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豚鼠心室分离单细胞中的瞬时去极化和自发电压波动。钙介导的膜电位波动。

Transient depolarization and spontaneous voltage fluctuations in isolated single cells from guinea pig ventricles. Calcium-mediated membrane potential fluctuations.

作者信息

Matsuda H, Noma A, Kurachi Y, Irisawa H

出版信息

Circ Res. 1982 Aug;51(2):142-51. doi: 10.1161/01.res.51.2.142.

Abstract

Under the influence of cardiotonic steroids, single ventricular cells exhibit transient depolarization after a train of driven action potentials or, in voltage clamp experiments, transient inward current after a depolarizing clamp pulse. Transient depolarization or transient inward current was abolished by an intracellular injection of ethyleneglycol-bis (beta-aminoethyl ether)-N,N'-tetraacetic acid (EGTA) or by superfusion of 5 mM caffeine. Transient depolarization was elicited even in the control Tyrode's solution by an intracellular injection of CaCl2 or augmented by an injection of adenosine 3',5'-cyclic monophosphoric acid (cAMP). Along with transient depolarization or transient inward current, digitalis intoxication promoted spontaneous oscillatory fluctuations in membrane potential or in membrane current. Their power spectra showed peaks at frequencies ranging from 2 to 7 Hz, which coincided well with the frequency of repetitive transient depolarization or transient inward current. The fluctuations were eliminated by intracellular injections of EGTA and decreased in amplitude by 5 mM caffeine with a shift toward higher frequencies. Depolarization of the membrane caused a shift of the spectrum peak toward higher frequencies. These results suggest that an oscillatory release of Ca from intracellular storage sites is the common basis underlying both the transient events (depolarization or inward current) and the spontaneous miniature fluctuations in membrane potential or current.

摘要

在强心甾类药物的影响下,单个心室细胞在一串驱动动作电位后会出现短暂去极化,或者在电压钳实验中,在去极化钳制脉冲后会出现短暂内向电流。通过细胞内注射乙二醇双(β-氨基乙基醚)-N,N'-四乙酸(EGTA)或通过用5 mM咖啡因进行灌流,可消除短暂去极化或短暂内向电流。即使在对照台氏液中,通过细胞内注射氯化钙也可引发短暂去极化,或者通过注射3',5'-环磷酸腺苷(cAMP)增强短暂去极化。除了短暂去极化或短暂内向电流外,洋地黄中毒还会促进膜电位或膜电流的自发振荡波动。它们的功率谱在2至7 Hz的频率范围内出现峰值,这与重复性短暂去极化或短暂内向电流的频率非常吻合。通过细胞内注射EGTA可消除这些波动,用5 mM咖啡因可使振幅降低并使频率向更高频率偏移。膜去极化会使频谱峰值向更高频率偏移。这些结果表明,细胞内储存部位的Ca振荡释放是短暂事件(去极化或内向电流)以及膜电位或电流自发微小波动的共同基础。

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