Unanchored by two hits: interferon-γ and mechanical stress synergize to undermine melanocyte adhesion and promote vitiligo

黑素细胞 白癜风 基底膜 免疫学 细胞生物学 细胞粘附分子 焦点粘着 整合素 离体 医学 生物 发病机制 人体皮肤 黑色素 色素沉着障碍 细胞粘附 粘附 病理 皮肤表皮交界处 角质形成细胞 脱色 信号转导
作者
Eun Jung Lee,Il Joo Kwon,Ji Young Kim,S. Y. Park,Hui-Ting Han,Shinwon Hwang,Yu Jeong Bae,A-Ram Kim,Jamal Mohammed Alqahtani,Dong Hyun Kim,Jinu Lee,Si‐Hyung Lee,Sang Ho Oh
出处
期刊:British Journal of Dermatology [Oxford University Press]
卷期号:195 (1): 109-121 被引量:1
标识
DOI:10.1093/bjd/ljag113
摘要

BACKGROUND: Vitiligo is a chronic depigmentation disorder caused by selective melanocyte loss. Autoreactive CD8+ T cells are known contributors, but impaired melanocyte-keratinocyte adhesion due to E-cadherin dysfunction has also been implicated. OBJECTIVES: This study aimed to identify the key adhesion molecules mediating melanocyte-basement membrane interactions and to investigate their modulation in response to vitiligo-associated factors, including IFNγ and mechanical stress. METHODS: Primary human epidermal melanocytes (PHEMs) and ex vivo human skin tissues were exposed to IFNγ and mechanical stress. To identify key molecules involved in melanocyte adhesion, we integrated RNA sequencing data from prior studies with antibody array profiling. The involvement of focal adhesion-associated proteins in melanocyte-basement membrane attachment was further assessed by confocal imaging of vitiligo patient skin, revealing a reduction in these molecules. RESULTS: Exposure to interferon gamma (IFNγ) and mechanical stress reduced focal adhesion kinase (FAK) and integrin β1 (ITGβ1) expression in melanocytes and ex vivo human skin, increasing melanocyte detachment. Both molecules were also decreased in basal keratinocytes and melanocytes from the skin of vitiligo patients compared to healthy controls. Pre-treatment with the JAK inhibitor baricitinib, used in vitiligo therapy, reduced melanocyte detachment through a cathepsin L (CTSL)-dependent mechanism. CONCLUSIONS: IFNγ and mechanical stress contribute to melanocyte detachment from the basement membrane via CTSL, FAK, and ITGβ1 regulation. These findings highlight the importance of melanocyte-basement membrane adhesion in vitiligo pathogenesis and offer insight into the Koebner phenomenon in disease progression.
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