首页> 外文期刊>Antioxidants and redox signalling >Aberrant reactive oxygen and nitrogen species generation in rheumatoid arthritis (RA): causes and consequences for immune function, cell survival, and therapeutic intervention.
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Aberrant reactive oxygen and nitrogen species generation in rheumatoid arthritis (RA): causes and consequences for immune function, cell survival, and therapeutic intervention.

机译:类风湿关节炎(RA)中异常的活性氧和氮物种生成:免疫功能,细胞存活和治疗干预的原因和后果。

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摘要

The infiltration and persistence of hematopoietic immune cells within the rheumatoid arthritis (RA) joint results in elevated levels of pro-inflammatory cytokines, increased reactive oxygen (ROS) and -nitrogen (RNS) species generation, that feeds a continuous self-perpetuating cycle of inflammation and destruction. Meanwhile, the controlled production of ROS is required for signaling within the normal physiological reaction to perceived "foreign matter" and for effective apoptosis. This review focuses on the signaling pathways responsible for the induction of the normal immune response and the contribution of ROS to this process. Evidence for defects in the ability of immune cells in RA to regulate the generation of ROS and the consequence for their immune function and for RA progression is considered. As the hypercellularity of the rheumatoid joint and the associated persistence of hematopoietic cells within the rheumatoid joint are symptomatic of unresponsiveness to apoptotic stimuli, the role of apoptotic signaling proteins (specifically Bcl-2 family members and the tumor suppressor p53) as regulators of ROS generation and apoptosis are considered, evaluating evidence for their aberrant expression and function in RA. We postulate that ROS generation is required for effective therapeutic intervention.
机译:类风湿关节炎(RA)关节内造血免疫细胞的浸润和持久性导致促炎性细胞因子水平升高,活性氧(ROS)和-氮(RNS)物种产生增加,从而为持续不断的自我延续循环提供动力。炎症和破坏。同时,ROS的受控产生是在正常生理反应中向感知的“外来物质”发出信号并有效凋亡所需的。这篇综述集中在负责诱导正常免疫反应和ROS在此过程中的贡献的信号通路。考虑了RA中免疫细胞调节ROS的能力缺陷的证据,以及其免疫功能和RA进展的后果。由于类风湿关节的细胞过多和类风湿关节内造血细胞的持续存在是对凋亡刺激无反应的症状,因此凋亡信号蛋白(特别是Bcl-2家族成员和肿瘤抑制物p53)作为ROS生成的调节剂考虑到细胞凋亡和凋亡,评估它们在RA中异常表达和功能的证据。我们假设有效的治疗干预需要ROS的产生。

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