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Mitochondria in skin health, aging, and disease

机译:皮肤健康,老化和疾病的线粒体

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The skin is a high turnover organ, and its constant renewal depends on the rapid proliferation of its progenitor cells. The energy requirement for these metabolically active cells is met by mitochondrial respiration, an ATP generating process driven by a series of protein complexes collectively known as the electron transport chain (ETC) that is located on the inner membrane of the mitochondria. However, reactive oxygen species (ROS) like superoxide, singlet oxygen, peroxides are inevitably produced during respiration and disrupt macromolecular and cellular structures if not quenched by the antioxidant system. The oxidative damage caused by mitochondrial ROS production has been established as the molecular basis of multiple pathophysiological conditions, including aging and cancer. Not surprisingly, the mitochondria are the primary organelle affected during chronological and UV-induced skin aging, the phenotypic manifestations of which are the direct consequence of mitochondrial dysfunction. Also, deletions and other aberrations in the mitochondrial DNA (mtDNA) are frequent in photo-aged skin and skin cancer lesions. Recent studies have revealed a more innate role of the mitochondria in maintaining skin homeostasis and pigmentation, which are affected when the essential mitochondrial functions are impaired. Some common and rare skin disorders have a mitochondrial involvement and include dermal manifestations of primary mitochondrial diseases as well as congenital skin diseases caused by damaged mitochondria. With studies increasingly supporting the close association between mitochondria and skin health, its therapeutic targeting in the skin-either via an ATP production boost or free radical scavenging-has gained attention from clinicians and aestheticians alike. Numerous bioactive compounds have been identified that improve mitochondrial functions and have proved effective against aged and diseased skin. In this review, we discuss the essential role of mitochondria in regulating normal and abnormal skin physiology and the possibility of targeting this organelle in various skin disorders.
机译:皮肤是一个高端器官,其常数更新取决于其祖细胞的快速增殖。通过线粒体呼吸来满足这些代谢活性细胞的能量要求,由一系列蛋白质复合物驱动的ATP产生过程,其被共同称为位于线粒体内膜的电子传输链(ETC)。然而,在呼吸期间,在呼吸期间不可避免地产生例如超氧化物,单次氧,过氧化物,如果不被抗氧化系统淬灭,则不可避免地产生。由线粒体ROS生产引起的氧化损伤成立为多种病理生理病症的分子基础,包括老化和癌症。毫不奇怪,线粒体是在时间和紫外线诱导的皮肤衰老期间影响的主要细胞器,其表型表现是线粒体功能障碍的直接后果。此外,线粒体DNA(MTDNA)中的缺失和其他像差频繁在光老年皮肤和皮肤癌病变中频繁。最近的研究揭示了线粒体在维持皮肤稳态和色素沉着中的更具内在的作用,这是受影响的基本线粒体功能受到影响。一些常见和罕见的皮肤病具有线粒体受累,包括原发性线粒体疾病的皮肤表现,以及由受损线粒体引起的先天性皮肤病。随着研究越来越多地支持线粒体和皮肤健康之间的密切关联,其治疗性靶向皮肤 - 通过ATP生产提升或自由基清除 - 已从临床医生和美学家获得关注。已经确定了许多生物活性化合物,以改善线粒体功能,并证明有效针对老化和患病的皮肤。在本综述中,我们讨论了线粒体在调节正常和异常的皮肤生理学方面的基本作用以及靶向各种皮肤病的可能性。

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