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.

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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

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article

Immune-Cell Profiling Identifies a Defective Macrophage-Maresin 1 Resolution Axis as a Pathogenic Driver and Therapeutic Target in Vitiligo and Canities

Pingyu Zhou, Youwen Zhou, Gigi Leung, Mehran Ghoreishi et al.
Journal of Cutaneous Medicine and Surgery
melanin and skin pigmentation
article

Immune-Cell Profiling Identifies a Defective Macrophage-Maresin 1 Resolution Axis as a Pathogenic Driver and Therapeutic Target in Vitiligo and Canities

Pingyu Zhou, Youwen Zhou, Gigi Leung, Mehran Ghoreishi, Qianli Yang, 苏铭婉, Jan Dutz, Xuejun Zhang, Guohong Zhang, Laura Sly, Jinhua Xu, Angela Cai, Ying Shi
article en

Abstract

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.

Journal of Cutaneous Medicine and Surgery
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)
Canadian Dermatology Foundation, Michael Smith Health Research BC, National Natural Science Foundation of China, Canadian Institutes of Health Research
Life in Land
Openalex Percentile: Top 14%
melanin and skin pigmentation
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