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大鼠心脏窦房结区域的机械敏感性成纤维细胞:与心肌细胞的相互作用及可能作用

Mechanosensitive fibroblasts in the sino-atrial node region of rat heart: interaction with cardiomyocytes and possible role.

作者信息

Kohl P, Kamkin A G, Kiseleva I S, Noble D

机构信息

University Laboratory of Physiology, Oxford.

出版信息

Exp Physiol. 1994 Nov;79(6):943-56. doi: 10.1113/expphysiol.1994.sp003819.

Abstract

The positive chronotropic response of the heart to stretch of the right atrium is one of the major mechanisms adjusting the heart rate to variations in venous return on a beat-by-beat basis. The precise pathway of this mechano-electric feedback and its cellular basis are uncertain. In this study, a possible contribution of mechanosensitive fibroblasts, abundant in the sino-atrial node region, was investigated using a mathematical model of the electrical interaction of a mechanosensitive fibroblast and a sino-atrial pacemaker cell. Electrophysiological evidence for a bio-electrical interaction of mechanosensitive fibroblasts with surrounding cardiomyocytes has been studied in (i) the isolated spontaneously beating atrium of rat hearts, and (ii) cell cultures of the neonatal rat heart. These investigations were performed using (i) double-barrelled floating microelectrodes for intracellular potential registrations, and (ii) the double whole cell patch-clamp technique. It was shown that cardiac fibroblasts and surrounding cardiomyocytes can be either electrically well isolated from each other, or coupled both capacitively and electrotonically. The electrophysiological data obtained were incorporated into the OXSOFT HEART program. Assuming that equivalent coupling may occur between mechanosensitive fibroblasts and sino-atrial pacemaker cells, a heterologous cell pair consisting of one fibroblast and one sino-atrial node myocyte connected by ten to thirty single gap junctional channels with a conductance of 30 pS was modelled. The model of the electrotonic interaction of these cells showed that stretch of the fibroblast during atrial diastole, simulating increased atrial wall tension during atrial filling, can raise the spontaneous depolarization rate of the pacemaker cell in a stretch-dependent manner by up to 24%. These results show that cardiac mechanosensitive fibroblasts could form a cellular basis for the positive chronotropic response of the heart to stretch of the right atrium.

摘要

心脏对右心房牵张的正性变时反应是逐搏调整心率以适应静脉回心血量变化的主要机制之一。这种机械电反馈的精确途径及其细胞基础尚不确定。在本研究中,利用机械敏感成纤维细胞与窦房结起搏细胞电相互作用的数学模型,研究了窦房结区域丰富的机械敏感成纤维细胞可能发挥的作用。在以下两种情况下研究了机械敏感成纤维细胞与周围心肌细胞生物电相互作用的电生理证据:(i)大鼠心脏离体自发搏动的心房;(ii)新生大鼠心脏的细胞培养物。这些研究分别使用了(i)用于细胞内电位记录的双管浮动微电极,以及(ii)双全细胞膜片钳技术。结果表明,心脏成纤维细胞与周围心肌细胞既可以在电方面很好地相互隔离,也可以通过电容和电紧张方式耦联。将获得的电生理数据纳入OXSOFT HEART程序。假设机械敏感成纤维细胞与窦房结起搏细胞之间可能发生等效耦联,构建了由一个成纤维细胞和一个窦房结心肌细胞组成的异源细胞对模型,二者通过10至30个电导为30 pS的单间隙连接通道相连。这些细胞电紧张相互作用的模型表明,在心房舒张期对成纤维细胞进行牵张,模拟心房充盈时心房壁张力增加,可使起搏细胞的自发去极化速率以牵张依赖的方式提高达24%。这些结果表明,心脏机械敏感成纤维细胞可能构成心脏对右心房牵张产生正性变时反应的细胞基础。

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