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Spatiotemporal atlas resolves the mesenchymal-epithelial stem cell axis governing human hair follicle aging and pathology

X. Wei, Y. Xu, J. Du, R. Li, Z. Zhou, Y. Yu, Z. Yuan, H. Cheng, Y. Jiang, F. Zhu, P. Cai, H. Shen, S. Wang, Y. Yuan, X. Liu, T. Yang, Y. Huang, Y. Lai, S. Wang, H. Li, J. Xie, Y. Gu, D. Niu, Z. Wang, X. Xu, L. Liu, M. Lei, P. Guo, J. Zhang

Preprint

In the authors' words

How adult stem cell populations coordinate tissue regeneration across physiological and pathological states remains unclear. Hair follicles contain epithelial and mesenchymal stem cells that codetermine hair regeneration. Here, we integrate a multimodal spatiotemporal atlas with functional validation to define the mesenchymal-epithelial stem cell dynamics governing human hair follicle homeostasis, aging, and androgenetic alopecia. Aging is characterized by passive depletion of hDSC-derived regenerative cues, whereas AGA involves a shift of hDSC toward an inhibitory signaling hub that promotes HFSC dysfunction. We further pinpoint hDSC-secreted PTN as a key regenerative factor that promotes hair growth and counteracts androgen-induced growth suppression. This study provides a holistic framework of adult stem cell crosstalk across physiological and pathological states, offering a mechanistic roadmap to reinstate tissue regeneration.

Main resultThe abstract does not state a limitation.

Appeared: Thursday, September 24. bioRxiv. Preprint, not yet peer-reviewed.

DOI: 10.64898/2026.09.22.753364