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呼吸道分泌物中存在补体激活替代(备解素)途径成分的证据。

Evidence for the presence of components of the alternative (properdin) pathway of complement activation in respiratory secretions.

作者信息

Robertson J, Caldwell J R, Castle J R, Waldman R H

出版信息

J Immunol. 1976 Sep;117(3):900-3.

PMID:956659
Abstract

Activation of the alternative complement pathway by respiratory secretory IgA was demonstrated by incubating purified, aggregated preparations of serum and secretory IgA with neat human serum. No depletion of the early components (C1-4) was observed, but 63 and 70% of C3-9, respectively, were consumed. The C3-9-consuming capacity of heat-aggregated nasal secretions from an IgA-deficient volunteer was compared with heat-aggregated nasal secretions from a normal volunteer known to have secretory IgA. The deficient secretions consumed C3-9, whereas the IgA deficient secretions did not. Reconstitution of the nasal secretions from the IgA-deficient volunteer with purified secretory IgA produced alternative pathway activation. Factor B of the alternative complement pathway was found to be present in 16 of 18 bronchoalveolar lavage samples (BALF) from normal volunteers. Simultaneous measurement of lavage and serum albumin and Factor B concentrations rendered it unlikely that Factor B was merely a transudative product from serum in half the samples but rather suggested that it may be a component of lower respiratory tract secretions. The presence of an intact alternative complement pathway in BALF was indicated by showing that cobra venom factor and endotoxin cleaved functionally pure human C3 when mixed with BALF, but had no effect on C3 in the absence of BALF.

摘要

通过将纯化的、聚集的血清和分泌型IgA制剂与纯人类血清一起孵育,证实了呼吸道分泌型IgA对替代补体途径的激活作用。未观察到早期成分(C1 - 4)的消耗,但C3 - 9分别有63%和70%被消耗。将一名IgA缺乏志愿者的热聚集鼻分泌物与一名已知有分泌型IgA的正常志愿者的热聚集鼻分泌物的C3 - 9消耗能力进行了比较。缺乏IgA的分泌物消耗C3 - 9,而IgA缺乏的分泌物则不消耗。用纯化的分泌型IgA重建IgA缺乏志愿者的鼻分泌物可产生替代途径激活。在18名正常志愿者的支气管肺泡灌洗样本(BALF)中,有16个样本检测到替代补体途径的B因子。同时测量灌洗液和血清白蛋白以及B因子浓度表明,在一半的样本中,B因子不太可能仅仅是血清的渗出产物,而是提示它可能是下呼吸道分泌物的一个成分。当与BALF混合时,眼镜蛇毒因子和内毒素可裂解功能上纯的人C3,但在没有BALF时对C3没有影响,这表明BALF中存在完整的替代补体途径。

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