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补体系统与天然及化学修饰内毒素的相互作用。

Interactions of the complement system with native and chemically modified endotoxins.

作者信息

Gewurz H, Mergenhagen S E, Nowotny A, Phillips J K

出版信息

J Bacteriol. 1968 Feb;95(2):397-405. doi: 10.1128/jb.95.2.397-405.1968.

Abstract

Endotoxic lipopolysaccharides (LPS) isolated from Serratia marcescens, Veillonella alcalescens, and Salmonella typhosa were potent in their ability to induce fixation of complement (C') in normal guinea pig, rabbit, mouse, and human serum. The C'-fixing ability of LPS was pronounced even when assays were performed in undiluted serum, and was lost after each of four chemical modifications which resulted in loss of biological toxicities. The detoxification procedures had in common the cleavage of ester-bound, long-chain carboxylic acids. The ability of biologically active LPS to fix C' in normal guinea pig serum was reflected chiefly in dramatic uptake of classical C'3 (C'3t); fixation of C'1, C'4, and C'2 was virtually undetectable. Hence, it was the capacity for fixation of C'3t which was lost most overtly during detoxification. Addition of immune serum to the assay mixtures resulted in detectable fixation of C'1 and C'4. Biologically active LPS also fixed more of these components than did detoxified LPS. Immune serum restored the ability of detoxified LPS to fix C'3t, but whether this is by the original pathway is not yet clear. We concluded that the loss of certain biological activities and the loss of ability to fix C'3t in normal serum after LPS detoxification involved loss or rearrangement of substrates on LPS which either initiated or supported, or both, its interaction with the complement system. It was apparent that the ability to fix C' can serve as a valuable in vitro indicator of the integrity of the toxic conformation of biologically active LPS membrane fragments. These experiments supported the hypothesis that certain of the biological activities induced by endotoxins are mediated via the complement system.

摘要

从粘质沙雷氏菌、产碱韦荣球菌和伤寒沙门氏菌中分离出的内毒素脂多糖(LPS)在诱导正常豚鼠、兔、小鼠和人血清中补体(C')固定方面具有很强的能力。即使在未稀释的血清中进行检测,LPS的C'固定能力也很显著,并且在导致生物毒性丧失的四种化学修饰中的每一种之后都会丧失。解毒程序的共同之处在于酯结合的长链羧酸的裂解。具有生物活性的LPS在正常豚鼠血清中固定C'的能力主要体现在经典C'3(C'3t)的显著摄取上;C'1、C'4和C'2的固定几乎检测不到。因此,在解毒过程中最明显丧失的是固定C'3t的能力。向检测混合物中添加免疫血清导致可检测到的C'1和C'4固定。具有生物活性的LPS也比解毒后的LPS固定更多这些成分。免疫血清恢复了解毒后LPS固定C'3t的能力,但这是否通过原始途径尚不清楚。我们得出结论,LPS解毒后某些生物活性的丧失以及在正常血清中固定C'3t的能力丧失涉及LPS上底物的丧失或重排,这些底物要么启动要么支持,或者两者都支持其与补体系统的相互作用。很明显,固定C'的能力可以作为生物活性LPS膜片段毒性构象完整性的有价值的体外指标。这些实验支持了内毒素诱导的某些生物活性是通过补体系统介导的这一假设。

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本文引用的文献

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The action of endotoxin on complement.内毒素对补体的作用。
Folia Microbiol (Praha). 1962 May;7:191-2. doi: 10.1007/BF02928241.
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