optically from single-isolated cultured chick-embryo heart cells exposed to high-voltage, defibrillator-type shocks. Fluorescence changes were measured during 5 msec electric shocks of field strengths up to 56 volts/cm in single myocytes stained with a Ca++-sensitive or voltage-sensitive dye. Shocks caused a reversible period of depolarization, elevated cytosolic Ca++, and refractoriness. Intracellular Ca++ elevation had two temporal phases: first, a Ca++ spike with morphology independent of shock intensity; and second, a prolonged Ca++ elevation with a shock-intensity-dependent magnitude and duration, and with greatest Ca++ elevation at the poles of the cell adjacent to the electrodes. The prolonged elevation (second phase) was initiated earlier at the anode-facing pole of the cell than at the cathode-facing pole. These results suggest that postshock Ca++ entry consists of two parts: early normal entry through excitation channels plus a prolonged elevation which may be related to cellular damage. [References: 23]
机译:从暴露于高电压,除颤器类型电击的单分离培养鸡胚心脏细胞中光学记录细胞内钙离子浓度和跨膜电压的时空变化。在用Ca ++敏感或电压敏感染料染色的单个心肌细胞中,在5毫秒的电场强度高达56伏/厘米的电击过程中测量了荧光变化。休克导致可逆的去极化期,胞浆Ca ++升高和难治性。细胞内Ca ++升高有两个时间阶段:第一,Ca ++峰的形态与冲击强度无关;第二,延长的Ca ++升高,其强度取决于冲击强度和持续时间,并且在与电极相邻的电池两极具有最大的Ca ++升高。延长的抬高时间(第二阶段)是在电池的面向阳极的极点比面向阴极的极点更早开始的。这些结果表明,震后Ca ++进入包括两个部分:通过刺激通道的早期正常进入,加上可能与细胞损伤有关的长时间升高。 [参考:23]

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