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重复 UVA 照射对三维紧张胶原基质中包埋的人皮肤成纤维细胞的影响。

Effects of Repeated UVA Irradiation on Human Skin Fibroblasts Embedded in 3D Tense Collagen Matrix.

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences and Center of Excellence for Innovation in Chemistry, Naresuan University, Phitsanulok, Thailand.

Engineering and Cutaneous Biology Laboratory (LIBC), UMR 1098 INSERM EFS BFC, University of Bourgogne Franche-Comté, Besançon, France.

出版信息

Photochem Photobiol. 2018 Jul;94(4):715-724. doi: 10.1111/php.12895. Epub 2018 Mar 31.

Abstract

Skin photoaging is caused by cumulative UVA exposure that leads to dermal matrix alterations associated with impaired fibroblast functions. In this study, we evaluated the effects of repeated UVA irradiation on mechanically stressed fibroblasts which were embedded in 3D tense collagen matrix. By comparison to 2D monolayer culture, we investigated the expressions of alpha-smooth muscle actin (α-SMA) cytoskeleton and α2 subunit of integrin receptors, as well as the collagen metabolism, focusing to MMP-1 and collagen type-I expressions. We found that UVA exposure reduces collagen levels in both culture conditions. However, concerning integrin α2 and α-SMA expression, UVA irradiation had no effect on 2D culture, whereas in tense 3D culture, it had an inhibitory effect. In UVA-irradiated 3D culture, fibroblasts acquired elongated shape and lost their dynamic interaction with collagen fibers through a decrease in integrin α2 and α-SMA. Fibroblast responses to UVA irradiation were different in 2D versus 3D environment, highlighting the importance of collagen environment in the regulation of mechanical activities. The behavior of fibroblast upon mechanical stimulation closely mimics stressed extracellular environment. The model of UVA-irradiated fibroblasts cultured in tense 3D collagen gel illustrated the in vivo situation of both mechanically stressed and photoaged human skin.

摘要

皮肤光老化是由累积的 UVA 照射引起的,导致与成纤维细胞功能受损相关的真皮基质改变。在这项研究中,我们评估了重复 UVA 照射对嵌入三维紧张胶原基质中的机械应激成纤维细胞的影响。与 2D 单层培养相比,我们研究了α-平滑肌肌动蛋白 (α-SMA) 细胞骨架和整合素受体α2 亚基的表达,以及胶原代谢,重点关注 MMP-1 和 I 型胶原的表达。我们发现 UVA 暴露会降低两种培养条件下的胶原水平。然而,关于整合素 α2 和 α-SMA 的表达,UVA 照射对 2D 培养没有影响,而在紧张的 3D 培养中,它具有抑制作用。在 UVA 照射的 3D 培养中,成纤维细胞通过整合素 α2 和 α-SMA 的减少获得伸长的形状,并失去与胶原纤维的动态相互作用。成纤维细胞对 UVA 照射的反应在 2D 与 3D 环境中不同,突出了胶原环境在调节机械活性中的重要性。成纤维细胞在机械刺激下的行为与受应激的细胞外环境非常相似。在紧张的 3D 胶原凝胶中培养的 UVA 照射的成纤维细胞模型说明了机械应激和光老化的人皮肤的体内情况。

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