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平滑肌自发节律性的起源。

Origin of spontaneous rhythmicity in smooth muscle.

作者信息

McHale Noel, Hollywood Mark, Sergeant Gerard, Thornbury Keith

机构信息

Smooth Muscle Research Centre, Dundalk Institute of Technology, Dublin Road, Dundalk, Co. Louth, Ireland.

出版信息

J Physiol. 2006 Jan 1;570(Pt 1):23-8. doi: 10.1113/jphysiol.2005.098376. Epub 2005 Oct 20.

Abstract

Rhythmic electrical activity is a feature of most smooth muscles but the mechanical consequences can vary from regular rapid phasic contractions to sustained contracture. For many years it was thought that spontaneous electrical activity originated in smooth muscle cells but recently it has become apparent that there are specialized pacemaker cells in many organs that are morphologically and functionally distinct from smooth muscle and that the former cells are the source of spontaneous electrical activity. Such a pacemaker function is well documented for the ICC of the gastrointestinal tract but evidence is accumulating that ICC-like cells play a similar role in other types of smooth muscle. We have recently shown that there are specialized pacemaking cells in the rabbit urethra which are spontaneously active when freshly isolated, readily distinguishable from smooth muscle cells under bright field illumination and relatively easy to study using patch-clamp and confocal imaging techniques. Recent results suggest that calcium oscillations in isolated rabbit urethral interstitial cells are initiated by calcium release from ryanodine sensitive intracellular stores, that oscillation frequency is very sensitive to the external calcium concentration and that conversion of the primary oscillation to a propagated calcium wave depends upon IP3-induced calcium release.

摘要

节律性电活动是大多数平滑肌的一个特征,但机械效应可能从规则的快速相性收缩到持续性挛缩不等。多年来,人们一直认为自发电活动起源于平滑肌细胞,但最近已变得明显的是,许多器官中存在形态和功能上与平滑肌不同的特化起搏细胞,并且前者细胞是自发电活动的来源。胃肠道的肠间质细胞(ICC)的这种起搏功能已有充分记录,但越来越多的证据表明,ICC样细胞在其他类型的平滑肌中发挥类似作用。我们最近发现,兔尿道中存在特化的起搏细胞,这些细胞在刚分离时就具有自发活性,在明场照明下很容易与平滑肌细胞区分开来,并且使用膜片钳和共聚焦成像技术相对容易研究。最近的结果表明,分离的兔尿道间质细胞中的钙振荡由对兰尼碱敏感的细胞内钙库释放钙引发,振荡频率对细胞外钙浓度非常敏感,并且初级振荡向传播性钙波的转换取决于三磷酸肌醇(IP3)诱导的钙释放。

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