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Hydrogen peroxide as an immunological transmitter regulating autoreactive T cells

机译:过氧化氢作为调节自身反应性T细胞的免疫递质

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Significance: An unexpected finding, revealed by positional cloning of genetic polymorphisms controlling models for rheumatoid arthritis, exposed a new function of Ncf1 and NADPH oxidase (NOX) 2 controlled oxidative burst. Recent Advances: A decreased capacity to produce ROS due to a natural polymorphism was found to be the major factor leading to more severe arthritis and increased T cell-dependent autoimmunity. Critical Issues: In the vein of this finding, we here review a possible new role of ROS in regulating inflammatory cell and autoreactive T cell activity. It is postulated that peroxide is an immunologic transmitter secreted by antigen-presenting cells that downregulate the responses by autoreactive T cells. Future Directions: This may operate at different levels of T cell selection and activation: during negative selection in the thymus, priming of T cells in draining lymph nodes, and while interacting with macrophages in peripheral target tissues. Antioxid. Redox Signal. 18, 1463-1474. ?
机译:启示:通过风湿性关节炎的遗传多态性控制模型的位置克隆揭示了一个出乎意料的发现,该发现揭示了Ncf1和NADPH氧化酶(NOX)2控制的氧化爆发的新功能。最新进展:由于自然多态性导致产生ROS的能力下降是导致更严重的关节炎和T细胞依赖性自身免疫增加的主要因素。关键问题:根据这一发现,我们在这里综述ROS在调节炎症细胞和自身反应性T细胞活性中的可能新作用。据推测,过氧化物是抗原呈递细胞分泌的免疫递质,其会下调自身反应性T细胞的反应。未来方向:这可能在不同水平的T细胞选择和激活下起作用:在胸腺阴性选择过程中,引流淋巴结中的T细胞启动,并与周围靶组织的巨噬细胞相互作用。抗氧化。氧化还原信号。 18,1463-1474。 ?

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