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巨噬细胞对可溶性免疫复合物的处理:对循环中复合物选择性清除所涉及机制的评估。

Macrophage handling of soluble immune complexes: evaluation of mechanisms involved in the selective clearance of complexes from the circulation.

作者信息

Leslie R G

出版信息

Mol Immunol. 1985 May;22(5):513-9. doi: 10.1016/0161-5890(85)90174-9.

Abstract

The binding and release of soluble guinea pig IgG2-containing DNPBSA-anti-DNP complexes and antigen-free, covalently-linked anti-DNP IgG2 oligomers of similar size, by guinea pig peritoneal macrophages, has been examined in the absence and presence of monomeric IgG2, of unrelated antibody specificity, or the monovalent hapten, DNP lysine. Complex binding was found to differ from the binding of the oligomers in that it was about twice as efficient and was essentially irreversible even in the presence of an inhibitor of ingestion, cytochalasin B. On the other hand, quantitative complex release could be achieved, in the presence of the ingestion inhibitor, by including 1.5mM DNP lysine in the medium. Complex handling by macrophages at 37 degrees C was also examined in the presence of monomeric IgG2, at its serum concn, and in the absence and presence of cytochalasin B. Inhibiting ingestion did not impair the capacity of the macrophages to take up complexes under these conditions. On the basis of these findings and previous reports that complexes bound to a receptor-bearing membrane undergo additional antibody-antigen bond formation [Dower et al., Biochemistry 20, 6326-6334 (1981a) and Leslie, Protides biol. Fluids 29, 431-434 (1982)] it is proposed that complex aggregation at the phagocyte surface may constitute the critical irreversible event required for the selective clearance of complexes in vivo. Other biological implications of receptor-mediated complex aggregation are also discussed.

摘要

在不存在和存在单体IgG2(具有不相关抗体特异性)或单价半抗原DNP赖氨酸的情况下,研究了豚鼠腹膜巨噬细胞对含可溶性豚鼠IgG2的DNPBSA - 抗DNP复合物以及大小相似的无抗原、共价连接的抗DNP IgG2寡聚物的结合和释放。发现复合物的结合与寡聚物的结合不同,前者效率约为后者的两倍,并且即使在存在摄取抑制剂细胞松弛素B的情况下基本上也是不可逆的。另一方面,在存在摄取抑制剂的情况下,通过在培养基中加入1.5mM DNP赖氨酸可以实现复合物的定量释放。还在存在单体IgG2(处于其血清浓度)以及不存在和存在细胞松弛素B的情况下,研究了巨噬细胞在37℃下对复合物的处理。在这些条件下,抑制摄取并不损害巨噬细胞摄取复合物的能力。基于这些发现以及先前的报道,即与带有受体的膜结合的复合物会发生额外的抗体 - 抗原键形成[Dower等人,《生物化学》20,6326 - 6334(1981a)以及Leslie,《蛋白质生物流体》29,431 - 434(1982)],有人提出吞噬细胞表面的复合物聚集可能构成体内复合物选择性清除所需的关键不可逆事件。还讨论了受体介导的复合物聚集的其他生物学意义。

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