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哺乳动物结肠中氯离子分泌的调节

Regulation of chloride secretion in mammalian colon.

作者信息

Baird A W

机构信息

Department of Pharmacology, University College Dublin.

出版信息

Ir J Med Sci. 1994 Jun;163(6):277-81. doi: 10.1007/BF02942126.

Abstract

A number of procedures or interventions which activate electrogenic ion transport in mammalian intestine are reviewed. Using in vitro models it is possible to demonstrate direct or indirect pathways to stimulate chloride secretion. Such activation, in vivo, would change the gut from a state of net water absorption to one of fluid secretion. The movement of water is driven by electrical and osmotic gradients set up as a consequence of opening regulated ion channels in epithelial cells. Secretagogues may govern epithelial intracellular second messenger pathways to regulate ion channel activity directly or by activation of membrane bound receptors on the surface of epithelial cells. In health or disease secretagogues may be derived from cells within the attendant lamina propria of the intestinal mucosa. Pharmacological techniques may be employed to determine which mediators contribute to indirect stimulation of electrogenic ion transport by activation of neurons or of immunocytes (mast cells or phagocytes). Dissection and reconstruction of models of intestinal hypersensitivity reactions show that neuro-immune networks which regulate intestinal ion transport appear to be complex, functionally integrated systems. Analysis of such interactions may identify cellular or humoral targets with which to examine novel diagnostic, preventative or therapeutic strategies with regard to intestinal diseases.

摘要

本文综述了一些能激活哺乳动物肠道电生性离子转运的程序或干预措施。利用体外模型可以证明刺激氯离子分泌的直接或间接途径。在体内,这种激活会使肠道从净吸水状态转变为液体分泌状态。水的移动是由上皮细胞中调节性离子通道开放所形成的电和渗透梯度驱动的。促分泌剂可能通过控制上皮细胞内的第二信使途径,直接或通过激活上皮细胞表面的膜结合受体来调节离子通道活性。在健康或疾病状态下,促分泌剂可能来源于肠道黏膜固有层中的细胞。药理学技术可用于确定哪些介质通过激活神经元或免疫细胞(肥大细胞或吞噬细胞)间接刺激电生性离子转运。肠道超敏反应模型的剖析和重建表明,调节肠道离子转运的神经免疫网络似乎是复杂的、功能整合的系统。对这种相互作用的分析可能会确定细胞或体液靶点,以便研究针对肠道疾病的新型诊断、预防或治疗策略。

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