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荚膜多糖在肺炎球菌激活替代途径中的作用。

The role of the capsular polysaccharide in the activation of the alternative pathway by the pneumococcus.

作者信息

Winkelstein J A, Bocchini J A, Schiffman G

出版信息

J Immunol. 1976 Feb;116(2):367-70.

PMID:2634
Abstract

Previous studies have shown that when pneumococci are incubated in normal, nonimmune serum, they activate the alternative pathway and opsonically active C3b is fixed to the surface of the organism. Other studies have demonstrated that C3-dependent opsonization via the alternative pathway plays a significant role in the nonimmune host's defense against the pneumococcus. The present studies concern the role of the capsular polysaccharide in initiating the activation of the alternative pathway by the pneumococcus. Some pneumococcal capsular polysaccharide types, but not all, are able to activate the alternative pathway. Soluble purified capsular polysaccharide types 1, 4 and 25 activate the alternative pathway, whereas types 2, 3, 14, and 19 do not. Since the capsular polysaccharides exist in their native form attached to the pneumococcal surface, selected capsular polysaccharides were also tested for their ability to activate the alternative pathway when attached to a particulate carrier, sheep erythrocytes. Capsular polysaccharide types 2 and 3 failed to activate the alternative pathway when attached to sheep erythrocytes, paralleling the results obtained when these capsular polysaccharides were in solution. In contrast, the type 25 capsular polysaccharide not only activated the alternative pathway when attached to sheep erythrocytes, as it had when in solution, but it also initiated alternative pathway-mediated lysis of the erythrocytes. The capsular polysaccharide is not required for the activation of the alternative pathway by the pneumococcus. Although all types of encapsulated pneumococci are able to activate the alternative pathway, not all the purified capsular polysaccharide types are able to do so. In addition, a nonencapsulated pneumococcus, derived originally from a type 2 organism, activates the alternative pathway as well as a fully encapsulated type 2 pneumococcus.

摘要

以往研究表明,肺炎球菌在正常的非免疫血清中孵育时,会激活替代途径,且具有调理活性的C3b会固定在菌体表面。其他研究证明,通过替代途径的C3依赖性调理作用在非免疫宿主抵御肺炎球菌的防御中发挥重要作用。目前的研究关注荚膜多糖在启动肺炎球菌激活替代途径中的作用。部分肺炎球菌荚膜多糖类型(但并非全部)能够激活替代途径。可溶性纯化的1型、4型和25型荚膜多糖可激活替代途径,而2型、3型、14型和19型则不能。由于荚膜多糖以其天然形式附着在肺炎球菌表面,因此还测试了选定的荚膜多糖附着于颗粒载体绵羊红细胞时激活替代途径的能力。2型和3型荚膜多糖附着于绵羊红细胞时未能激活替代途径,这与这些荚膜多糖处于溶液状态时获得的结果一致。相比之下,25型荚膜多糖不仅附着于绵羊红细胞时像在溶液中一样激活替代途径,而且还引发了替代途径介导的红细胞裂解。肺炎球菌激活替代途径并不需要荚膜多糖。虽然所有类型的有荚膜肺炎球菌都能够激活替代途径,但并非所有纯化的荚膜多糖类型都能如此。此外,一种最初源自2型菌株的无荚膜肺炎球菌与完全有荚膜的2型肺炎球菌一样能激活替代途径。

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