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慢性炎症性肠病中周围中性粒细胞吞噬人工免疫复合物过程中白三烯B4和5-羟基二十碳四烯酸的释放

Release of leukotriene B4 and 5-hydroxyeicosatetraenoic acid during phagocytosis of artificial immune complexes by peripheral neutrophils in chronic inflammatory bowel disease.

作者信息

Nielsen O H, Elmgreen J, Thomsen B S, Ahnfelt-Rønne I, Wiik A

出版信息

Clin Exp Immunol. 1986 Aug;65(2):465-71.

Abstract

The capacity of peripheral neutrophils for activation of the arachidonic acid (AA) metabolism was studied during phagocytosis of IgG containing immune complexes (ICs) binding to Fc-receptors. Release of approximately 9% of the intracellular pool of radiolabelled AA in phospholipids, and release of the pro-inflammatory mediators, leukotriene B4 (LTB4), constituting 1.8%, and 5-hydroxyeicosatetraenoic acid (5-HETE), constituting 2.9% of the total radioactivity released, were demonstrated in 15 patients with untreated Crohn's disease, 15 patients with ulcerative colitis, and in 15 healthy volunteers. The concentrations of LTB4 and 5-HETE released were within the range of chemotactic activity for the two lipoxygenase products. Multiple large IgG containing ICs were revealed in neutrophils after phagocytosis by immunofluorescence. A minor defect in the IC uptake in patients with Crohn's disease observed in the absence of complement only, did not result in a subnormal activation of arachidonic acid release or metabolism. The study suggests that complexes of the IgG-class previously demonstrated in chronic inflammatory bowel disease, particularly in Crohn's disease, may activate inflammatory neutrophils leading to release of significant amounts of the pro-inflammatory lipoxygenase metabolites, LTB4 and 5-HETE.

摘要

在吞噬结合Fc受体的含IgG免疫复合物(ICs)过程中,研究了外周中性粒细胞激活花生四烯酸(AA)代谢的能力。在15例未经治疗的克罗恩病患者、15例溃疡性结肠炎患者和15名健康志愿者中,均证实磷脂中约9%的放射性标记AA细胞内池释放,以及促炎介质白三烯B4(LTB4)释放,其占总释放放射性的1.8%,5-羟基二十碳四烯酸(5-HETE)释放,其占总释放放射性的2.9%。释放的LTB4和5-HETE浓度在这两种脂氧合酶产物的趋化活性范围内。吞噬后通过免疫荧光在中性粒细胞中发现多个含大量IgG的ICs。仅在无补体情况下观察到的克罗恩病患者IC摄取的轻微缺陷,并未导致花生四烯酸释放或代谢的异常激活。该研究表明,先前在慢性炎症性肠病尤其是克罗恩病中证实的IgG类复合物,可能激活炎性中性粒细胞,导致大量促炎脂氧合酶代谢产物LTB4和5-HETE释放。

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