Ali Sharique A, Kassab Gulafsha, Husain Tasneem
Department of Biotechnology and Zoology, Saifia College, Barkatullah University Bhopal 462001, India.
Present Address: Department of Biotechnology, Government Arts and Commerce College Sagar, India.
Am J Stem Cells. 2025 Jun 15;14(2):25-33. doi: 10.62347/EOIC7075. eCollection 2025.
Human melanocytes (MCs) and melanocyte stem cells (McSCs) are integral to skin pigmentation and appendage pigmentation, originating embryonically from neural crest cells. In adult skin, McSCs residing in the epidermis sustain the continuous regeneration of functional melanocytes, a process vital for skin homeostasis and repair. Advances in McSC research have unravelled their pivotal roles in combating disorders such as vitiligo, hair greying, impaired wound healing, and melanoma. Previous studies have significantly advanced our knowledge of the cellular and molecular characteristics of this unique stem cell population. However, a comprehensive understanding of their characteristics in melanocyte dysfunctions leading to conditions like vitiligo is still lacking. Dysfunction or depletion of McSCs is linked to these conditions, highlighting their significance in maintaining skin health. Cutting-edge technologies like single-cell RNA sequencing, spatial transcriptomics, gene editing, and whole-genome sequencing have deepened our understanding of McSC biology and their regulatory microenvironment. This review delves into the latest discoveries, offering a comprehensive perspective on McSCs and their therapeutic potential. By identifying specific molecular signals and crosstalk mechanisms, McSC research opens avenues for regenerative medicine applications, including skin repigmentation, tissue repair, and cancer treatment. The field's progression sets the stage for transformative breakthroughs in skin regeneration and broader regenerative therapies.
人类黑素细胞(MCs)和黑素细胞干细胞(McSCs)对于皮肤色素沉着和附属器色素沉着至关重要,它们在胚胎期起源于神经嵴细胞。在成人皮肤中,位于表皮的McSCs维持功能性黑素细胞的持续再生,这一过程对皮肤稳态和修复至关重要。McSC研究的进展揭示了它们在对抗白癜风、头发变白、伤口愈合受损和黑色素瘤等疾病中的关键作用。先前的研究极大地推进了我们对这一独特干细胞群体的细胞和分子特征的认识。然而,对于它们在导致白癜风等病症的黑素细胞功能障碍中的特征仍缺乏全面了解。McSCs的功能障碍或耗竭与这些病症相关,凸显了它们在维持皮肤健康中的重要性。单细胞RNA测序、空间转录组学、基因编辑和全基因组测序等前沿技术加深了我们对McSC生物学及其调节微环境的理解。本综述深入探讨了最新发现,全面阐述了McSCs及其治疗潜力。通过识别特定的分子信号和相互作用机制,McSC研究为再生医学应用开辟了道路,包括皮肤色素再生、组织修复和癌症治疗。该领域的进展为皮肤再生及更广泛的再生疗法带来变革性突破奠定了基础。