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DNA damage accumulation, defective chromatin organization and deficient DNA repair capacity in patients with rheumatoid arthritis

机译:类风湿性关节炎患者的DNA损伤积累,染色质组织和DNA修复能力缺陷

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摘要

We investigated the DNA damage response and repair network in 18 patients with active rheumatoid arthritis and tested the hypothesis that treatment influences this network. A 3-fold increase of endogenous DNA damage (single- and double-strand breaks) was detected in patient-derived peripheral blood mononuclear cells than controls (alkaline comet assay; mean +/- SD Olive Tail Moment of 11.8 +/- 7.3 versus 4.3 +/- 2.2, p < .001). Patients exhibited significantly higher formation of DNA damage (oxidative stress and a basic sites), deficient global genome repair and more condensed chromatin structure than controls. Twelve weeks following treatment, chromatin structure loosened, global genome repair capacity was restored, oxidative stress and a basic sites decreased and levels of endogenous DNA damage reached control values in all 8 patients examined. We conclude that deregulated chromatin organization, deficient DNA repair capacity and augmented formation of DNA damage, which are reversible after treatment, contribute to the accumulation of endogenous DNA damage in rheumatoid arthritis.
机译:我们研究了18例活性类风湿性关节炎患者的DNA损伤反应和修复网络,并测试了治疗影响该网络的假设。在患者衍生的外周血单核细胞中检测到内源性DNA损伤(单链和双链断裂)的3倍增加(碱性彗星测定;平均+/- SD橄榄尾矩为11.8 +/- 7.3与4.3 +/- 2.2,p <.001)。患者表现出明显较高的DNA损伤(氧化应激和碱性位点),全局基因组修复缺乏和更浓缩的染色质结构而不是对照。治疗后12周,染色质结构松动,全局基因组修复能力恢复,氧化应激和碱性位点下降,内源性DNA损伤的水平达到了所有8名患者的控制值。我们得出结论,解毒染色质组织,缺乏DNA修复能力和DNA损伤的增强形成,在治疗后可逆的DNA损伤,有助于中毒性关节炎内源性DNA损伤的积累。

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