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Nerve Stem Cell Differentiation by a One-step Cold Atmospheric Plasma Treatment In Vitro
Published on: January 11, 2019
Cold atmospheric plasma (CAP) stimulates melanoblast-to-melanocyte differentiation via PRKCQ upregulation and NF-κB
Ying Zeng1,2, Ronghua Pan1, Dong Li1
1Department of Dermatology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei 430030, P.R. China.
Abstract:
Vitiligo, a chronic and recurrent skin disorder characterized by cosmetically disfiguring depigmentation, poses a significant challenge in dermatological treatment. Cold atmospheric plasma (CAP), a promising modality in biomedical applications, has been reported to promote repigmentation in vitiligo lesions. Herein, we investigate how CAP promotes repigmentation. A murine model of vitiligo was established via topical administration of hydroquinone cream and subsequently treated with CAP jet to the depigmented areas. Immortalized melanoblasts (iMC23) were used as the in vitro model, with CCK-8 assays and flow cytometry used for functional analyses. The results showed that CAP treatment enhanced melanoblast-to-melanocyte differentiation in vitiligo mice, particularly within the hair follicle bulge. In iMC23 cells, CAP promoted cell survival, melanogenic gene expression, and melanin synthesis. Mechanistically, CAP upregulated PRKCQ expression and activated NF-κB signaling. In conclusion, our findings underscore the therapeutic potential of CAP in vitiligo management, highlighting its role in driving melanoblast-to-melanocyte differentiation.

