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巨噬细胞蛋白酶与风湿性疾病:胸腺衍生淋巴细胞对纤溶酶原激活物的调节

Macrophage proteases and rheumatic diseases: regulation of plasminogen activator by thymus-derived lymphocytes.

作者信息

Gordon S, Newman W, Bloom B

出版信息

Agents Actions. 1978 Jan;8(1-2):19-26. doi: 10.1007/BF01972397.

Abstract

Macrophages in culture secrete a variety of products including neutral protease activities such as plasminogen activator(s) (P.A.), collagenase and elastase. These products are not made by unstimulated macrophages, but only after induction by inflammatory stimuli, phagocytosis and lymphokines. Phagocytosis induces the prompt release of high levels of P.A. by endotoxin-primed macrophages and prolonged secretion follows uptake of non-degradable particles. Stimulation of lymphocytes results in the release of a supernatant product which enhances P.A. secretion by unstimulated mouse macrophages up to 5-fold. The production of the P.A. inducer (P.A.I.) is immunologically specific and is found in allogeneic mixed leukocyte culture (MLC) reactions, but not in syngeneic controls. The P.A. is also induced in activated macrophages from animals infected with BCG of T. cruzi and challenged with specific antigen. Production of the P.A.I. in MLC reactions depends on the presence of thymus-derived (T) lymphocytes and is closely correlated with the appearance of macrophage migration inhibition factor (MIF). The induction of macrophage P.A. and other proteases provides an important pathway for activating macrophages in delayed hypersensitivity reactions and could contribute significantly to tissue destruction in chronic inflammatory diseases in joints.

摘要

培养中的巨噬细胞分泌多种产物,包括纤溶酶原激活物(P.A.)、胶原酶和弹性蛋白酶等中性蛋白酶活性物质。这些产物并非由未受刺激的巨噬细胞产生,而是在受到炎性刺激、吞噬作用和淋巴因子诱导后才会产生。吞噬作用可促使经内毒素预处理的巨噬细胞迅速释放高水平的P.A.,摄取不可降解颗粒后会出现持续分泌。淋巴细胞受到刺激会导致上清液产物的释放,该产物可使未受刺激的小鼠巨噬细胞的P.A.分泌增加高达5倍。P.A.诱导物(P.A.I.)的产生具有免疫特异性,见于同种异体混合淋巴细胞培养(MLC)反应中,而在同基因对照中则未发现。感染卡介苗或克氏锥虫并受到特异性抗原攻击的动物的活化巨噬细胞中也可诱导产生P.A.。MLC反应中P.A.I.的产生取决于胸腺来源(T)淋巴细胞的存在,并且与巨噬细胞移动抑制因子(MIF)的出现密切相关。巨噬细胞P.A.和其他蛋白酶的诱导为迟发型超敏反应中激活巨噬细胞提供了一条重要途径,并且可能在关节慢性炎症性疾病的组织破坏中起重要作用。

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