首页> 美国卫生研究院文献>Infection and Immunity >Activation of the classical and alternative pathways of complement by Treponema pallidum subsp. pallidum and Treponema vincentii.
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Activation of the classical and alternative pathways of complement by Treponema pallidum subsp. pallidum and Treponema vincentii.

机译:梅毒螺旋体亚种激活补体的经典途径和替代途径。苍白球和梅毒螺旋体。

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摘要

Both in vivo and in vitro studies have indicated that complement plays an important role in the syphilitic immune responses. Few quantitative data are available concerning activation of the classical pathway by Treponema pallidum subsp. pallidum, and no information is available on treponemal activation of the alternative pathway. Activation of both pathways was compared by using T. pallidum subsp. pallidum and the nonpathogen T. vincentii. With rabbit and human sources of complement, both organisms rapidly activated the classical pathway, as shown by hemolysis of sensitized sheep erythrocytes and by the generation of soluble C4a. With human sources of complement, both organisms also activated the alternative pathway, as shown by hemolysis of rabbit erythrocytes and by the generation of soluble C3a in the presence of magnesium ethylene glycol-bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid (EGTA). During incubation, organisms remained actively mobile and did not lyse, indicating that activation was a function of complement reactivity with the intact outer treponemal surface. In addition, freshly harvested T. pallidum subsp. pallidum immediately activated both pathways of complement; preincubation of organisms did not enhance complement reactivity. T. vincentii was a more potent activator of this pathway. T. pallidum subsp. pallidum contained almost four times as much surface sialic acid as T. vincentii did. When sialic acid was enzymatically removed from T. pallidum subsp. pallidum, enhanced activation of the alternative pathway was detected. It is proposed that T. pallidum subsp. pallidum retards complement-mediated damage by the alternative pathway through surface-associated sialic acid. This may be an important virulence determinant that enables these organisms to readily disseminate through the bloodstream to infect other tissues.
机译:体内和体外研究均表明补体在梅毒免疫反应中起重要作用。鲜有关于梅毒螺旋体亚种激活经典途径的定量数据。苍白球,并没有关于替代途径的耳蜗激活的信息。使用苍白锥虫亚种比较了两种途径的激活。苍白球和非病原性T. vincentii。有了兔和人的补体来源,这两种生物便迅速激活了经典途径,如致敏的绵羊红细胞的溶血作用和可溶性C4a的产生所表明的。在人类补体来源下,两种生物体也激活了替代途径,如兔红细胞的溶血和在镁乙二醇-双(β-氨基乙基醚)-N,N,N'的存在下产生可溶性C3a所表明的。 ,N′-四乙酸(EGTA)。在孵育过程中,生物体仍保持活跃的活动状态,并且不会裂解,这表明激活是与完整的外链膜表面的补体反应性的函数。此外,新鲜收获的梅毒螺旋体亚种。苍白质立即激活补体的两条途径;生物体的预孵育没有增强补体反应性。 T. vincentii是该途径的更强激活剂。苍白锥虫亚种苍白球的表面唾液酸几乎是文森氏锥虫的四倍。用酶法从唾液丁酸亚种中除去唾液酸时。苍白球,检测到替代途径的增强激活。建议苍白锥虫亚种。苍白球通过与表面相关的唾液酸的替代途径来抑制补体介导的损伤。这可能是一个重要的毒力决定因素,它使这些生物能够轻松地通过血流传播,从而感染其他组织。

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