Morphological change of skin fibroblasts induced by UV Irradiation is involved in photoaging

光老化 细胞外基质 化学 肌动蛋白 下调和上调 成纤维细胞 细胞生物学 生物物理学 生物化学 角质形成细胞 真皮成纤维细胞 真皮 生物 解剖 体外 基因 遗传学
作者
Hiroyuki Yamaba,Manami Haba,Mayumi Kunita,Tsutomu Sakaida,Hiroshi Tanaka,Youichi Yashiro,Satoru Nakata
出处
期刊:Experimental Dermatology [Wiley]
卷期号:25 (S3): 45-51 被引量:35
标识
DOI:10.1111/exd.13084
摘要

Abstract Human dermal fibroblasts ( HDF s) are typically flattened or extensible shaped and play a critical role in the metabolism of extracellular matrix components. As the properties of fibroblasts in the dermis are considered to be influenced by their morphology, we investigated the morphological changes induced in fibroblasts by ultraviolet ( UV ) irradiation as well as the relationship between these changes and collagen metabolism. In this study, we showed that UVA exposure induced morphological changes and reduced collagen contents in HDF s. These morphological changes were accompanied a reduction in actin filaments and upregulation of the actin filament polymerization inhibitor, capping protein muscle Z‐line ɑ1 ( CAPZA 1). External actin filament growth inhibitors also affected the shape of HDF s and reduced collagen levels. These results suggest that UVA exposure may inhibit the polymerization of actin filaments and induce morphological changes in skin fibroblasts. These morphological changes in fibroblasts may accelerate reductions in collagen synthesis. This mechanism may be one of the processes responsible for collagen reductions observed in photoaged skin. When natural materials that suppress these morphological changes in HDF s were evaluated, we found that an extract of Lilium ‘Casa Blanca’ ( LCB ) suppressed UVA ‐induced alterations in the shape of HDF s, which are typically followed by inhibition of collagen reduction. An analysis of the active compounds in LCB extract led to the identification of regaloside I, which had a structure of phenylpropanoid glycerol glucoside, as the active compound inhibiting the upregulation of CAPZA 1. Therefore, inhibition of UVA ‐induced morphological changes in HDF s is considered to be promising way for the suppression of collagen reduction in photoaging.
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