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Deciphering skin re-pigmentation patterns in vitiligo: an update on the cellular and molecular events involved
Tie-Chi Lei1, Vincent J Hearing2
1Department of Dermatology, Renmin Hospital of Wuhan University, Wuhan, Hubei 430060, China.
Abstract:
Current treatment of vitiligo is still a great challenge, since most cases of vitiligo have variable re-pigmentation outcomes due to their unpredictable responses to existing therapeutic regimens. There is an urgent need to identify this re-pigmentation process and to develop novel therapies. This review illustrates the most current research and latest understanding of vitiligo skin re-pigmentation and related regulatory mechanisms. Literature was collected from PubMed until January 2020, using the search terms including "vitiligo," "re-pigmentation," "phototherapy," "narrow-band ultraviolet B, " "excimer," "fractional carbon dioxide laser," and "melanocyte stem cells." Literature was mainly derived from English articles. Article type was not limited. Emerging evidence suggests that patients with vitiligo present various re-pigmentation patterns following ultraviolet B phototherapy, which relies on different cell reservoirs from the perilesional margins and/or from uninvolved hair follicles to replenish functional melanocytes that are lost in vitiliginous skin. The following events are likely to be involved in this re-pigmentation process, including: 1) changes in the paracrine secretion and distribution of transforming growth factor-β1 in the bulge area and in the epidermis; 2) the enhanced transfer of dermal pro-melanogenic growth factors to the epidermis; and 3) the induction of a C-X-C motif chemokine ligand (CXCL) 12-enriched micro-environment that efficiently recruits CXCR4- or CXCR7-positive melanocytes. Ongoing studies on the cellular and molecular events underlying vitiligo re-pigmentation will help design new therapeutic strategies to improve treatment outcomes.
Insights
Vitiligo re-pigmentation involves melanocyte stem cells and growth factors. Understanding these mechanisms can lead to better treatments for vitiligo.
Area of Science:
- Dermatology and Cellular Biology
- Investigating the cellular and molecular mechanisms of skin repigmentation in vitiligo.
Background:
- Vitiligo treatment presents challenges due to variable patient responses to therapies.
- There is a critical need to understand vitiligo repigmentation for developing novel therapeutic strategies.
Purpose of the Study:
- To review current research on vitiligo skin repigmentation and its regulatory mechanisms.
- To explore the cellular and molecular events underlying successful repigmentation therapies.
Main Methods:
- Literature search of PubMed until January 2020 using keywords: vitiligo, repigmentation, phototherapy, narrow-band ultraviolet B, excimer, fractional carbon dioxide laser, melanocyte stem cells.
- Analysis of English-language articles of all types.
Main Results:
- Ultraviolet B phototherapy induces varied repigmentation patterns in vitiligo patients.
- Repigmentation relies on melanocyte reservoirs from skin margins and hair follicles.
- Key events include TGF-β1 modulation, enhanced dermal-epidermal growth factor transfer, and CXCL12/CXCR4/CXCR7 pathway activation for melanocyte recruitment.
Conclusions:
- Understanding the cellular and molecular basis of vitiligo repigmentation is crucial.
- This knowledge will guide the development of improved therapeutic strategies for vitiligo.
- Targeting specific pathways may enhance melanocyte regeneration and improve treatment outcomes.
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