Changes in cytosolic calcium monitored by inward currents during action potentials in guinea-pig ventricular cells.

D A Terrar, E White
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引用次数: 24

Abstract

Action potentials were recorded from single cells isolated from guinea-pig ventricular muscle. Contraction was measured with an optical technique. Tail currents thought to be activated by cytosolic calcium were recorded when action potentials were interrupted by application of a voltage-clamp. A family of tail currents was recorded by interrupting the action potential at various times after the upstroke. The envelope of tail current amplitudes was taken as an index of changes in cytosolic calcium. Consistent with this interpretation, tail currents were negligible following intracellular loading with the calcium chelator BAPTA to suppress calcium transients. The cytosolic calcium transient estimated from the envelope of tails reached a peak approximately 50 ms after the upstroke of the action potential, and fell close to diastolic levels before repolarization was complete; 10 mM caffeine delayed the time to peak contraction, and caused a prolongation of the cytosolic calcium transient estimated from the envelope of tail currents. Caffeine also induced the appearance of a distinct late plateau phase of the action potential. Intracellular BAPTA suppressed the late plateau, contraction and tail currents in cells exposed to caffeine. Exposure to caffeine increased the time constant for decay of tail currents (from approximately 25 to 70 ms). When action potentials were greatly abbreviated by interruption with a voltage-clamp, a progressive decline occurred in the subsequent three contractions and tail currents. There was a progressive reversal of these effects over four responses when the full action potential duration was restored. None of these effects was observed in cells exposed to caffeine. Calcium-activated tail currents appear to be a useful qualitative index of changes in cytosolic calcium. The observations are consistent with the suggestion that cytosolic calcium is reduced during the plateau by a combination of calcium extrusion through Na-Ca exchange and calcium uptake into caffeine-sensitive stores. It also appears that reduction of stores loading during abbreviated action potentials reduces subsequent contraction in cells not exposed to caffeine.

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豚鼠心室细胞动作电位期间内向电流监测胞质钙的变化。
从豚鼠心室肌分离的单细胞记录动作电位。用光学技术测量收缩。当动作电位被施加电压钳打断时,记录了被认为是由细胞质钙激活的尾电流。通过在上冲程后不同时间中断动作电位,记录了一系列尾电流。以尾电流幅值包络线作为胞质钙变化的指标。与这一解释一致,在细胞内加载钙螯合剂BAPTA抑制钙瞬态后,尾电流可以忽略不计。尾巴包膜测得的胞质钙瞬态在动作电位上升约50 ms后达到峰值,在复极化完成前降至舒张期水平附近;10mm的咖啡因延迟了收缩峰值的时间,并延长了从尾电流包络估计的胞质钙瞬态。咖啡因还诱导动作电位出现明显的晚平台期。细胞内BAPTA抑制了暴露于咖啡因的细胞的晚平台期、收缩和尾电流。咖啡因增加了尾电流衰减的时间常数(从大约25毫秒增加到70毫秒)。当动作电位因电压钳中断而大大缩短时,随后的三次收缩和尾电流逐渐下降。当完全动作电位持续时间恢复后,这些效应在四次反应中逐渐逆转。在接触咖啡因的细胞中没有观察到这些影响。钙激活尾电流似乎是胞质钙变化的一个有用的定性指标。这些观察结果与细胞质钙在高原期间通过Na-Ca交换和钙摄取到咖啡因敏感储存的钙挤压而减少的建议一致。在动作电位缩短期间储存负荷的减少似乎也减少了未暴露于咖啡因的细胞随后的收缩。
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Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character 生命科学, 发育生物学与生殖生物学, 发育生物学
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