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嗜酸性粒细胞过氧化物酶介导的白三烯B4、C4和D4失活。

Eosinophil peroxidase-mediated inactivation of leukotrienes B4, C4, and D4.

作者信息

Henderson W R, Jörg A, Klebanoff S J

出版信息

J Immunol. 1982 Jun;128(6):2609-13.

PMID:6281334
Abstract

The slow-reacting substance (SRS) bioactivity of leukotrienes C4 (LTC4) and D4 (LTD4) was rapidly decreased by incubation with eosinophil peroxidase (EPO), H2O2, and iodide, bromide, or to a lesser degree, chloride, LTB4 chemotactic activity was also decreased by the EPO-H2-H2-halide system, although at a slower rate. Myeloperoxidase could substitute for EPO in these reactions. Leukotriene inactivation was greatly decreased or abolished by deletion of any of the components of the system or by the addition of the hemeprotein inhibitors, azide, cyanide, or aminotriazole, indicating a requirement for peroxidase. The H2O2 concentration employed in the above studies was 10(-4) M. H2O2 at higher concentrations (5 x 10(-4) to 10(-2) M) inactivated LTC4 and LTD4 in the absence of EPO and a halide but had no effect on the chemotactic activity of LTB4. We have previously shown that horse eosinophils stimulated with the calcium ionophore A23187 generate SRS. In the present study, eosinophils stimulated in this way were found to release extracellularly both H2O2 and EPO. Incubation of eosinophils with azide that inhibits EPO, and catalase that degrades H2O2, significantly increased the amount of SRS activity detected in the extracellular medium after A23187 stimulation. These findings suggests eosinophils may play an important modulating role in hypersensitivity reactions both by the production of leukotrienes and by their inactivation through the release of H2O2 and EPO.

摘要

白三烯C4(LTC4)和D4(LTD4)的慢反应物质(SRS)生物活性在与嗜酸性粒细胞过氧化物酶(EPO)、过氧化氢(H2O2)以及碘化物、溴化物或程度稍轻的氯化物共同孵育时会迅速降低。EPO-H2-H2-卤化物体系也会降低白三烯B4(LTB4)的趋化活性,不过速度较慢。髓过氧化物酶在这些反应中可替代EPO。通过去除该体系的任何一种成分或添加血红素蛋白抑制剂叠氮化物、氰化物或氨基三唑,白三烯的失活会大幅降低或消除,这表明需要过氧化物酶。上述研究中使用的H2O2浓度为10^(-4) M。在没有EPO和卤化物的情况下,较高浓度(5×10^(-4)至10^(-2) M)的H2O2会使LTC4和LTD4失活,但对LTB4的趋化活性没有影响。我们之前已表明,用钙离子载体A23187刺激马嗜酸性粒细胞会产生SRS。在本研究中,发现以这种方式刺激的嗜酸性粒细胞会在细胞外释放H2O2和EPO。用抑制EPO的叠氮化物和降解H2O2的过氧化氢酶孵育嗜酸性粒细胞,会显著增加A23187刺激后细胞外培养基中检测到的SRS活性量。这些发现表明,嗜酸性粒细胞可能通过产生白三烯以及通过释放H2O2和EPO使其失活,在超敏反应中发挥重要的调节作用。

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