Immune-Cell Profiling Identifies a Defective Macrophage-Maresin 1 Resolution Axis as a Pathogenic Driver and Therapeutic Target in Vitiligo and Canities
Impact Statement:Vitiligo and canities are pigmentary disorders caused by acquired melanocyte loss driven by oxidative stress and immune-mediated injury. We identify a defective macrophage-maresin 1 immune-resolution axis as a shared pathogenic mechanism, supporting therapeutic strategies that move beyond immune suppression toward melanocyte protection and restoration of pro-resolving macrophage function. BACKGROUND: Current models explain melanocyte loss through cytotoxic immunity, oxidative injury, intrinsic melanocyte vulnerability, and melanocyte stem-cell exhaustion; however, whether failed inflammatory resolution contributes to disease remains poorly defined. OBJECTIVE: To define the immune-cell landscape of vitiligo skin and determine whether the M2 macrophage-maresin 1 axis regulates melanocyte homeostasis. METHODS: We performed xCell transcriptome-based cellular deconvolution using full-thickness biopsies from 36 paired lesional and non-lesional vitiligo sites and 9 healthy controls. Macrophage polarization was validated by flow cytometry. Maresin 1 was evaluated in C57BL/6J spontaneous canities, tyrosinase-related protein 2 (TRP-2) immunization-induced vitiligo, and primary human melanocyte stress assays. RESULTS: Lesional vitiligo skin showed broad immune activation, including enrichment of adaptive immune cells, monocytes, macrophages, and M1 macrophages, with depletion of melanocytes and M2 macrophages. Flow cytometry confirmed reduced CD163+ M2 macrophages, increased CD80+ M1 macrophages, and a reduced M2/M1 ratio. Canities mice had reduced serum maresin 1. Exogenous maresin 1 increased skin-resident M2 macrophages, reduced M1 macrophages, decreased TRP-2-induced depigmentation, prevented canities, and enhanced melanocyte survival under growth factor deprivation and oxidative stress. CONCLUSION: Defective M2 macrophage-maresin 1 immune resolution is an unrecognized mechanism of melanocyte loss and a translational target for acquired melanocyte-loss disorders, including vitiligo, canities, and related pigmentary diseases clinically.
Authors
- Pingyu Zhou (ORCID: https://orcid.org/0000-0002-9623-4201)
- Youwen Zhou (ORCID: https://orcid.org/0000-0001-7633-4136)
- Gigi Leung (ORCID: https://orcid.org/0000-0002-0196-0164)
- Mehran Ghoreishi
- Qianli Yang
- 苏铭婉
- Jan Dutz
- Xuejun Zhang
- Guohong Zhang
- Laura Sly
- Jinhua Xu
- Angela Cai
- Ying Shi
Institutions
- Vancouver Coastal Health (CA)
- University of British Columbia (CA)
- Anhui Medical University (CN)
- Peking University (CN)
- Fudan University (CN)
- Shantou University (CN)
- Shantou University Medical College (CN)
- Peking University First Hospital (CN)
- First Affiliated Hospital of Anhui Medical University (CN)
- BC Children's Hospital (CA)
- Shanghai Skin Disease Hospital (CN)
- Huashan Hospital (CN)
Publication Details
- Journal
- Journal of Cutaneous Medicine and Surgery
- Published
- 2026-09-15
- DOI
- https://doi.org/10.1177/12034754261475634
- Primary Topic
- melanin and skin pigmentation
- Type
- article
- Field-Weighted Citation Impact
- 0.00
Funders
- Canadian Dermatology Foundation
- Michael Smith Health Research BC
- National Natural Science Foundation of China
- Canadian Institutes of Health Research