[乙酰胆碱作用下兔右心房窦房结细胞及其他舒张去极化细胞局部非兴奋性的发展]。

T M Vinogradova, T N Iuzniuk, A V Zaĭtsev, L V Rozenshtraukh
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引用次数: 0

摘要

窦结呈非均匀结构。在完整的窦结中,乙酰胆碱诱导起搏器从窦结中心移位,提示典型的起搏器细胞对乙酰胆碱的敏感性较高。本研究的目的是比较乙酰胆碱(10(-5),10(-4)M)对腔间区和窦结不同类型细胞的作用。兔右心房,窦结区完整,钉在组织浴中。在窦房结处穿刺1 ~ 2个微电极,同时获得心房电图。在乙酰胆碱的灌注过程中,虽然制剂保持了正常的节律,但一些舒张去极化的细胞变得不可兴奋,其振幅降至控制值的30%以下,而其他细胞则没有。起搏器细胞(上冲程速度< 5 V/s;从舒张期去极化平稳过渡到上冲程)发生的不兴奋性最高:40个细胞中有36个(90%)。随着上冲程速度的增加,不可兴奋性的发生减少。乙酰胆碱的作用是完全可逆的,可通过阿托品10(-7)m预处理阻断。这可能表明,典型的起搏器细胞对乙酰胆碱的特殊敏感性可能源于两个事实:1。在典型的起搏器细胞中,钙电流在动作电位上升中起主要作用;2. 窦结细胞内的钙电流对乙酰胆碱特别敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The development of local nonexcitability in sinus node cells and other cells with diastolic depolarization in the right atrium of the rabbit under the action of acetylcholine].

The sinus node is heterogeneous structure. In the intact sinus node acetylcholine induced shift of pacemaker from the center of sinus node suggesting higher sensitivity of typical pacemaker cells to acetylcholine. The aim of this study was to compare the acetylcholine (10(-5), 10(-4) M) action on different cell types in the intercaval region as well as in the sinus node. The rabbit right atrium, with the sinus node region intact, was pinned in a tissue bath. One or two microelectrodes were impaled in the sinus node and atrial electrogram was obtained simultaneously. During superfusion with acetylcholine though the preparations retained regular rhythm some of the cells with diastolic depolarization became inexcitable, their amplitude fell below 30% of the control value while others did not. In pacemaker cells (upstroke velocity < 5 V/s; smooth transition from diastolic depolarization into upstroke) occurrence of inexcitability was the highest: 36 of 40 cells (90%). With increasing upstroke velocity, the occurrence of inexcitability decreased. Effects of acetylcholine were completely reversible and were blocked by pretreatment with atropine 10(-7) M. It may be suggested that particular sensitivity of typical pacemaker cells to acetylcholine could arise from two facts: 1. In typical pacemaker cells calcium current plays the main role in action potential upstroke; 2. The calcium current in the sinus node cells is particular sensitive to acetylcholine.

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