首页> 外文期刊>Neurogastroenterology and motility >Ionic conductances involved in generation and propagation of electrical slow waves in phasic gastrointestinal muscles.
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Ionic conductances involved in generation and propagation of electrical slow waves in phasic gastrointestinal muscles.

机译:离子电导与相位胃肠道肌肉中电慢波的产生和传播有关。

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摘要

Considerable work has led many to conclude that interstitial cells of Cajal (ICC) are the pacemaker cells of the gastrointestinal (GI) tract. These cells form electrically coupled networks within the pacemaker regions of the GI tract, and ICC are electrically coupled to smooth muscle cells. ICC express unique ion channels that periodically produce inward (pacemaker) currents. Recent work has suggested that the inward current is produced by a calcium (Ca2+)-regulated, nonselective cation conductance. Channels responsible for this conductance oscillate in open probability in response to the periodic drop in intracellular Ca2+ concentration during the slow wave cycle. Pacemaker activity generates slow waves that are propagated actively through ICC networks. Depolarization coordinates the pacemaker activity through the ICC network by activating a dihydropyridine-resistant Ca2+ conductance. Entry of small amounts of Ca2+ into ICC entrains spontaneous pacemaker activity and produces cell-to-cell propagation of slow waves. This review discusses the mechanisms and conductances involved in generation and propagation of electrical slow waves in ICC.
机译:大量工作已使许多人得出结论,认为Cajal间质细胞(ICC)是胃肠道(GI)的起搏器细胞。这些细胞在胃肠道的起搏器区域内形成电耦合的网络,而ICC电耦合到平滑肌细胞。 ICC表达独特的离子通道,这些离子通道会定期产生内向(起搏器)电流。最近的工作表明,内向电流是由钙(Ca2 +)调节的非选择性阳离子电导产生的。响应于慢波周期中细胞内Ca2 +浓度的周期性下降,负责此电导的通道以开概率振荡。起搏器活动产生的慢波会通过ICC网络主动传播。去极化通过激活抗二氢吡啶的Ca2 +电导来协调通过ICC网络的起搏器活动。少量Ca2 +进入ICC会自发起搏器活动并产生慢波在细胞间的传播。这篇综述讨论了ICC中电慢波的产生和传播所涉及的机制和电导。

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