School of Bioscience and Biotechnology, Tokyo University of Technology, Hachioji, Tokyo, Japan.
Exp Dermatol. 2019 Feb;28 Suppl 1:32-37. doi: 10.1111/exd.13821.
Carbonylated proteins (CPs) are synthesized by reactions between amino groups in proteins and reactive aldehyde compounds (RAC) yielded from lipid peroxidation initiated by reactive oxygen species (ROS). In the skin, CPs are detected in a higher frequency at sun-exposed sites of the skin in elderly subjects. Since CPs in the stratum corneum (SC) have been reported to correlate with skin water content and transepidermal water loss, it is considered that the accumulation of CPs in the SC involves the loss of skin moisture functions. However, the roles of CPs in the dermis on skin physiology are still unclear. The purpose of this study was to investigate the roles of CPs in the dermis during the progression of photoaged skin and to propose a method to prevent or reduce the synthesis of CPs. The exposure of human normal dermal fibroblasts to CPs increased intracellular ROS levels and the synthesis of intracellular CPs. In addition, CPs caused morphological changes of fibroblasts. Furthermore, CPs caused alterations of mRNA expression levels of dermal matrix-related proteins, such as upregulating MMP-1 and IL-8. These results indicated that CPs disrupt construction of the dermal matrix. On the other hand, α-tocopherol and β-carotene suppressed the synthesis of RAC during lipid peroxidation which resulted in the reduction of UVA-induced CPs in the SC. From these results, we propose that extracellular CPs increase intracellular ROS levels and contribute to alterations of the dermal matrix. To prevent the synthesis of CPs, the application of α-tocopherol or β-carotene could be effective.
羰基化蛋白(CPs)是由蛋白质中的氨基基团与脂质过氧化反应产生的活性醛化合物(RAC)反应合成的,脂质过氧化反应是由活性氧(ROS)引发的。在皮肤中,在老年受试者的皮肤暴露于阳光的部位中更频繁地检测到 CPs。由于角质层(SC)中的 CPs 被报道与皮肤水分含量和经表皮水分流失相关,因此认为 SC 中 CPs 的积累涉及皮肤水分功能的丧失。然而,真皮中 CPs 在皮肤生理学中的作用仍不清楚。本研究旨在探讨 CPs 在光老化皮肤进展过程中在真皮中的作用,并提出一种预防或减少 CPs 合成的方法。将人正常真皮成纤维细胞暴露于 CPs 会增加细胞内 ROS 水平和细胞内 CPs 的合成。此外,CPs 导致成纤维细胞形态发生变化。此外,CPs 还导致真皮基质相关蛋白的 mRNA 表达水平发生改变,例如上调 MMP-1 和 IL-8。这些结果表明 CPs 破坏了真皮基质的构建。另一方面,α-生育酚和β-胡萝卜素在脂质过氧化过程中抑制 RAC 的合成,从而减少 UVA 诱导的 SC 中 CPs 的形成。基于这些结果,我们提出细胞外 CPs 会增加细胞内 ROS 水平,并导致真皮基质的改变。为了防止 CPs 的合成,应用α-生育酚或β-胡萝卜素可能是有效的。