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从成年大鼠和豚鼠心室分离的细胞对中的动作电位传递。

Action potential transfer in cell pairs isolated from adult rat and guinea pig ventricles.

作者信息

Weingart R, Maurer P

机构信息

Department of Physiology, University of Berne, Switzerland.

出版信息

Circ Res. 1988 Jul;63(1):72-80. doi: 10.1161/01.res.63.1.72.

Abstract

An enzymatic procedure was used to obtain ventricular cells from adult rat and guinea pig hearts. Isolated pairs of cells were selected to study the action potential transfer from cell to cell and determine the resistance of the nexal membrane, rn. For this purpose, each cell of a cell pair was connected to a patch pipette so as to enable whole-cell, tight-seal recording. Normal impulse transmission was observed when rn ranged from 5-265 M omega. In these cases, the action potential in both cells occurred virtually simultaneously. An occasional failure in action potential transfer was seen in cell pairs whose rn had increased to 155-375 M omega. In these cases, the impulse transfer across the nexal membrane occurred with considerable delay. Impulse transfer was completely blocked once rn was larger than 780 M omega. Assuming a single connexon conductance of 100 pS, this would mean that more than 13 connexons are necessary to allow impulse transfer from cell to cell. Two single myocytes, gently pushed together, neither showed electrotonic interaction nor impulse transfer, thus rendering unlikely the possibility of an ephaptic signal transmission.

摘要

采用酶解法从成年大鼠和豚鼠心脏获取心室细胞。选择分离的细胞对来研究动作电位在细胞间的传递,并测定连接膜电阻rn。为此,将细胞对中的每个细胞连接到一个膜片吸管上,以便进行全细胞、紧密封接记录。当rn在5 - 265 MΩ范围内时,观察到正常的冲动传递。在这些情况下,两个细胞中的动作电位几乎同时出现。在rn增加到155 - 375 MΩ的细胞对中,偶尔会出现动作电位传递失败的情况。在这些情况下,跨连接膜的冲动传递会出现相当大的延迟。一旦rn大于780 MΩ,冲动传递就会完全受阻。假设单个连接子电导为100 pS,这意味着需要超过13个连接子才能实现细胞间的冲动传递。将两个单个心肌细胞轻轻推到一起,它们既不显示电紧张相互作用,也不显示冲动传递,因此不太可能存在ephaptic信号传递的可能性。

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