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在0摄氏度时由酵母聚糖和血清形成的备解素系统中间体。

A properdin system intermediate formed by zymosan and serum at 0 degrees C.

作者信息

Yukiyama Y, Lew F T, Waks H S, Osler A G

出版信息

J Immunol. 1976 Jan;116(1):188-93.

PMID:812914
Abstract

The interaction of guinea pig or rat serum with Z at 0 degrees C leads to the formation of properdin pathway intermediate, ZPI, whose activity is assessed by its capacity to deplete the titer of cobra venom inducible lysis in diluted rat serum. The formation of ZPI does not require C1 or C2 and is not diminished by prior absorption of the serum with Z. In contrast, removal of P suppresses ZPI formation. Both Ca++ and Mg++ are essential cofactors for the formation of this intermediate whose function is abrogated in the presence of anti-C3, anti-P, but not by anti-Factor B. Since C4-deficient guinea pig serum is also effective in ZPI formation, the data suggest that ZPI is an alternative pathway intermediate containing both P and C3.

摘要

豚鼠或大鼠血清在0℃下与Z相互作用会导致备解素途径中间体ZPI的形成,其活性通过其消耗稀释大鼠血清中眼镜蛇毒诱导裂解效价的能力来评估。ZPI的形成不需要C1或C2,并且血清预先用Z吸收不会使其减少。相反,去除P会抑制ZPI的形成。Ca++和Mg++都是形成该中间体的必需辅助因子,其功能在存在抗C3、抗P时会被废除,但抗因子B不会。由于C4缺陷的豚鼠血清在ZPI形成中也有效,数据表明ZPI是一种同时含有P和C3的替代途径中间体。

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