Spatially Resolved Proteomic Mapping in Skin Organoid for Hair Follicle Development
Luling Liang, Jia Zhou, Wenjuan Wang, Wenwen Wang, Yi Liu, Jun Li, Ling Leng

TL;DR
This study maps protein changes in skin organoids to understand how hair follicles develop and mature over time.
Contribution
A spatiotemporal proteomic map of hair follicle development in skin organoids is presented.
Findings
Stage-specific proteins involved in RNA processing and lipid metabolism are active during hair germ and peg formation.
Keratinization and extracellular matrix proteins are prominent during hair follicle maturation.
Abnormal expression of CSNK1A1 and SFN is linked to cicatricial alopecia, highlighting their role in hair follicle development.
Abstract
Hair follicle development is a complex, highly regulated process involving interactions between epithelial and mesenchymal cells. However, the specific molecular mechanisms and important biological processes of hair follicle development remain poorly understood. How the extracellular matrix is involved in the hair follicle formation from hair germs remains to be investigated. In this study, we applied spatially resolved proteomic mapping to investigate the process of hair follicle development in skin organoids at different stages: D55, D75, D90, D140, D150, and D170, which corresponds to that from hair germ formation to hair follicle aging. Our analysis identified dynamic changes in protein expression and active protein synthesis during hair follicle appearance. We observed stage-specific protein expression patterns, with hair germ and hair peg formation, enriched in proteins involved…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsHair Growth and Disorders · Skin and Cellular Biology Research · Hedgehog Signaling Pathway Studies
