Department of Anatomy and Neurobiology, School of Basic Medical Sciences, Central South University, Morphological Sciences Building, 172 Tongzi Po Road, Changsha, 410013, China.
Department of Dermatology, Xiangya Hospital, Central South University, Changsha, 410013, China.
Stem Cell Res Ther. 2021 Aug 11;12(1):453. doi: 10.1186/s13287-021-02527-y.
Hair follicle stem cells (HFSCs) are among the most widely available resources and most frequently approved model systems used for studying adult stem cells. HFSCs are particularly useful because of their self-renewal and differentiation properties. Additionally, the cyclic growth of hair follicles is driven by HFSCs. There are high expectations for the use of HFSCs as favourable systems for studying the molecular mechanisms that contribute to HFSC identification and can be applied to hair loss therapy, such as the activation or regeneration of hair follicles, and to the generation of hair using a tissue-engineering strategy. A variety of molecules are involved in the networks that critically regulate the fate of HFSCs, such as factors in hair follicle growth and development (in the Wnt pathway, Sonic hedgehog pathway, Notch pathway, and BMP pathway), and that suppress apoptotic cues (the apoptosis pathway). Here, we review the life cycle, biomarkers and functions of HFSCs, concluding with a summary of the signalling pathways involved in HFSC fate for promoting better understanding of the pathophysiological changes in the HFSC niche. Importantly, we highlight the potential mechanisms underlying the therapeutic targets involved in pathways associated with the treatment of hair loss and other disorders of skin and hair, including alopecia, skin cancer, skin inflammation, and skin wound healing.
毛囊干细胞(HFSCs)是最广泛可用的资源之一,也是最常用于研究成体干细胞的模型系统。HFSCs 之所以特别有用,是因为它们具有自我更新和分化的特性。此外,毛囊的周期性生长是由 HFSCs 驱动的。人们对 HFSCs 的应用寄予厚望,认为它是研究有助于 HFSC 鉴定的分子机制的有利系统,可以应用于脱发治疗,例如激活或再生毛囊,以及使用组织工程策略生成头发。许多分子参与了严格调控 HFSCs 命运的网络,例如毛囊生长和发育中的因子(Wnt 途径、Sonic hedgehog 途径、Notch 途径和 BMP 途径),以及抑制凋亡信号(凋亡途径)。在这里,我们回顾了 HFSCs 的生命周期、生物标志物和功能,并总结了参与 HFSC 命运的信号通路,以促进更好地理解 HFSC 龛位中的病理生理变化。重要的是,我们强调了与脱发和其他皮肤和头发疾病(包括脱发症、皮肤癌、皮肤炎症和皮肤伤口愈合)治疗相关的通路中涉及的治疗靶点的潜在机制。