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Updated: Sep 11, 2026

Direct Reprogramming of Mouse Fibroblasts into Melanocytes
Published on: August 27, 2021
Epigenetic reprogramming in autoimmune and immune-mediated skin disease
Sophie M Bilik1,2, Garrett P Kraft1,2, Isabella Sharifi2
1Dr. Phillip Frost Department of Dermatology and Cutaneous Surgery, University of Miami Miller School of Medicine, Miami, FL, United States.
Background:
Autoimmune skin diseases exhibit chronicity and site-specific relapse that are not fully explained by genetic susceptibility or cytokine signaling alone. Emerging evidence suggests that epigenetic reprogramming of skin-resident immune cells contributes to disease persistence and recurrence.
Methods:
We conducted a structured narrative review of the human literature by searching PubMed for studies published from database inception through March 1, 2026. The literature search was performed between February 1 and March 1, 2026 and focused on epigenetic mechanisms across major autoimmune dermatoses, including DNA methylation, histone modification, chromatin accessibility, non-coding RNA regulation, and emerging single-cell and spatial epigenomic technologies.
Results:
Current evidence suggests stable chromatin remodeling in keratinocytes and immune cells, including tissue-resident memory T cells, that persists after clinical resolution and may facilitate rapid disease reactivation. Environmental exposures further reinforce these epigenetic programs, contributing to disease heterogeneity, chronicity, and site-specific relapse.
Conclusion:
Collectively, these findings are consistent with a model in which autoimmune skin diseases are maintained by maladaptive epigenetic memory. Although causal inference remains limited by the relative scarcity of cell-type-resolved human epigenomic data and the predominance of cross-sectional studies, this framework suggests that achieving durable therapeutic remission may require reprogramming pathogenic chromatin states rather than solely suppressing inflammatory pathways.
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