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Th17细胞/调节性T细胞偏倚在类风湿关节炎中的意义
引用本文:王天,赵义,刘栩,刘霞,李茹,任立敏,叶华,栗占国.Th17细胞/调节性T细胞偏倚在类风湿关节炎中的意义[J].中华风湿病学杂志,2001,13(1):439-442.
作者姓名:王天  赵义  刘栩  刘霞  李茹  任立敏  叶华  栗占国
作者单位:首都医科大学附属北京同仁医院内科;北京大学人民医院风湿免疫科,100044;
基金项目:国家自然科学基金杰出青年科学基金教育部科学技术研究重点项目
摘    要:目的 探讨白细胞介素(IL)-17+CD4+炎症性T细胞(Th17细胞)和Foxp3+CD4+调节性T细胞在类风湿关节炎(RA)的相互关系及可能机制.方法 采用前瞻性随机开放研究.测定RA患者外周血IL-17+CD4+T细胞及Foxp3+CD4+T细胞的比例变化及其相关细胞因子转化生长因子(TGF)-β、IL-6、IL-23和IL-17水平.结果 RA患者外周血IL-17+CD4+T细胞明显升高(P<0.01),而Foxp3+CD4+T细胞明显降低(P<0.01).同时,血清中IL-6、IL-23和IL-17水平明显升高(均P<0.01),而TGF-β水平无明显变化(P>0.05).结论 RA患者Th17细胞数量增高,而调节性T细胞数量减少,体内相关细胞因子的变化是引起上述改变的重要原因.

关 键 词:关节炎  类风湿    转化生长因子β    白细胞介素类    Th17细胞    调节性T细胞    

Overwhelming Th17 cells compared to insufficient CD4+ regulatory T cells in rheumatoid arthritis
WANG Tian,ZHAO Yi,LIU Xu,LIU Xia,LI Ru,REN Li-min,YE Hua,LI Zhan-guo.Overwhelming Th17 cells compared to insufficient CD4+ regulatory T cells in rheumatoid arthritis[J].Chinese Journal of Rheumatology,2001,13(1):439-442.
Authors:WANG Tian  ZHAO Yi  LIU Xu  LIU Xia  LI Ru  REN Li-min  YE Hua  LI Zhan-guo
Abstract:Objective To identify interleukin (IL)-17-producing T cells and Foxp3 positive CD4 positive T ceils from patients with rheumatoid arthritis (RA), and investigate their cytokine levels as well as their correlations. Methods Flow cytometry was used to analyze the subsets of T cells in peripheral blood from 39 RA patients and 40 healthy donors. IL-17, IL-6, IL-23 and transforming growth factor (TGF)-beta levels in sera of these subjects were tested by ELISA. Results IL-17+CD4+ T cells increased significantly and IL-17, IL-6 and IL-23 elevated markedly in peripheral blood of RA patients compared to healthy donors (P< 0.01 ). However,Foxp3+CD4+T cells decreased evidently (P<0.01) and TGF-beta did not increase in RA pati-ents when compared to healthy donors (P>0.05). Conclusion This study suggests that Th17 cells predomin-ance coupled with relatively insufficient CD4+ regulatory T cells in RA is mainly caused by alterations of rela-ted cytokines.
Keywords:Foxp3Arthritis  rheumatoidTransforming growth factor betaInterleukinsTh17 cellsRegulatory T cellsFoxp3
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