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体内测量的线粒体功能障碍。

Mitochondrial dysfunction measured in vivo.

作者信息

Marcinek D J

机构信息

Department of Radiology, University of Washington Medical Center, Seattle, WA 98195, USA.

出版信息

Acta Physiol Scand. 2004 Dec;182(4):343-52. doi: 10.1111/j.1365-201X.2004.01372.x.

Abstract

AIMS

Mitochondria are responsible for meeting the majority of the energetic demand of most tissues. They also play a major role in regulating cell survival. These dual roles of mitochondria place them at the centre of many pathologies leading to tissue degeneration and disruption of energy balance. The prominent role of mitochondria in ageing and disease has led to a tremendous growth in mitochondrial research at the cellular and molecular level. We describe below a new non-invasive approach to measure mitochondrial function that will bridge the gap between our understanding of mitochondrial function in vitro and that in the intact organism.

METHODS AND RESULTS

This approach uses optical and magnetic resonance spectroscopy to measure in vivo O2 consumption and ATP synthesis rates, respectively, from skeletal muscle. These values lead to a quantitative assessment of the mitochondrial ATP/O2 or P/O. The P/O represents the efficiency of coupling between phosphorylation and oxygen consumption in the mitochondria, which is a measure of mitochondrial dysfunction.

CONCLUSIONS

This work represents a significant advance in research on the role of mitochondria in degenerative disease and ageing because it allows a quantitative measure of mitochondrial pathology in vivo. The non-invasive nature of this approach also enables repeated measures of mitochondrial function on the same individual, thereby making this a potentially useful diagnostic technique. The results from this work have led to insights into the coupling of ATP synthesis to oxidation and the regulation of oxidative phosphorylation by intracellular PO2.

摘要

目的

线粒体负责满足大多数组织的大部分能量需求。它们在调节细胞存活方面也起着重要作用。线粒体的这双重作用使其处于许多导致组织退化和能量平衡破坏的病理过程的中心。线粒体在衰老和疾病中的突出作用导致了细胞和分子水平上线粒体研究的巨大增长。我们在下面描述一种测量线粒体功能的新的非侵入性方法,该方法将弥合我们对体外线粒体功能和完整生物体中线粒体功能理解之间的差距。

方法与结果

该方法分别使用光学和磁共振波谱来测量骨骼肌的体内氧气消耗率和ATP合成率。这些值可对线粒体的ATP/O₂或P/O进行定量评估。P/O代表线粒体中磷酸化与氧气消耗之间的偶联效率,是线粒体功能障碍的一个指标。

结论

这项工作代表了线粒体在退行性疾病和衰老中作用研究的重大进展,因为它能够在体内对线粒体病理进行定量测量。这种方法的非侵入性还使得能够对同一个体的线粒体功能进行重复测量,从而使其成为一种潜在有用的诊断技术。这项工作的结果有助于深入了解ATP合成与氧化的偶联以及细胞内PO₂对氧化磷酸化的调节。

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