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SCF/c-kit signaling is required for cyclic regeneration of the hair pigmentation unit
N V Botchkareva1, M Khlgatian, B J Longley
1Department of Dermatology, Boston University School of Medicine, Boston, MA, USA.
Abstract:
Hair graying, an age-associated process of unknown etiology, is characterized by a reduced number and activity of hair follicle (HF) melanocytes. Stem cell factor (SCF) and its receptor c-kit are important for melanocyte survival during development, and mutations in these genes result in unpigmented hairs. Here we show that during cyclic HF regeneration in C57BL/6 mice, proliferating, differentiating, and melanin-producing melanocytes express c-kit, whereas presumptive melanocyte precursors do not. SCF overexpression in HF epithelium significantly increases the number and proliferative activity of melanocytes. During the induced hair cycle in C57BL/6 mice, administration of anti-c-kit antibody dose-dependently decreases hair pigmentation and leads to partially depigmented (gray) or fully depigmented (white) hairs, associated with significant decreases in melanocyte proliferation and differentiation, as determined by immunostaining and confocal microscopy. However, in the next hair cycle, the previously treated animals grow fully pigmented hairs with the normal number and distribution of melanocytes. This suggests that melanocyte stem cells are not dependent on SCF/c-kit and when appropriately stimulated can generate melanogenically active melanocytes. Therefore, the blockade of c-kit signaling offers a fully reversible model for hair depigmentation, which might be used for the studies of hair pigmentation disorders.
Insights
Blocking the c-kit signaling pathway in mice temporarily prevents hair pigmentation by reducing melanocyte activity. Hair color fully returns in the next cycle, indicating a reversible model for studying hair graying.
Area of Science:
- Cell Biology
- Developmental Biology
- Dermatology
Background:
- Hair graying involves reduced melanocyte number and activity in hair follicles.
- Stem cell factor (SCF) and its receptor c-kit are crucial for melanocyte survival and hair pigmentation.
Purpose of the Study:
- Investigate the role of SCF/c-kit signaling in hair follicle melanocyte regulation.
- Determine if c-kit blockade affects hair pigmentation and melanocyte populations.
- Establish a reversible model for hair depigmentation studies.
Main Methods:
- Utilized C57BL/6 mice undergoing induced hair cycles.
- Administered anti-c-kit antibody to block c-kit signaling.
- Assessed hair pigmentation, melanocyte proliferation, and differentiation via immunostaining and confocal microscopy.
Main Results:
- Proliferating melanocytes express c-kit, while precursors do not.
- SCF overexpression increased melanocyte number and proliferation.
- Anti-c-kit antibody treatment caused dose-dependent hair depigmentation (gray/white hairs).
- Depigmentation was linked to decreased melanocyte proliferation and differentiation.
- Hair repigmentation occurred in the subsequent hair cycle, with normal melanocyte numbers.
Conclusions:
- SCF/c-kit signaling is essential for active melanocytes but not for melanocyte stem cells.
- Blocking c-kit signaling provides a reversible model for hair depigmentation.
- This model can aid research into hair pigmentation disorders and graying.