Human Hair Follicle Mesenchymal Stem Cell-Derived Exosomes Attenuate UVB-Induced Photoaging via the miR-125b-5p/TGF-β1/Smad Axis.

IF 8.1 Q1 ENGINEERING, BIOMEDICAL Biomaterials research Pub Date : 2025-01-13 eCollection Date: 2025-01-01 DOI:10.34133/bmr.0121
Hong Cui, Luo-Qin Fu, Yan Teng, Jun-Jia He, Ye-Yu Shen, Qiong Bian, Ting-Zhang Wang, Mei-Xia Wang, Xiang-Wei Pang, Zhi-Wei Lin, Min-Gang Zhu, Yu Cai, Yang-Yang Li, Jin-Yang Chen, Xiao-Zhou Mou, Yi-Bin Fan
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Abstract

Cutaneous photoaging, induced by chronic exposure to ultraviolet (UV) radiation, typically manifests as alterations in both the physical appearance and functional properties of the skin and may predispose individuals to cancer development. Recent studies have demonstrated the reparative potential of exosomes derived from mesenchymal stem cells in addressing skin damage, while specific reports highlight their efficacy in ameliorating skin photoaging. However, the precise role of exosomes derived from human hair follicle mesenchymal stem cells (HFMSC-Exos) in the context of cutaneous photoaging remains largely unexplored. We successfully isolated HFMSC-Exos using the ultracentrifugation technique. In cellular experiments, we assessed the migration of human dermal fibroblasts (HDFs) through scratch and transwell assays, evaluated the angiogenesis of human umbilical vein endothelial cells through angiogenesis assays, and examined the expression levels of collagen and matrix metalloproteinase 1 (MMP-1) using Western blotting and quantitative reverse transcription polymerase chain reaction. Furthermore, we established a nude mouse model of photoaging to observe wrinkle formation on the dorsal surface of the animals, as well as to assess dermal thickness and collagen fiber generation through histological staining. Ultimately, we performed RNA sequencing on skin tissues from mice before and after treatment to elucidate the relevant underlying mechanisms. Our findings revealed that HFMSC-Exos effectively enhanced the migration and proliferation of HDFs and upregulated the expressions of transforming growth factor-β1 (TGF-β1), p-Smad2/p-Smad3, collagen type 1, and collagen type 3 while concurrently down-regulating MMP-1 levels in HDFs. Additionally, mice in the HFMSC-Exo group showed quicker wrinkle healing and increased collagen production. HFMSC-Exos miR-125b-5p was demonstrated to reduce skin photoaging by increasing profibrotic levels via TGF-β1 expression. UV-irradiated HDFs and photoaged nude mouse skin showed low TGF-β1 expressions, whereas overexpression of TGF-β1 in HDFs increased collagen type 1, collagen type 3, and p-Smad2/p-Smad3 expressions while decreasing MMP-1 expression. HDFs overexpressing TGF-β1 produced more collagen and altered the Smad pathway. This study demonstrated, both in vitro and in vivo, that HFMSC-Exos increased collagen formation, promoted HDF cell proliferation and migration, and reversed the senescence of UV-irradiated HDFs. TGF-β1 was identified as a target of HFMSC-Exos miR-125b-5p, which controls photoaging via regulating the Smad pathway. The antiphotoaging capabilities of HFMSC-Exos may occur via the miR-125b-5p/TGF-β1/Smad axis, suggesting a promising therapeutic approach for treating skin photoaging.

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人毛囊间充质干细胞衍生的外泌体通过miR-125b-5p/TGF-β1/Smad轴减弱uvb诱导的光老化。
皮肤光老化是由长期暴露于紫外线(UV)辐射引起的,通常表现为皮肤的物理外观和功能特性的改变,并可能使个体易患癌症。最近的研究表明,来自间充质干细胞的外泌体具有修复皮肤损伤的潜力,而特定的报道强调了它们在改善皮肤光老化方面的功效。然而,来自人类毛囊间充质干细胞(HFMSC-Exos)的外泌体在皮肤光老化中的确切作用在很大程度上仍未被探索。我们利用超离心技术成功分离了hmsc - exos。在细胞实验中,我们通过划痕法和transwell法评估了人真皮成纤维细胞(HDFs)的迁移,通过血管生成法评估了人脐静脉内皮细胞的血管生成,并使用Western blotting和定量逆转录聚合酶链反应检测了胶原和基质金属蛋白酶1 (MMP-1)的表达水平。此外,我们建立光老化裸鼠模型,观察动物背表面皱纹的形成,并通过组织学染色评估真皮厚度和胶原纤维的生成。最后,我们对小鼠治疗前后的皮肤组织进行了RNA测序,以阐明相关的潜在机制。我们的研究结果表明,HFMSC-Exos有效地促进了HDFs的迁移和增殖,上调了转化生长因子-β1 (TGF-β1)、p-Smad2/p-Smad3、1型胶原和3型胶原的表达,同时下调了HDFs中MMP-1的水平。此外,HFMSC-Exo组小鼠的皱纹愈合速度更快,胶原蛋白产量增加。hmsc - exos miR-125b-5p通过TGF-β1表达增加促纤维化水平,从而被证明可以减少皮肤光老化。紫外线照射的HDFs和光老化的裸鼠皮肤显示TGF-β1的低表达,而TGF-β1在HDFs中过表达增加了1型胶原、3型胶原和p-Smad2/p-Smad3的表达,同时降低了MMP-1的表达。HDFs过表达TGF-β1产生更多胶原蛋白,改变Smad通路。本研究在体外和体内均证明,HFMSC-Exos增加胶原形成,促进HDF细胞增殖和迁移,逆转uv照射下HDFs的衰老。TGF-β1被确定为HFMSC-Exos miR-125b-5p的靶标,其通过调节Smad通路控制光老化。HFMSC-Exos的抗光老化能力可能通过miR-125b-5p/TGF-β1/Smad轴发生,这提示了一种治疗皮肤光老化的有希望的治疗方法。
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