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Dietary inorganic nitrate improves mitochondrial efficiency in humans.

机译:饮食中的无机硝酸盐可改善人类的线粒体效率。

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Nitrate, an inorganic anion abundant in vegetables, is converted in vivo to bioactive nitrogen oxides including NO. We recently demonstrated that dietary nitrate reduces oxygen cost during physical exercise, but the mechanism remains unknown. In a double-blind crossover trial we studied the effects of a dietary intervention with inorganic nitrate on basal mitochondrial function and whole-body oxygen consumption in healthy volunteers. Skeletal muscle mitochondria harvested after nitrate supplementation displayed an improvement in oxidative phosphorylation efficiency (P/O ratio) and a decrease in state 4 respiration with and without atractyloside and respiration without adenylates. The improved mitochondrial P/O ratio correlated to the reduction in oxygen cost during exercise. Mechanistically, nitrate reduced the expression of ATP/ADP translocase, a protein involved in proton conductance. We conclude that dietary nitrate has profound effects on basal mitochondrial function. These findings may have implications for exercise physiology- and lifestyle-related disorders that involve dysfunctional mitochondria.
机译:硝酸盐是一种富含蔬菜的无机阴离子,体内可转化为生物活性氮氧化物,包括一氧化氮。我们最近证明,饮食中的硝酸盐可以减少体育锻炼中的氧气消耗,但其机理尚不清楚。在一项双盲交叉试验中,我们研究了饮食干预中无机硝酸盐对健康志愿者基础线粒体功能和全身耗氧量的影响。补充硝酸盐后收获的骨骼肌线粒体显示出氧化磷酸化效率(P / O比)的改善和有和没有白术苷的无状态4呼吸的减少以及无腺苷酸的呼吸的状态。线粒体P / O比例的提高与运动过程中氧气消耗的减少有关。从机理上讲,硝酸盐可降低ATP / ADP转运酶的表达,该酶参与质子传导。我们得出结论,饮食中的硝酸盐对基础线粒体功能具有深远的影响。这些发现可能对涉及线粒体功能异常的运动生理和与生活方式相关的疾病具有影响。

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