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只有阳离子免疫复合物与肾小球阴离子位点的初始结合是由电荷-电荷相互作用介导的。

Only the initial binding of cationic immune complexes to glomerular anionic sites is mediated by charge-charge interactions.

作者信息

Gauthier V J, Mannik M

出版信息

J Immunol. 1986 May 1;136(9):3266-71.

PMID:3958495
Abstract

The role of charge-charge interactions between cationic immune complexes and the anionic sites on the glomerular basement membrane was examined. For this purpose, soluble immune complexes at fivefold antigen excess were prepared with human serum albumin and cationized rabbit antibodies to this protein. When unrelated cationic proteins, protamine sulfate or cationized rabbit serum albumin, were given 1 min before the cationized immune complexes, glomerular immune deposits did not form. Cationic immune complexes allowed to deposit in glomeruli could readily be displaced by protamine sulfate or cationized rabbit serum albumin injected 1 min after the immune complexes. If the same cationic molecules were injected 1 hr after the immune complexes, the complexes could not be displaced from glomeruli. In contrast, cationic complexes that were deposited in glomeruli in the presence of a very high degree of antigen excess in circulation to prevent their condensation into larger complexes in glomeruli were readily displaced at 1 min and 1 hr with protamine sulfate or with cationized rabbit serum albumin. On the basis of these results, we concluded that the initial binding of cationic immune complexes to glomeruli occurs by charge-charge interactions. Once the immune complexes in glomeruli condense to larger deposits, forces other than charge-charge interactions are responsible for their retention in glomeruli.

摘要

研究了阳离子免疫复合物与肾小球基底膜上阴离子位点之间的电荷-电荷相互作用的作用。为此,用人血清白蛋白和针对该蛋白的阳离子化兔抗体制备了抗原过量五倍的可溶性免疫复合物。当在阳离子化免疫复合物之前1分钟给予无关的阳离子蛋白、硫酸鱼精蛋白或阳离子化兔血清白蛋白时,肾小球免疫沉积物未形成。允许沉积在肾小球中的阳离子免疫复合物在免疫复合物后1分钟注射硫酸鱼精蛋白或阳离子化兔血清白蛋白后很容易被置换。如果在免疫复合物后1小时注射相同的阳离子分子,则复合物不能从肾小球中被置换。相反,在循环中存在非常高程度的抗原过量以防止它们在肾小球中凝聚成更大复合物的情况下沉积在肾小球中的阳离子复合物在1分钟和1小时时很容易被硫酸鱼精蛋白或阳离子化兔血清白蛋白置换。基于这些结果,我们得出结论,阳离子免疫复合物与肾小球的初始结合是通过电荷-电荷相互作用发生的。一旦肾小球中的免疫复合物凝聚成更大的沉积物,除电荷-电荷相互作用之外的其他力负责它们在肾小球中的滞留。

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