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首页> 外文期刊>Acta histochemica et cytochemica >Interstitial cells of Cajal are involved in neurotransmission in the gastrointestinal tract
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Interstitial cells of Cajal are involved in neurotransmission in the gastrointestinal tract

机译:卡哈尔间质细胞参与胃肠道神经传递

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Interstitial cells of Cajal (ICC) are important cells which coordinate gastrointestinal motility. ICC express Kit receptor tyrosine kinase, and Kit immunohistochemistry reveals ICC morphology and distribution in the gastrointestinal musculature. ICC show a highly branched morphology and form unique networks. Myenteric ICC (ICC-MY) are located at the layer of the myenteric plexus and serve as electrical pacemakers. Intramuscular ICC (ICC-IM) and ICC in the deep muscular plexus (ICC-DMP) are distributed within the muscular layers, and are densely innervated by excitatory and inhibitory enteric motor neurons and in close contact with nerve terminals. Recent studies combined with morphological and functional techniques directly revealed that ICC-IM and ICC-DMP are mediators of enteric motor neurotransmission. These types of ICC express several receptors for neurotransmitters such as acetylcholine and substance P and show responses to excitatory nerve stimulations. ICC also express receptive mechanisms for nitric oxide, which is an inhibitory neurotransmitter in the gastrointestinal tract. They can respond to nitrergic nerve stimulation by cyclic GMP production. Kit mutant mice lack ICC-IM and show attenuated postsynaptic responses after intrinsic nerve stimulation. These findings indicate the importance for ICC in neurotransmission in the gastrointestinal tract. 2006 The Japan Society of Histochemistry and Cytochemistry.
机译:卡哈尔间质细胞(ICC)是重要的细胞,可协调胃肠蠕动。 ICC表达Kit受体酪氨酸激酶,并且Kit免疫组织化学揭示了ICC的形态和分布在胃肠道肌肉组织中。 ICC表现出高度分支的形态,并形成独特的网络。 Myenteric ICC(ICC-MY)位于肌层神经丛的一层,用作起搏器。肌内ICC(ICC-IM)和深层肌丛中的ICC(ICC-DMP)分布在肌肉层内,并由兴奋性和抑制性肠运动神经元密集地支配,并与神经末梢紧密接触。结合形态学和功能技术的最新研究直接表明,ICC-IM和ICC-DMP是肠道运动神经传递的介质。这些类型的ICC表达神经递质(例如乙酰胆碱和P物质)的几种受体,并显示出对兴奋性神经刺激的反应。 ICC还表达了对一氧化氮的接受机制,一氧化氮是胃肠道中的一种抑制性神经递质。它们可以通过循环产生GMP来响应硝化神经刺激。试剂盒突变小鼠缺乏ICC-IM,内在神经刺激后突触后反应减弱。这些发现表明ICC在胃肠道神经传递中的重要性。 2006年日本组织化学与细胞化学学会。

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