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丝裂原活化蛋白激酶信号通路与自噬在皮肤衰老中的相互作用:机制见解与治疗意义

Interplay between MAPK signaling pathway and autophagy in skin aging: mechanistic insights and therapeutic implications.

作者信息

Liu Xu, Chen Bo, Liu Xuefeng, Zhang Xiaoqing, Wu Jingdong

机构信息

The First Clinical College, Liaoning University of Traditional Chinese Medicine, Shenyang, China.

Department of Exercise Physiology, Beijing Sport University, Beijing, China.

出版信息

Front Cell Dev Biol. 2025 Jun 27;13:1625357. doi: 10.3389/fcell.2025.1625357. eCollection 2025.

Abstract

Skin aging manifests as structural degradation, functional decline, and heightened disease susceptibility. Central to this process is the overactivation of the mitogen-activated protein kinase (MAPK) signaling pathway triggered by reactive oxygen species (ROS). Autophagy, a lysosomal degradation mechanism essential for maintaining cellular homeostasis, demonstrates context-dependent duality in skin aging by mediating cytoprotective effects and stress-induced dysfunction. Emerging evidence highlights that the interplay between MAPK signaling and autophagy critically modulates skin aging progression. Despite its therapeutic potential, the lack of effective targeting strategies severely hinders clinical translation. Therefore, this review synthesizes current evidence on MAPK-autophagy interplay across key cutaneous cell populations, namely, keratinocytes, fibroblasts, and melanocytes (including melanoma), revealing cell-type-specific regulatory networks that influence skin aging. Subsequently, we explore the therapeutic potential of natural bioactive compounds targeting this interplay to accelerate the translation of evidence into the progression of strategies for combating skin aging.

摘要

皮肤衰老表现为结构退化、功能衰退和疾病易感性增加。这一过程的核心是由活性氧(ROS)触发的丝裂原活化蛋白激酶(MAPK)信号通路过度激活。自噬是维持细胞稳态所必需的溶酶体降解机制,通过介导细胞保护作用和应激诱导的功能障碍,在皮肤衰老中表现出依赖于环境的双重性。新出现的证据表明,MAPK信号通路与自噬之间的相互作用对皮肤衰老进程起着关键的调节作用。尽管其具有治疗潜力,但缺乏有效的靶向策略严重阻碍了其临床转化。因此,本综述综合了目前关于MAPK-自噬相互作用在关键皮肤细胞群体(即角质形成细胞、成纤维细胞和黑素细胞(包括黑色素瘤))中的证据,揭示了影响皮肤衰老的细胞类型特异性调控网络。随后,我们探讨了针对这种相互作用的天然生物活性化合物的治疗潜力,以加速将证据转化为对抗皮肤衰老的策略进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a78/12245914/af3335be630d/fcell-13-1625357-g001.jpg

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