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Updated: May 8, 2026

Isolation and Culture of Neural Crest Stem Cells from Human Hair Follicles
Published on: April 6, 2013
Neural crest stem cell-specific deletion of the Pygopus2 gene modulates hair follicle development
Alla Narytnyk1, Kevin Gillinder, Bernard Verdon
1Institute of Genetic Medicine, Newcastle University, Centre for Life, Central Parkway, Newcastle upon Tyne, NE1 3BZ, UK.
Abstract:
We show that neural crest stem cells affect mouse hair follicle development. During embryogenesis hair follicle induction is regulated by complex reciprocal and functionally redundant signals between epidermis and dermis, which remain to be fully understood. Canonical Wnt signalling is a hallmark of neural crest cells and also a prerequisite for hair follicle induction prior to hair placode formation in the epidermis. As neural crest stem cells invade the epidermis during early embryonic development we aimed at determining whether neural crest cells affect hair follicle development. To attenuate, but not silence, canonical Wnt signalling specifically in neural crest cells, we analyzed Wnt1-cre(+/-)::Pygo2(-/-) mice in which the β-catenin co-activator gene, Pygopus 2 (Pygo2), is deleted specifically in neural crest cells. Both, hair density and hair thickness were reduced in mutant mice. Furthermore, hair development was delayed and the relative ratio of hair types was affected. There was a decrease in zig-zag hairs and an increase in awl hairs. Mouse neural crest stem cells expressed ectodysplasin, an essential effector in the formation of zig-zag hair. Taken together, our data support the novel notion that neural crest cells are involved in the earliest stages of hair follicle development.
Insights
Neural crest stem cells influence mouse hair follicle development. Disrupting Wnt signaling in these cells impacts hair density, thickness, and type, revealing a novel role in early hair growth.
Area of Science:
- Developmental biology
- Stem cell biology
- Dermatology
Background:
- Hair follicle induction involves complex epidermal and dermal signaling.
- Canonical Wnt signaling is crucial for hair follicle development and is characteristic of neural crest cells.
Purpose of the Study:
- To investigate the role of neural crest stem cells in mouse hair follicle development.
- To determine if neural crest cells impact hair follicle formation and characteristics.
Main Methods:
- Analysis of Wnt1-cre(+/-)::Pygo2(-/-) mice with targeted deletion of the Pygopus 2 (Pygo2) gene in neural crest cells.
- Assessment of hair density, thickness, developmental timing, and hair type ratios.
Main Results:
- Mutant mice exhibited reduced hair density and thickness.
- Hair development was delayed, with altered ratios of zig-zag and awl hairs.
- Neural crest stem cells were found to express ectodysplasin, a key factor in zig-zag hair formation.
Conclusions:
- Neural crest stem cells play a significant role in the early stages of hair follicle development.
- Wnt signaling modulation in neural crest cells affects hair follicle morphogenesis and characteristics.
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