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首页> 外文期刊>Microcirculation: The official journal of the Microcirculatory Society >Vigorous Exercise Training Improves Reactivity of Cerebral Arterioles and Reduces Brain Injury Following Transient Focal Ischemia
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Vigorous Exercise Training Improves Reactivity of Cerebral Arterioles and Reduces Brain Injury Following Transient Focal Ischemia

机译:进行剧烈运动训练可改善短暂性局灶性局部缺血后脑小动脉的反应性并减少脑损伤

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Objective: Our objective was to examine whether vigorous exercise training (VExT) could influence nitric oxide synthase (NOS)-dependent vasodilation and transient focal ischemia-induced brain injury. Rats were divided into sedentary (SED) or VExT groups. Materials and Methods: Exercise was carried out 5 days/week for a period of 8-10 weeks. First, we measured responses of pial arterioles to an eNOS-dependent (ADP), an nNOS-dependent (NMDA) and a NOS-independent (nitroglycerin) agonist in SED and VExT rats. Second, we measured infarct volume in SED and VExT rats following middle cerebral artery occlusion (MCAO). Third, we measured superoxide levels in brain tissue of SED and VExT rats under basal and stimulated conditions. Results: We found that eNOS- and nNOS-dependent, but not NOS-independent vasodilation, was increased in VExT compared to SED rats, and this could be inhibited with L-NMMA in both groups. In addition, we found that VExT reduced infarct volume following MCAO when compared to SED rats. Further, superoxide levels were similar in brain tissue from SED and VExT rats under basal and stimulated conditions. Conclusions: We suggest that VExT potentiates NOS-dependent vascular reactivity and reduces infarct volume following MCAO via a mechanism that appears to be independent of oxidative stress, but presumably related to an increase in the contribution of nitric oxide.
机译:目的:我们的目的是研究剧烈运动训练(VExT)是否会影响一氧化氮合酶(NOS)依赖性的血管舒张和短暂性局灶性缺血性脑损伤。将大鼠分为久坐(SED)或VExT组。材料和方法:运动每周进行5天,为期8-10周。首先,我们测量了SED和VExT大鼠中eNOS依赖性(ADP),nNOS依赖性(NMDA)和NOS依赖性(硝酸甘油)激动剂对小动脉的反应。其次,我们测量了大脑中动脉闭塞(MCAO)后SED和VExT大鼠的梗塞体积。第三,我们在基础和刺激条件下测量了SED和VExT大鼠脑组织中的超氧化物水平。结果:我们发现,与SED大鼠相比,VExT中eNOS和nNOS依赖性血管舒张作用增强,但不依赖于NOS依赖性血管舒张作用增加,两组均可被L-NMMA抑制。此外,我们发现与SED大鼠相比,VExT减少了MCAO后的梗塞体积。此外,在基础和刺激条件下,来自SED和VExT大鼠的脑组织中的超氧化物水平相似。结论:我们认为VExT增强了NOS依赖性血管反应性,并通过一种似乎与氧化应激无关的机制减少了MCAO后的梗塞体积,但可能与一氧化氮的贡献增加有关。

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