Sun Jiachen, Xie Xiaoye, Song Yaoyao, Sun Tianjun, Liu Xinzhu, Yuan Huageng, Shen Chuanan
Department of Burns and Plastic Surgery, Fourth Medical Center of Chinese PLA General Hospital, Beijing, 100048, China.
Bioact Mater. 2024 Feb 21;35:495-516. doi: 10.1016/j.bioactmat.2024.02.013. eCollection 2024 May.
During skin aging, the degeneration of epidermal stem cells (EpiSCs) leads to diminished wound healing capabilities and epidermal disintegration. This study tackles this issue through a comprehensive analysis combining transcriptomics and untargeted metabolomics, revealing age-dependent alterations in the gene family and arachidonic acid (AA) metabolic networks, resulting in enhanced ferroptosis. Selenomethionine (Se-Met) could enhance GPX4 expression, thereby assisting EpiSCs in countering AA-induced mitochondrial damage and ferroptosis. Additionally, Se-Met demonstrates antioxidative characteristics and extensive ultraviolet absorption. For the sustained and controllable release of Se-Met, it was covalently grafted to UV-responsive GelMA hydrogels via AC-PEG-NHS tethers. The Se-Met@GelMA hydrogel effectively accelerated wound healing in a chronological aging mice model, by inhibiting lipid peroxidation and ferroptosis with augmented GPX4 expression. Moreover, in a photoaging model, this hydrogel significantly mitigated inflammatory responses, extracellular matrix remodeling, and ferroptosis in UV-exposed mice. These characteristics render Se-Met@GelMA hydrogel valuable in practical clinical applications.
在皮肤衰老过程中,表皮干细胞(EpiSCs)的退化会导致伤口愈合能力下降和表皮解体。本研究通过结合转录组学和非靶向代谢组学的综合分析来解决这一问题,揭示了基因家族和花生四烯酸(AA)代谢网络中与年龄相关的变化,导致铁死亡增强。硒代蛋氨酸(Se-Met)可以增强GPX4的表达,从而帮助EpiSCs对抗AA诱导的线粒体损伤和铁死亡。此外,Se-Met具有抗氧化特性和广泛的紫外线吸收能力。为了实现Se-Met的持续可控释放,通过AC-PEG-NHS连接体将其共价接枝到紫外线响应性GelMA水凝胶上。Se-Met@GelMA水凝胶通过抑制脂质过氧化和铁死亡并增强GPX4表达,有效地加速了自然衰老小鼠模型中的伤口愈合。此外,在光老化模型中,这种水凝胶显著减轻了紫外线照射小鼠的炎症反应、细胞外基质重塑和铁死亡。这些特性使得Se-Met@GelMA水凝胶在实际临床应用中具有价值。