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首页> 外文期刊>Rheumatology >Apoptosis in the rheumatoid arthritis synovial membrane: modulation by disease-modifying anti-rheumatic drug treatment.
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Apoptosis in the rheumatoid arthritis synovial membrane: modulation by disease-modifying anti-rheumatic drug treatment.

机译:类风湿关节炎滑膜膜细胞凋亡:通过调节疾病的抗风湿药物治疗进行调节。

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摘要

OBJECTIVES: RA is characterized at the synovial tissue level by synovial lining hyperplasia, angiogenesis and mononuclear cell infiltrates. A failure of apoptotic pathways may explain these pathological changes in RA synovial tissue. This study aims to demonstrate the presence of initiators and inhibitors of apoptosis in RA synovial tissue and the effect of treatment with DMARDs on apoptotic pathways in RA. METHODS: Synovial biopsy specimens were obtained at arthroscopy from 16 RA patients before and at 3- or 6-month intervals after commencing treatment with a DMARD. Apoptosis (by the terminal deoxynucleotidyl transferase mediated dUTP nick end labelling method and polyADP-ribose polymerase staining), proteins regulating apoptosis [Fas, FADD-like IL1b converting enzyme inhibitory protein (FLIP), Bcl-2, Survivin and X-linked inhibitor of apoptosis protein (XIAP)] and the presence of activated caspases (caspases 3 and 8) were detected by immunohistochemistry and quantified using image analysis and semiquantitative techniques. RESULTS: Fifteen patients responded to treatment, with an ACR response of > or =20%, 13 achieving an ACR response of > or =50% and 3 achieving an ACR remission. There was a significant reduction in SM macrophages and memory T cells, with an increase in fibroblast-like synovial lining cells following DMARD treatment. Apoptosis was not detected in the inflamed synovial tissue of RA patients before starting treatment, despite evidence of caspase activation, but was detectable after successful treatment with DMARDs. Inhibitors of activated caspases (FLIP, Survivin and XIAP) were detected in RA synovial tissue and were down-modulated with successful DMARD treatment. CONCLUSIONS: Apoptotic pathways are defective in RA synovial tissue from patients with active disease, despite the presence of activated caspases, possibly due to the abundant expression of inhibitors of the caspase pathway in RA synovial tissue. DMARD treatment can modulate apoptosis in the RA SM, which may lead to restoration of the SM architecture towards that of normal synovial tissue.
机译:目的:RA在滑膜组织水平上具有滑膜内膜增生,血管生成和单核细胞浸润的特征。凋亡途径的失败可能解释了RA滑膜组织中的这些病理变化。这项研究旨在证明RA滑膜组织中凋亡的引发剂和抑制剂的存在以及DMARDs对RA凋亡途径的影响。方法:在进行DMARD治疗之前和之后3个月或6个月的时间,在关节镜下从16名RA患者中获得滑膜活检标本。凋亡(通过末端脱氧核苷酸转移酶介导的dUTP缺口末端标记方法和polyADP-核糖聚合酶染色),调节细胞凋亡的蛋白[Fas,FADD样IL1b转换酶抑制蛋白(FLIP),Bcl-2,Survivin和X连锁抑制剂通过免疫组织化学检测凋亡蛋白(XIAP)和激活的胱天蛋白酶(胱天蛋白酶3和8)的存在,并使用图像分析和半定量技术进行定量。结果:15例患者对治疗有反应,ACR应答≥20%,13例ACR应答≥50%,3例ACR缓解。 DMARD处理后,SM巨噬细胞和记忆T细胞显着减少,成纤维样滑膜衬里细胞增加。尽管有胱天蛋白酶激活的证据,但在开始治疗前未在RA患者的滑膜发炎组织中检测到细胞凋亡,但在成功用DMARDs治疗后可检测到。在RA滑膜组织中检测到激活的胱天蛋白酶的抑制剂(FLIP,Survivin和XIAP),并通过成功的DMARD治疗而被下调。结论:尽管存在激活的胱天蛋白酶,RA患者活动性RA滑膜组织中的细胞凋亡途径还是有缺陷的,这可能是由于RA滑膜组织中caspase途径抑制剂的大量表达所致。 DMARD治疗可以调节RA SM中的细胞凋亡,这可能导致SM结构恢复为正常滑膜组织的结构。

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