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不溶性免疫复合物刺激的中性粒细胞白三烯B4生成依赖于FcγRII和FcγRIII,且不依赖百日咳毒素敏感的信号转导途径。

Insoluble immune complex-stimulated neutrophil leukotriene B4 production is dependent on Fc gamma RII and Fc gamma RIII and independent of pertussis toxin-sensitive signal transduction pathways.

作者信息

Crockett-Torabi E, Smith C W, Kateley J R, Patterson R, Tsai P, Fantone J C

机构信息

Department of Pathology, University of Michigan Medical School, Ann Arbor 48109-0602.

出版信息

Am J Pathol. 1992 Mar;140(3):613-20.

Abstract

Leukotriene B4 (LTB4) release initiated by interaction of immune complexes (ICs) with Fc gamma RII and Fc gamma RIII receptors on human neutrophils was studied using well-defined complexes. Immune complexes consisting of polyclonal rabbit antibody to human albumin were prepared at equivalence (insoluble complex) and at five times antigen excess (soluble complex). Incubation of human neutrophils with soluble and insoluble ICs led to the synthesis of LTB4 from endogenous arachidonic acid (AA). LTB4 release induced by ICs was markedly inhibited by monoclonal antibodies against either Fc gamma RII or Fc gamma RIII receptor. Treatment of neutrophils with pertussis toxin significantly inhibited the release of LTB4 induced by soluble ICs. However pertussis toxin treatment minimally inhibited the LTB4 release induced by insoluble ICs. Crosslinking of either Fc gamma RII and Fc gamma RIII receptors on neutrophil surfaces induced LTB4 release. This is the first experimental observation showing that both Fc gamma RII and Fc gamma RIII directly induce neutrophil LTB4 metabolism in the absence of exogenous AA. These studies also suggest the involvement of novel pertussis toxin insensitive signal transduction pathways in insoluble ICs stimulation of neutrophils.

摘要

利用明确的复合物,研究了免疫复合物(ICs)与人中性粒细胞上的FcγRII和FcγRIII受体相互作用引发的白三烯B4(LTB4)释放。制备了由针对人白蛋白的多克隆兔抗体组成的免疫复合物,分别处于等价状态(不溶性复合物)和抗原过量五倍的状态(可溶性复合物)。将人中性粒细胞与可溶性和不溶性ICs一起孵育,会导致内源性花生四烯酸(AA)合成LTB4。针对FcγRII或FcγRIII受体的单克隆抗体可显著抑制ICs诱导的LTB4释放。用百日咳毒素处理中性粒细胞可显著抑制可溶性ICs诱导的LTB4释放。然而,百日咳毒素处理对不溶性ICs诱导的LTB4释放的抑制作用极小。中性粒细胞表面的FcγRII和FcγRIII受体交联均可诱导LTB4释放。这是首次实验观察表明,在没有外源性AA的情况下,FcγRII和FcγRIII均可直接诱导中性粒细胞的LTB4代谢。这些研究还表明,新型百日咳毒素不敏感信号转导途径参与了不溶性ICs对中性粒细胞的刺激。

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Leukotriene B4, an inflammatory mediator in gout.白三烯B4,痛风中的一种炎症介质。
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