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血管平滑肌细胞的体外氧化应激反应及雌激素的影响
引用本文:徐菁,朱从丽,王乔,宋健. 血管平滑肌细胞的体外氧化应激反应及雌激素的影响[J]. 中国组织化学与细胞化学杂志, 2010, 19(6): 537-541. DOI: 10.3870/zgzzhx.2010.06.003
作者姓名:徐菁  朱从丽  王乔  宋健
作者单位:1. 南华大学医学院人体解剖学教研室,湖南,衡阳,421001
2. 武汉大学医学院人体解剖学与组织胚胎学系、医学研究中心,湖北,武汉,430071
基金项目:国家自然科学基金(30470906); 中澳科技合作特别基金(30711120185)
摘    要:目的探讨雌激素对VSMC氧化应激反应的影响及机制。方法第3-4代雌性大鼠血管平滑肌细胞(VSMC)在有或无10-8mol/L 17b-雌二醇(E2)存在下用不同浓度(0-250mmol/L)H2O2诱导氧化应激;MTT法,流式细胞术,Western blot分别检测VSMC活力,细胞周期,MAPK信号通路活性的变化。结果当浓度低于25mmol/L时,H2O2对VSMC活力无影响;当浓度为50-150mmol/L时,VSMC活力呈剂量依赖性下降,并伴随G0/G1期细胞升高;当浓度达到200mmol/L时,细胞活力下降至最低点并出现凋亡峰。10-8mol/L E2可显著抑制150mmol/L H2O2诱导的VSMCERK和p38的磷酸化、从而缓解VSMC G0/G1期阻滞,并降低高浓度H2O2诱导的VSMC凋亡。结论中等浓度的H2O2(50-150mmol/L)抑制VSMC增殖;高浓度H2O2(≥200mmol/L)不仅抑制VSMC生长、且导致部分VSMC凋亡;雌激素可通过抑制ERK和p38活性对氧化应激的VSMC起保护作用。

关 键 词:雌激素  血管平滑肌细胞  氧化应激  过氧化氢

RESPONSES OF VASCULAR SMOOTH MUSCLE CELLS TO OXIDATIVE STRESS IN VITRO AND THE EFFECTS OF ESTROGEN
Xu Jing,Zhu Congli,Wang Qiao,Song Jian. RESPONSES OF VASCULAR SMOOTH MUSCLE CELLS TO OXIDATIVE STRESS IN VITRO AND THE EFFECTS OF ESTROGEN[J]. Chinese Journal of Histochemistry and Cytochemistry, 2010, 19(6): 537-541. DOI: 10.3870/zgzzhx.2010.06.003
Authors:Xu Jing  Zhu Congli  Wang Qiao  Song Jian
Affiliation:Xu Jing1,Zhu Congli2,Wang Qiao2,Song Jian2(1Department of Anatomy,Medical Collage,University of South China,Hunan,Hengyang 421001,2Department of Anatomy,Histology and Embryology,Medical Research Center,Wuhan University School of Medicine,Wuhan 430071,China)
Abstract:Objective To investigate the effects of estrogen on the responses of vascular smooth muscle cells(VSMCs) to oxidative stress.Methods The sub-cultured(passage 3-4) female rat VSMCs were treated with different concentrations(10-250mol/L) of H2O2 in the presence or absence of 10-8mol/L E2.The viability,cell cycle progress and MAPK signaling activity were analysed with MTT assay,flow cytometry and Western blot,respectively.Results When the VSMCs were treated with 10-25mol/L H2O2,the cellular viability had no si...
Keywords:Estrogen  Vascular smooth muscle cells  Oxidative stress  H2O2  
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