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在电压钳超极化和去极化期间,心脏浦肯野纤维细胞外间隙中钾离子的耗竭与积累。

Depletion and accumulation of potassium in the extracellular clefts of cardiac Purkinje fibers during voltage clamp hyperpolarization and depolarization.

作者信息

Baumgarten C M, Isenberg G

出版信息

Pflugers Arch. 1977 Mar 11;368(1-2):19-31. doi: 10.1007/BF01063450.

Abstract
  1. Voltage clamp hyperpolarization and depolarization elicited current records consistent with depletion and accumulation, respectively, of potassium in the extracellular clefts of cardiac Purkinje fibers. Hyperpolarization was shown to shift the reversal potential for the pacemaker current, ik2, a measure of Ek, to more negative potentials. Upon depolarization, a slowly increasing outward current was observed. Analysis of the tail currents elicited by hyperpolarization revealed that a time-dependent change in gx could not explain the time-dependent outward current. However, the tail currents were consistent with a shift of Ek to more positive potentials during the depolarization. 2. Alteration in potassium driving force over time results in a time-dependent ik1 even though the underlying conductance is time-independent [29]. This time-dependent current may contribute to the currents usually identified as ik2 and ix. 3. The potential at which ik2 reverses direction is altered by the clamp program used to elicit it and is obscured by the superimposition of a time-dependent current due to depletion. 4. Records consistent with the extracellular cleft potassium concentration being less than that of the bulk phase in the quiescent fiber were obtained. However, an unequivocal interpretation of these current reocrds could not be made. 5. These results suggest that conclusions based on the assumption that potassium driving force remains constant during a voltage clamp pulse may be in error. Thus, time-dependent currents cannot be assumed to result solely from time-dependent conductance changes.
摘要
  1. 电压钳超极化和去极化分别引发了与心脏浦肯野纤维细胞外间隙中钾离子的耗尽和积累相一致的电流记录。超极化被证明会将起搏电流ik2(Ek的一种度量)的反转电位向更负的电位移动。去极化时,观察到外向电流缓慢增加。对超极化引发的尾电流分析表明,gx随时间的变化无法解释随时间变化的外向电流。然而,尾电流与去极化过程中Ek向更正电位的移动是一致的。2. 尽管基础电导与时间无关,但钾离子驱动力随时间的变化会导致随时间变化的ik1。这种随时间变化的电流可能对通常被认定为ik2和ix的电流有贡献。3. ik2反转方向时的电位会因用于引发它的钳制程序而改变,并且会被由于钾离子耗尽导致的随时间变化的电流叠加所掩盖。4. 获得了与静息纤维中细胞外间隙钾离子浓度低于本体相钾离子浓度相一致的记录。然而,对这些电流记录无法做出明确的解释。5. 这些结果表明,基于电压钳制脉冲期间钾离子驱动力保持恒定这一假设得出的结论可能是错误的。因此,不能假定随时间变化的电流 solely 是由随时间变化的电导变化引起的。

原文中“solely”拼写错误,应该是“solely” ,这里翻译为“仅仅,只” 。

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