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猫肥厚型心肌病中心肌线粒体氧化磷酸化受损及线粒体氧化应激增强。

Impaired cardiac mitochondrial oxidative phosphorylation and enhanced mitochondrial oxidative stress in feline hypertrophic cardiomyopathy.

作者信息

Christiansen Liselotte B, Dela Flemming, Koch Jørgen, Hansen Christina N, Leifsson Pall S, Yokota Takashi

机构信息

Department of Veterinary Clinical and Animal Sciences, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark; Department of Biomedical Sciences, Center for Healthy Aging, University of Copenhagen, Copenhagen, Denmark; and.

Department of Biomedical Sciences, Center for Healthy Aging, University of Copenhagen, Copenhagen, Denmark; and.

出版信息

Am J Physiol Heart Circ Physiol. 2015 May 15;308(10):H1237-47. doi: 10.1152/ajpheart.00727.2014. Epub 2015 Mar 13.

Abstract

Mitochondrial dysfunction and oxidative stress are important players in the development of various cardiovascular diseases, but their roles in hypertrophic cardiomyopathy (HCM) remain unknown. We examined whether mitochondrial oxidative phosphorylation (OXPHOS) capacity was impaired with enhanced mitochondrial oxidative stress in HCM. Cardiac and skeletal muscles were obtained from 9 domestic cats with spontaneously occurring HCM with preserved left ventricular systolic function and from 15 age-matched control cats. Mitochondrial OXPHOS capacities with nonfatty acid and fatty acid substrates in permeabilized fibers and isolated mitochondria were assessed using high-resolution respirometry. ROS release originating from isolated mitochondria was assessed by spectrofluorometry. Thiobarbituric acid-reactive substances were also measured as a marker of oxidative damage. Mitochondrial ADP-stimulated state 3 respiration with complex I-linked nonfatty acid substrates and with fatty acid substrates, respectively, was significantly lower in the hearts of HCM cats compared with control cats. Mitochondrial ROS release during state 3 with complex I-linked substrates and thiobarbituric acid-reactive substances in the heart were significantly increased in cats with HCM. In contrast, there were no significant differences in mitochondrial OXPHOS capacity, mitochondrial ROS release, and oxidative damage in skeletal muscle between groups. Mitochondrial OXPHOS capacity with both nonfatty acid substrates and fatty acid substrates was impaired with increased mitochondrial ROS release in the feline HCM heart. These findings provide new insights into the pathophysiology of HCM and support the hypothesis that restoration of the redox state in the mitochondria is beneficial in the treatment of HCM.

摘要

线粒体功能障碍和氧化应激在多种心血管疾病的发展中起着重要作用,但其在肥厚型心肌病(HCM)中的作用尚不清楚。我们研究了在HCM中,线粒体氧化磷酸化(OXPHOS)能力是否会随着线粒体氧化应激增强而受损。从9只左心室收缩功能保留的自发性HCM家猫以及15只年龄匹配的对照家猫获取心脏和骨骼肌。使用高分辨率呼吸测定法评估通透纤维和分离线粒体中使用非脂肪酸和脂肪酸底物时的线粒体OXPHOS能力。通过荧光分光光度法评估分离线粒体产生的活性氧(ROS)释放。还测量了硫代巴比妥酸反应性物质作为氧化损伤的标志物。与对照猫相比,HCM猫心脏中分别与复合体I相关的非脂肪酸底物和脂肪酸底物的线粒体ADP刺激的状态3呼吸显著降低。HCM猫心脏中状态3期间与复合体I相关底物的线粒体ROS释放以及硫代巴比妥酸反应性物质显著增加。相比之下,两组之间骨骼肌的线粒体OXPHOS能力、线粒体ROS释放和氧化损伤没有显著差异。在猫HCM心脏中,非脂肪酸底物和脂肪酸底物的线粒体OXPHOS能力均随着线粒体ROS释放增加而受损。这些发现为HCM的病理生理学提供了新的见解,并支持线粒体氧化还原状态的恢复对HCM治疗有益的假设。

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