膀胱壁对细菌渗透的反应:抵抗附着、脱屑和白细胞活性。

S Orikasa, F Hinman
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引用次数: 0

摘要

为了确定膀胱壁对防御感染的贡献,我们设计了一系列实验,其中通过放射自显影技术观察引入细菌的运动和炎症过程(膀胱炎)。膀胱粘膜表面作为第一道防线,对细菌的附着和渗透表现出很强的抵抗力。此外,被细菌抓住并穿透的上皮细胞被脱皮并通过排尿消除,从而阻止了对膀胱壁的更深侵入。当生物确实穿透膀胱壁时,它们被粘膜下层和肌肉层的多形核白细胞和巨噬细胞吞噬。相反,一旦白细胞迁移到膀胱内的尿液中,它们就不再参与吞噬作用。生物体也进入静脉、淋巴管或两者兼而有之,并通过网状内皮系统的作用迅速从局部消失。这些观察结果表明,除了对细菌附着的机械排空抵抗外,入侵细胞的脱皮,白细胞和巨噬细胞的活性以及局部细菌的消失是膀胱抵抗和对抗感染的4种机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reaction of the vesical wall to bacterial penetration: resistance to attachment, desquamation and leukocytic activity.

To determine the contribution of the bladder wall to defense against infection we designed a series of experiments wherein movement of introduced bacteria and inflammatory processes (cystitis) were observed by an autoradiographic technique. As a first defense line the bladder mucosal surface showed strong resistance against bacterial attachment and penetration. Moreover, epithelial cells gripped and penetrated by bacteria were desquamated and eliminated through voiding, thus arresting deeper invasion into the bladder wall. When organisms did penetrate the bladder wall they were phagocytized by polymorphonuclear leukocytes and macrophages in the submucosa and muscularis. In contrast, once leukocytes had migrated into the urine within the bladder they no longer participated in phagocytosis. Organisms also entered the veins, the lymphatics or both and disappeared rapidly from the local site through the action of the reticuloendothelial system. These observations indicate that in addition to mechanical emptying resistance to bacterial attachment, desquamation of invaded cells, activity of leukocytes and macrophages, and disappearance of bacteria from local site are 4 mechanisms whereby the bladder resists and fights infection.

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