Research Program for Receptor Biochemistry and Tumor Metabolism, Department of Pediatrics, University Hospital of the Paracelsus Medical University, Salzburg, Austria.
Patholab Salzburg, Salzburg, Austria.
Exp Dermatol. 2023 Jun;32(6):900-905. doi: 10.1111/exd.14778. Epub 2023 Mar 3.
The decline of mitochondrial function throughout the lifespan is directly linked to the development of ageing phenotypes of the skin. Here, we assessed alterations in markers of epidermal mitochondrial energy metabolism as a function of skin age. Human skin samples from distinct anatomical regions were obtained during routine dermatological surgery from 21 young (27.6 ± 1.71 year) and 22 old (76.2 ± 1.73 year) donors. Sections of skin samples were analysed by immunohistochemistry for mitochondrial subunits of each electron transport chain complex (I-V)/oxidative phosphorylation (OXPHOS), as well as proteins serving as a marker of mitochondrial mass (VDAC1) and the regulation of DNA transcription (TFAM). Staining intensities of ATP5F1A (comprising complex V) and TFAM in the epidermis of older subjects were significantly decreased compared with younger donors. Moreover, these effects were independent of UV exposure of the stained skin section. Overall, we demonstrate that ageing is associated with reduced protein levels of complex V of the mitochondrial respiratory chain and TFAM. These alterations may impair essential mitochondrial functions, exacerbating the cutaneous ageing process.
线粒体功能在整个生命周期中的下降与皮肤衰老表型的发展直接相关。在这里,我们评估了表皮线粒体能量代谢标志物随皮肤年龄的变化。从 21 名年轻(27.6±1.71 岁)和 22 名老年(76.2±1.73 岁)供体的常规皮肤科手术中获得了不同解剖区域的人体皮肤样本。通过免疫组织化学分析皮肤样本的各电子传递链复合物(I-V)/氧化磷酸化(OXPHOS)的线粒体亚基,以及作为线粒体质量标志物的蛋白质(VDAC1)和 DNA 转录调节(TFAM)。与年轻供体相比,老年受试者表皮中 ATP5F1A(包含复合物 V)和 TFAM 的染色强度明显降低。此外,这些影响与染色皮肤部分的紫外线暴露无关。总的来说,我们证明衰老与线粒体呼吸链复合物 V 和 TFAM 的蛋白水平降低有关。这些变化可能会损害重要的线粒体功能,加剧皮肤衰老过程。