首页> 外文期刊>American Journal of Physiology >Physiology and pathophysiology of the interstitial cell of Cajal: from bench to bedside. I. Functional development and plasticity of interstitial cells of Cajal networks.
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Physiology and pathophysiology of the interstitial cell of Cajal: from bench to bedside. I. Functional development and plasticity of interstitial cells of Cajal networks.

机译:卡哈尔间质细胞的生理学和病理生理学:从长凳到床边。 I. Cajal网络间隙细胞的功能发展和可塑性。

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摘要

Interstitial cells of Cajal (ICC) are the pacemaker cells in gastrointestinal (GI) muscles. They also mediate or transduce inputs from enteric motor nerves to the smooth muscle syncytium. What is known about functional roles of ICC comes from developmental studies based on the discovery that ICC express c-kit. Functional development of ICC networks depends on signaling via the Kit receptor pathway. Immunohistochemical studies using Kit antibodies have expanded our knowledge about the ICC phenotype, the structure of ICC networks, the interactions of ICC with other cells within the tunica muscularis, and the loss of ICC in some motility disorders. Manipulating Kit signaling with reagents to block the receptor or downstream signaling pathways or by using mutant mice in which Kit or its ligand, stem cell factor, are defective has allowed novel studies of the development of these cells within the tunica muscularis and also allowed the study of specific functions of different classes of ICC in several regions of the GI tract. This article examines the role of ICC in GI motility, focusing on the functional development and maintenance of ICC networks in the GI tract and the phenotypic changes that can occur when the Kit signaling pathway is disrupted.
机译:Cajal间质细胞(ICC)是胃肠道(GI)肌肉中的起搏器细胞。它们还介导或转导来自肠运动神经的输入到平滑肌合胞体。关于ICC的功能作用的已知信息来自基于ICC表达c-kit的发现的开发研究。 ICC网络的功能发展取决于通过Kit受体途径的信号传导。使用Kit抗体的免疫组织化学研究扩大了我们对ICC表型,ICC网络的结构,ICC与肌膜内其他细胞的相互作用以及某些运动障碍中ICC丧失的了解。通过使用试剂来阻断试剂盒或下游信号通路的试剂盒试剂盒信号,或使用试剂盒或其配体,干细胞因子有缺陷的突变小鼠来操纵,可以对肌膜内这些细胞的发育进行新的研究,并且还可以进行该研究胃肠道几个区域中不同类别的ICC的特定功能本文研究了ICC在胃肠动力中的作用,重点研究了胃肠道中ICC网络的功能发展和维持以及Kit信号传导途径被破坏时可能发生的表型变化。

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