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首页> 外文期刊>The Journal of Experomental Medicine >Mononuclear phagocytes have the potential for sustained hydroxyl radical production. Use of spin-trapping techniques to investigate mononuclear phagocyte free radical production.
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Mononuclear phagocytes have the potential for sustained hydroxyl radical production. Use of spin-trapping techniques to investigate mononuclear phagocyte free radical production.

机译:单核吞噬细胞具有持续产生羟自由基的潜力。使用自旋诱捕技术研究单核吞噬细胞自由基的产生。

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摘要

Monocytes lack lactoferrin and have much less myeloperoxidase than neutrophils. They also acquire a potential catalyst for .OH production (tartrate-resistant acid phosphatase) as they differentiate into macrophages. Consequently, the nature of free radicals produced by these cells was examined using the previously developed spin-trapping system. When stimulated with either PMA or OZ neither monocytes nor monocyte-derived macrophages (MDM) exhibited spin trap evidence of .OH formation. Pretreatment with IFN-gamma failed to induce MDM .OH production. When provided with an exogenous Fe+3 catalyst, both stimulated monocytes and MDM, but not PMN, exhibited sustained .OH production, presumably due to the absence of lactoferrin in mononuclear phagocytes. Sustained production of .OH could contribute to the microbicidal activity of mononuclear phagocytes as well as inflammatory tissue damage under in vivo conditions where catalytic Fe+3 may be present.
机译:单核细胞缺乏乳铁蛋白,且髓过氧化物酶比嗜中性粒细胞少得多。当它们分化为巨噬细胞时,它们还获得了产生.OH(抗酒石酸的酸性磷酸酶)的潜在催化剂。因此,使用先前开发的自旋捕获系统检查了这些细胞产生的自由基的性质。当用PMA或OZ刺激时,单核细胞和单核细胞衍生的巨噬细胞(MDM)均未显示出形成.OH的自旋阱证据。用IFN-γ预处理不能诱导MDM.OH产生。当提供外源性的Fe + 3催化剂时,受刺激的单核细胞和MDM(而非PMN)都显示出持续的.OH生成,可能是由于单核吞噬细胞中不存在乳铁蛋白。在体内可能存在催化性Fe + 3的条件下,持续产生.OH可能有助于单核吞噬细胞的杀菌活性以及炎性组织损伤。

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