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ICC-MY 协调在小鼠小肠中的平滑肌电和机械活动。

ICC-MY coordinate smooth muscle electrical and mechanical activity in the murine small intestine.

机构信息

Department of Physiology and Cell Biology, University of Nevada School of Medicine, Reno, NV, USA.

出版信息

Neurogastroenterol Motil. 2010 May;22(5):e138-51. doi: 10.1111/j.1365-2982.2009.01448.x. Epub 2010 Jan 5.

Abstract

BACKGROUND

Animals carrying genetic mutations have provided powerful insights into the role of interstitial cells of Cajal (ICC) in motility. One classic model is the W/W(V) mouse which carries loss-of-function mutations in c-kit alleles, but retains minimal function of the tyrosine kinase. Previous studies have documented loss of slow waves and aberrant motility in the small intestine of W/W(V) mice where myenteric ICC (ICC-MY) are significantly depleted.

METHODS

Here, we used morphological and electrophysiological techniques to further assess the loss of ICC around the circumference of the small intestine and determine consequences of losing ICC-MY on electrical activity, Ca(2+) transients and contractions of the longitudinal muscle (LM).

KEY RESULTS

In wild-type mice, there was coherent propagation of Ca(2+) transients through the ICC-MY network and spread of this activity to the LM. In short segments of small intestine in vitro and in exteriorized segments, slow waves coordinated smoothly propagating Ca(2+) waves and contractions in the LM of wild-type mice. In W/W(V) mice, Ca(2+) waves were initiated at variable sites along and around intestinal segments and propagated without constraint unless they collided with other Ca(2+) waves. This activity resulted in abrupt, uncoordinated contractions.

CONCLUSIONS & INFERENCES: These results show how dominance of pacemaking by ICC-MY coordinates propagating con-tractions and regulates the spontaneous activity of smooth muscle.

摘要

背景

携带基因突变的动物为研究 Cajal 间质细胞(ICC)在运动中的作用提供了有力的线索。一个经典的模型是 W/W(V) 小鼠,它携带 c-kit 等位基因的功能丧失突变,但保留了酪氨酸激酶的最小功能。以前的研究已经记录了 W/W(V) 小鼠小肠中慢波和异常运动的丧失,其中肌间 ICC(ICC-MY)明显耗竭。

方法

在这里,我们使用形态学和电生理技术进一步评估了小肠周围 ICC 的丧失,并确定了 ICC-MY 丧失对电活动、Ca(2+)瞬变和纵行肌(LM)收缩的影响。

主要结果

在野生型小鼠中,Ca(2+)瞬变通过 ICC-MY 网络协调传播,并将这种活动传播到 LM。在体外的短段小肠和体外化的小肠段中,慢波协调平滑地传播 Ca(2+)波和 LM 中的收缩。在 W/W(V) 小鼠中,Ca(2+)波在肠段的各个部位以不同的部位起始,并在不受约束的情况下传播,除非它们与其他 Ca(2+)波碰撞。这种活动导致突然的、不协调的收缩。

结论和推断

这些结果表明,ICC-MY 的起搏主导作用如何协调传播收缩并调节平滑肌的自发活动。

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