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艾灸对实验性RA家兔滑膜细胞MAPK信号通路影响的研究
引用本文:杨馨,杨慎峭,周海燕,余曙光,冷为军,刘旭光.艾灸对实验性RA家兔滑膜细胞MAPK信号通路影响的研究[J].中华中医药学刊,2007,25(3):470-474.
作者姓名:杨馨  杨慎峭  周海燕  余曙光  冷为军  刘旭光
作者单位:成都中医药大学,四川,成都,610075
摘    要:目的:观察艾灸对实验性RA家兔滑膜细胞MAPK信号通路的影响,揭示艾灸治疗实验性RA的分子信号机制。方法:运用基因芯片及生物信息分析技术检测分析MAPK信号通路中96种相关信号分子的表达。结果:造模组与正常对照组相比较,MAPK通路异常激活,Cyclin A1、p38 MAPK、ERK1、JNK1、N—ras等相关信号分子表达上调;艾灸组与造模组相比较,MAPK通路中异常激活的Cyclin A1、p38 MAPK、ERK1、JNK1、N—ras等相关信号分子的表达明显下调。结论:艾灸对实验性RA滑膜细胞MAPKs信号通路的异常激活有明显抑制作用。

关 键 词:艾灸  类风湿性关节炎  滑膜细胞  基因芯片  MAPK通路
文章编号:1673-7717(2007)03-0470-05
收稿时间:2006-10-18
修稿时间:2006-10-18

The Influence on MAPK Signal Pathway in RA Synovial Cell of Experimental Rabbits by Moxibustion
YANG Xin,YANG Shen-qiao,ZHOU Hai-yan,YU Shu-Guang,LENG Wei-jun,LIU Xu-guang.The Influence on MAPK Signal Pathway in RA Synovial Cell of Experimental Rabbits by Moxibustion[J].Chinese Archives of Traditional Chinese Medicine,2007,25(3):470-474.
Authors:YANG Xin  YANG Shen-qiao  ZHOU Hai-yan  YU Shu-Guang  LENG Wei-jun  LIU Xu-guang
Institution:Chengdu University of Traditional Chinese Medicine, Chengdu 610075, Sichuan, China
Abstract:Objective:Observe the influence of MAPK pathway's signal transduction in RA synovial cell of experimental rabbits by moxibustion,and reveal the molecular signal mechanism of experimental RA by moxibustion.Methods:Apply gene chip inspection and bioinformation analytical technique to detect the 96 sorts of signal molecule of MAPK pathway.Results: Comparing model group with normal group,MAPK pathway has been activated abnormally,and as a result,the expression of signal molecule such as Cyclin A1,p38 MAPK,ERK1,JNK1,Nras has been up-regulated;comparing moxibustion group with model group,the expression of signal molecule such as Cyclin A1,p38 MAPK,ERK1,JNK1,N-ras has been down-regulated after therapy.Conclusion:Moxibustion plays a very important roll of transparent inhibition in abnormal activation of MAPK pathway's signal transduction in RA synovial cell of experimental rabbits.
Keywords:moxibustion  rheumatoid arthritis  synovial cell  gene chip  MAPK pathway
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