文章摘要
彭雯,成蓓,杨彬,汪金锋,江凌.有氧训练对猪慢性冠状动脉狭窄后内皮细胞介导的侧支循环依赖血管扩张的影响[J].中华物理医学与康复杂志,2003,(9):.-
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有氧训练对猪慢性冠状动脉狭窄后内皮细胞介导的侧支循环依赖血管扩张的影响
  
DOI:
中文关键词: 冠状动脉  狭窄  侧支循环  有氧训练
英文关键词: Coronary artery  Occlusion  Collateral circulation  Aerobic exercise training
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作者单位
彭雯,成蓓,杨彬,汪金锋,江凌 430022武汉华中科技大学同济医学院附属协和医院综合科 
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中文摘要:
      目的探讨有氧训练后侧支循环依赖血管的扩张与内皮介导的一氧化氮合酶(ecNOS)的基因表达之间的关系。 方法健康雄性3月龄猪22只,采用Ameroid缩窄器建立慢性冠状动脉左回旋支(LCX)狭窄模型后,随机分为对照组(n=7)和运动组(n=8)。对照组保持安静饲养7周;运动组进行中等强度有氧运动训练7周。以逆转录-聚合酶链反应(RT-PCR)法测定未狭窄冠状动脉左前降支(LAD)和侧支循环依赖的LCX小动脉ecNOS的mRNA表达情况。 结果运动组LCX和LAD小动脉的ecNOS mRNA的表达无差异,P>0.05;对照组LCX小动脉ecNOS的mRNA表达较LAD显著下降,P<0.01。 结论运动训练可以上调狭窄的冠状动脉ecNOS的基因表达,增加一氧化氮(NO)的产生,改善侧支循环依赖的血管的扩张,改善心肌供血。
英文摘要:
      Objective To evaluate the hypothesis that exercise training enhances endothelium-mediated relaxation and increases endothelial constitutive nitric oxide synthase(ecNOS) mRNA levels of collateral-dependent microvasculature by use of a porcine model of chronic coronary occlusion and collateral development. MethodsTwenty-two pigs(3 months old) were subjected to chronic, progressive ameroid occlusion of the proximal left circumflex coronary artery(LCX). Four weeks after operation, the animals were divided into the sedentary group and the exercise training group. The pigs in the exercise training group were administered with aerobic treadmill training at moderate intensity for 7 weeks, while those in the sedentary group were kept sedentary. Arterioles were sampled at the end of the exercise training program and used for ecNOS mRNA analysis(RT-PCR techniques). ResultsIt was found that in the sedentary animals, ecNOS mRNA expression in arterioles isolated from LCX was significantly decreased as compared with that in arterioles from left anterior descending coronary artery (LAD) regions.However, ecNOS mRNA expression was not significantly different between LAD and LCX arterioles in the pigs in the exercise training group. ConclusionExercise training enhances relaxation of collateral-dependent LCX arterioles isolated after chronic coronary occlusion, most likely because of effects on ecNOS mRNA expression and increased production of NO.
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