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免疫复合物与巨噬细胞结合的潜在机制。

Mechanisms underlying binding of immune complexes to macrophages.

作者信息

Phillips-Quagliata J M, Levine B B, Quagliata F, Uhr J W

出版信息

J Exp Med. 1971 Mar 1;133(3):589-601. doi: 10.1084/jem.133.3.589.

Abstract

The mechanism of binding of immune complexes to macrophages was investigated using purified antibody and haptens of different valences. Antibody alone bound to macrophages; enhancement of binding occurred when polyvalent and divalent haptens were present at equivalence but did not occur in great antigen excess. Monovalent hapten did not increase the binding of antibody at any concentration ratio tried, though it inhibited the enhancement due to oligovalent hapten. Ultracentrifuged normal rabbit globulin also inhibited the binding of complexes indicating the presence of exposed binding sites on the uncomplexed molecules. Complexes bound more strongly than antibody alone as determined from elution studies. These results support the hypothesis that the enhancement of antibody binding to macrophages in the presence of antigen is due to increased energy of binding resulting from summation of individual binding sites already exposed on the antibody molecules. It was also possible, by saturating the macrophages with gamma globulin, to estimate the number of binding sites per cell; this was calculated to be approximately 2 million per alveolar macrophage.

摘要

利用纯化抗体和不同价态的半抗原,研究了免疫复合物与巨噬细胞的结合机制。单独的抗体可与巨噬细胞结合;当多价和二价半抗原处于等价状态时,结合增强,但在抗原大量过剩时则不会发生。在任何尝试的浓度比下,单价半抗原均不会增加抗体的结合,尽管它会抑制由于低聚半抗原导致的结合增强。超速离心的正常兔球蛋白也会抑制复合物的结合,这表明未复合分子上存在暴露的结合位点。从洗脱研究确定,复合物的结合比单独的抗体更强。这些结果支持了以下假设:在抗原存在的情况下,抗体与巨噬细胞结合的增强是由于抗体分子上已暴露的各个结合位点的总和导致结合能增加。通过用γ球蛋白使巨噬细胞饱和,也有可能估计每个细胞的结合位点数;计算得出每个肺泡巨噬细胞约有200万个结合位点。

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Immune complexes: biochemical and biological aspects.免疫复合物:生化与生物学方面
Indian J Pediatr. 1983 Sep-Oct;50(406):525-32. doi: 10.1007/BF02753293.

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