新型隐球菌胶囊激活补体系统。

Current topics in medical mycology Pub Date : 1993-01-01
T R Kozel
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引用次数: 0

摘要

体外研究表明,包膜隐球菌是迄今为止报道的补体系统中最强大的颗粒激活剂之一。胶囊本身就是激活发生的地方。激活仅通过替代补体途径发生。起始发生在包膜内明显随机的病灶位置,通过其他途径扩增使包膜充满C3片段。C3片段迅速转化为iC3b,表明iC3b的吞噬细胞受体在酵母的吞噬作用中起重要作用。有大量证据表明,在隐球菌感染期间,体内发生了类似形式的激活。人类和实验动物的隐球菌血症伴随着血清补体水平的降低。对补体缺乏的豚鼠和小鼠的研究表明,补体系统在对隐球菌病的抗性中起重要作用。很可能补体系统通过调节酵母菌,促进吞噬细胞的附着和摄入,以及释放补体级联的趋化片段,促进炎症反应,从而促进宿主抵抗。中枢神经系统中功能性补体系统的缺失或不可用可能部分解释了酵母偏爱大脑的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Activation of the complement system by the capsule of Cryptococcus neoformans.

In vitro studies indicate that encapsulated cryptococci are among the most powerful particulate activators of the complement system reported to date. The capsule itself is the site at which activation occurs. Activation occurs solely via the alternative complement pathway. Initiation occurs at apparently random focal sites in the capsule that expand through alternative pathway amplification to fill the capsule with C3 fragments. The C3 fragments are rapidly converted to iC3b, suggesting that phagocyte receptors for iC3b will be important in phagocytosis of the yeast. There is abundant evidence that a similar form of activation occurs in vivo during a cryptococcal infection. Cryptococcemia in humans and experimental animals is accompanied by a depletion of serum complement levels. Studies with complement deficient guinea pigs and mice indicate that the complement system plays an essential role in resistance to cryptococcosis. It is likely that the complement system contributes to host resistance by opsonization of the yeast to facilitate attachment and ingestion by phagocytic cells as well as by releasing chemotactic fragments of the complement cascade which contribute to the inflammatory response. The absence or unavailability of a functional complement system in the central nervous system may account in part for the predilection of the yeast for the brain.

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