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Mol Cells ; 46(10): 573-578, 2023 Oct 31.
Article in English | MEDLINE | ID: mdl-37650216

ABSTRACT

The mammalian skin contains hair follicles, which are epidermal appendages that undergo periodic cycles and exhibit mini-organ features, such as discrete stem cell compartments and different cellular components. Wound-induced hair follicle neogenesis (WIHN) is the remarkable ability to regenerate hair follicles after large-scale wounding and occurs in several adult mammals. WIHN is comparable to embryonic hair follicle development in its processes. Researchers are beginning to identify the stem cells that, in response to wounding, develop into neogenic hair follicles, as well as to understand the functions of immune cells, mesenchymal cells, and several signaling pathways that are essential for this process. WIHN represents a promising therapeutic approach to the reprogramming of cellular states for promoting hair follicle regeneration and preventing scar formation. In the scope of this review, we investigate the contribution of several cell types and molecular mechanisms to WIHN.


Subject(s)
Hair Follicle , Wound Healing , Mice , Animals , Hair Follicle/metabolism , Wound Healing/physiology , Mice, Inbred C57BL , Hair , Skin/metabolism , Mammals
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