首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Immunosuppression by D-penicillamine in vitro. Inhibition of human T lymphocyte proliferation by copper- or ceruloplasmin-dependent generation of hydrogen peroxide and protection by monocytes.
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Immunosuppression by D-penicillamine in vitro. Inhibition of human T lymphocyte proliferation by copper- or ceruloplasmin-dependent generation of hydrogen peroxide and protection by monocytes.

机译:D-青霉胺在体外的免疫抑制作用。铜或铜蓝蛋白依赖的过氧化氢生成抑制人T淋巴细胞的增殖并由单核细胞提供保护。

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摘要

It has been suggested that D-penicillamine is active in rheumatoid arthritis because of its capacity to function as a selective inhibitor of T lymphocyte function. The basis for the immunosuppressive action of this drug as well as mechanisms whereby the effect of D-penicillamine could be modified by elements of rheumatoid synovial tissue were examined. As previously reported, D-penicillamine, in the presence of copper ions markedly inhibited mitogen-induced human T lymphocyte DNA synthesis. Since the vast majority of copper in the body exists as an integral part of the ceruloplasmin molecule, the capacity of this cuproprotein to augment D-penicillamine-mediated inhibition of T cell function was examined. The requirement for copper ions could be entirely replaced by purified ceruloplasmin, which had been depleted of nonspecifically bound copper by passage over Chelex-100 columns. The mechanism by which D-penicillamine in the presence of either copper ions or ceruloplasmin caused inhibition of T lymphocyte responsiveness was examined. Partial protection from this inhibitory effect was accomplished by sodium borohydride. While superoxide dismutase had no protective effect, catalase was found to protect lymphocyte responsiveness totally from the inhibitory action of D-penicillamine and either copper ions or ceruloplasmin. Similarly, horseradish peroxidase and myeloperoxidase also protected responsiveness from these inhibitors while boiled catalase was without effect. These results indicate that inhibition of T lymphocyte responsiveness resulted from the generation of hydrogen peroxide. Since a number of cells likely to be present at chronic inflammatory sites, such as mononuclear phagocytes, contain enzymatic mechanisms to degrade hydrogen peroxide, the modulatory influence of these cells on the inhibition of T cell function caused by D-penicillamine and copper was examined. Monocytes, whose function was not suppressed by D-penicillamine and copper, were found to protect T lymphocyte responsiveness from the inhibitory effects of either the mixture of D-penicillamine and CuSO4 or of hydrogen peroxide. By contrast, endothelial cells, fibroblasts, or cells obtained from enzyme-digested noninflamed synovium could not protect T cells from the inhibitory effects of D-penicillamine and copper. Protection of T cells was afforded by means of a heat labile, azide-sensitive soluble factor present in lysates of human monocytes. These results indicate that the mechanism whereby D-penicillamine in the presence of copper or ceruloplasmin inhibits T lymphocyte responsiveness involves the generation of hydrogen peroxide and that other neighboring cells likely to be found w
机译:已经建议D-青霉胺在类风湿性关节炎中是活跃的,因为它具有作为T淋巴细胞功能的选择性抑制剂的功能。研究了该药物免疫抑制作用的基础,以及可以通过类风湿滑膜组织成分改变D-青霉胺作用的机制。如先前报道,D-青霉胺在铜离子存在下显着抑制有丝分裂原诱导的人T淋巴细胞DNA合成。由于人体中绝大多数铜是铜蓝蛋白分子的组成部分,因此研究了该铜蛋白增强D-青霉胺介导的T细胞功能抑制的能力。对铜离子的需求可以完全由纯化的铜蓝蛋白代替,铜蓝蛋白已通过Chelex-100色谱柱去除了非特异性结合的铜。研究了在铜离子或铜蓝蛋白存在下D-青霉胺引起T淋巴细胞反应性抑制的机制。硼氢化钠可部分保护其免受这种抑制作用。尽管超氧化物歧化酶没有保护作用,但过氧化氢酶被发现可以完全保护淋巴细胞的反应能力,使其免受D-青霉胺和铜离子或铜蓝蛋白的抑制作用。同样,辣根过氧化物酶和髓过氧化物酶也可以保护这些抑制剂的响应能力,而煮沸的过氧化氢酶则无效。这些结果表明,过氧化氢的产生导致T淋巴细胞反应性的抑制。由于许多可能存在于慢性炎症部位的细胞,例如单核吞噬细胞,都含有降解过氧化氢的酶机制,因此研究了这些细胞对D-青霉胺和铜引起的T细胞功能抑制的调节作用。发现其功能不受D-青霉胺和铜抑制的单核细胞可以保护T淋巴细胞反应性不受D-青霉胺和CuSO4混合物或过氧化氢的抑制作用。相比之下,内皮细胞,成纤维细胞或酶消化的非发炎滑膜获得的细胞不能保护T细胞免受D-青霉胺和铜的抑制作用。 T细胞的保护是通过存在于人单核细胞裂解物中的热不稳定的,对叠氮化物敏感的可溶性因子提供的。这些结果表明,在铜或铜蓝蛋白存在下,D-青霉胺抑制T淋巴细胞反应的机制涉及过氧化氢的产生,并且可能发现其他邻近细胞。

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