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双蔗糖间隙法中蛙心房小梁的电特性

Electrical characteristics of frog atrial trabeculae in the double sucrose gap.

作者信息

Connor J, Barr L, Jakobsson E

出版信息

Biophys J. 1975 Oct;15(10):1047-67. doi: 10.1016/S0006-3495(75)85882-6.

Abstract

The electrical behavior of small single frog atrial trabeculae in the double sucrose gap has been investigated. The currents injected during voltage clamp experiments did not behave as predicted from the assumption of spatial uniformity of the voltage across a Hodgkin-Huxley membrane. Much of the difference is due to the geometrical complexities of this tissue. Nonetheless, two transient inward currents have been identified, the faster of which is blocked by tetrodotoxin (TTX). The magnitude of the slower transient varies markedly between preparations but always increases in a given preparation with increase of external calcium. The fast transient current traces, at small to intermediate depolarizations, are often marred by the presence of notches and secondary peaks due most probably to the loss of space clamp conditions. In many preparations these could be removed by reducing the current magnitude through application of a partially-blocking dose of TTX. Conversely, in the preparations whose fast transient was fully blocked by TTX, notches and secondary peaks in the slow transient could by induced through increasing calcium concentration and thereby the slow current magnitude. Previously used techniques for the measurement of the reversal potential of the fast inward transient have been shown to be invalid. In so far as they can be measured, the reversal potentials of the fast and slow inward transient are in the same neighborhood, i.e. around 120 mV from rest. The true values may be quite a bit apart. The total charge flow in the capacitive transient was measured for different sized nodes and preparations. From these data and estimates of plasma membrane area per unit trabecular volume, specific membrane capacitances of around 3 muF/cm2 were calculated for small bundles. The apparent ion current densities on this basis are approximately 1/10 of those measured in axons. The capacitive current occurring in small bundles decayed as the sum of at least three exponential functions of time. On the basis of these data and the anomalously large stable node widths, we suggest a coaxial core model of the preparation with the inner elements in series with an additional large extracellular resistance.

摘要

研究了双蔗糖间隙中单个小青蛙心房小梁的电行为。电压钳实验中注入的电流与基于霍奇金 - 赫胥黎膜电压空间均匀性假设所预测的行为不同。这种差异很大程度上归因于该组织的几何复杂性。尽管如此,已识别出两种瞬时内向电流,其中较快的一种被河豚毒素(TTX)阻断。较慢的瞬时电流幅度在不同标本间变化显著,但在给定标本中总是随细胞外钙浓度增加而增大。在小到中等去极化时,快速瞬时电流迹线常因可能是空间钳制条件丧失导致的缺口和次级峰而受损。在许多标本中,通过应用部分阻断剂量的TTX降低电流幅度可消除这些现象。相反,在快速瞬时电流被TTX完全阻断的标本中,通过增加钙浓度从而增大慢电流幅度可诱发慢瞬时电流中的缺口和次级峰。先前用于测量快速内向瞬时电流反转电位的技术已被证明是无效的。就可测量的范围而言,快速和慢速内向瞬时电流的反转电位在同一附近区域,即相对于静息电位约为120 mV。真实值可能相差较大。测量了不同大小的节段和标本电容性瞬时电流中的总电荷流动。根据这些数据以及每单位小梁体积的质膜面积估计值,计算出小束的比膜电容约为3 μF/cm²。在此基础上,表观离子电流密度约为轴突中测量值的1/10。小束中出现的电容性电流以至少三个时间指数函数之和的形式衰减。基于这些数据以及异常大的稳定节段宽度,我们提出了该标本的同轴核心模型,其中内部元件与额外的大细胞外电阻串联。

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