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与肌原纤维通透化相比,衰老时线粒体的功能损伤在分离的线粒体中更为明显。

Mitochondrial functional impairment with aging is exaggerated in isolated mitochondria compared to permeabilized myofibers.

机构信息

Department of Kinesiology, McGill University, Montreal, QC H2W 1S4, Canada.

出版信息

Aging Cell. 2010 Dec;9(6):1032-46. doi: 10.1111/j.1474-9726.2010.00628.x.

Abstract

Mitochondria regulate cellular bioenergetics and apoptosis and have been implicated in aging. However, it remains unclear whether age-related loss of muscle mass, known as sarcopenia, is associated with abnormal mitochondrial function. Two technically different approaches have mainly been used to measure mitochondrial function: isolated mitochondria and permeabilized myofiber bundles, but the reliability of these measures in the context of sarcopenia has not been systematically assessed before. A key difference between these approaches is that contrary to isolated mitochondria, permeabilized bundles contain the totality of fiber mitochondria where normal mitochondrial morphology and intracellular interactions are preserved. Using the gastrocnemius muscle from young adult and senescent rats, we show marked effects of aging on three primary indices of mitochondrial function (respiration, H(2) O(2) emission, sensitivity of permeability transition pore to Ca(2+) ) when measured in isolated mitochondria, but to a much lesser degree when measured in permeabilized bundles. Our results clearly demonstrate that mitochondrial isolation procedures typically employed to study aged muscles expose functional impairments not seen in situ. We conclude that aging is associated with more modest changes in mitochondrial function in sarcopenic muscle than suggested previously from isolated organelle studies.

摘要

线粒体调节细胞的生物能量和细胞凋亡,并与衰老有关。然而,与衰老相关的肌肉质量损失(称为肌肉减少症)是否与线粒体功能异常有关仍不清楚。两种主要的技术方法被用于测量线粒体功能:分离的线粒体和透化的肌纤维束,但这些方法在肌肉减少症中的可靠性以前没有被系统评估过。这两种方法的一个关键区别是,与分离的线粒体相反,透化的束包含了纤维线粒体的全部,其中正常的线粒体形态和细胞内相互作用得以保留。我们使用年轻成年和衰老大鼠的腓肠肌,结果表明,当在分离的线粒体中测量时,衰老对线粒体功能的三个主要指标(呼吸、H2O2 排放、通透性转换孔对 Ca2+的敏感性)有明显的影响,但在透化束中测量时影响要小得多。我们的结果清楚地表明,通常用于研究老年肌肉的线粒体分离程序会暴露出在原位观察不到的功能损伤。我们得出的结论是,与以前从分离的细胞器研究中所表明的相比,衰老与肌肉减少症中线粒体功能的更适度变化有关。

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