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首页> 外文期刊>Journal of aging research >Age-Dependent Loss of Mitochondrial Function in Epithelial Tissue Can Be Reversed by Coenzyme Q10
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Age-Dependent Loss of Mitochondrial Function in Epithelial Tissue Can Be Reversed by Coenzyme Q10

机译:辅酶Q10可逆转上皮组织中线粒体功能的年龄依赖性丧失

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The process of aging is characterized by the increase of age-associated disorders as well as severe diseases. Due to their role in the oxidative phosphorylation and thus the production of ATP which is crucial for many cellular processes, one reason for this could be found in the mitochondria. The accumulation of reactive oxygen species damaged mitochondrial DNA and proteins can induce mitochondrial dysfunction within the electron transport chain. According to the “mitochondrial theory of aging,” understanding the impact of harmful external influences on mitochondrial function is therefore essential for a better view on aging in general, but the measurement of mitochondrial respiration in skin cells from cell cultures cannot completely reflect the real situation in skin. Here, we describe a new method to measure the mitochondrial respiratory parameters in epithelial tissue derived from human skin biopsies using a XF24 extracellular flux analyzer to evaluate the effect of coenzyme Q10. We observed a decrease in mitochondrial respiration and ATP production with donor age corresponding to the “mitochondrial theory of aging.” For the first time ex vivo in human epidermis, we could show also a regeneration of mitochondrial respiratory parameters if the reduced form of coenzyme Q10, ubiquinol, was administered. In conclusion, an age-related decrease in mitochondrial respiration and ATP production was confirmed. Likewise, an increase in the respiratory parameters by the addition of coenzyme Q10 could also be shown. The fact that there is a significant effect of administered coenzyme Q10 on the respiratory parameters leads to the assumption that this is mainly caused by an increase in the electron transport chain. This method offers the possibility of testing age-dependent effects of various substances and their influence on the mitochondrial respiration parameters in human epithelial tissue.
机译:衰老过程的特征是与年龄有关的疾病以及严重疾病的增加。由于它们在氧化磷酸化中的作用,从而对许多细胞过程至关重要的ATP的产生,其原因可能在线粒体中找到。活性氧的积累破坏了线粒体的DNA和蛋白质,可在电子传输链中诱发线粒体功能障碍。因此,根据“线粒体衰老理论”,了解有害的外部影响对线粒体功能的影响对于总体上更好地了解衰老至关重要,但是从细胞培养物中测量皮肤细胞中的线粒体呼吸性并不能完全反映真实情况在皮肤上。在这里,我们描述了一种使用XF24细胞外通量分析仪来评估辅酶Q10的效果的新方法,该方法可以测量人皮肤活检组织中上皮组织的线粒体呼吸参数。我们观察到,随着供体年龄的增加,线粒体呼吸和ATP的产生均与“线粒体衰老理论”相对应。如果施用还原形式的辅酶Q10泛醇,我们还可以首次在人的表皮中进行体外线粒体呼吸参数的再生。总之,证实了与年龄相关的线粒体呼吸和ATP产生减少。同样,还可以显示通过添加辅酶Q10来增加呼吸参数。施用辅酶Q10对呼吸参数有重大影响的事实导致人们认为这主要是由于电子传输链的增加引起的。该方法提供了测试各种物质的年龄依赖性效应及其对人上皮组织线粒体呼吸参数影响的可能性。

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