Function-driven geometry directs human pilosebaceous unit development

Journal: bioRxiv
Published Date:

Abstract

Single-cell technologies have generated cell censuses of tissues, however, how tissue geometry reflects functional needs remains poorly characterized. The human pilosebaceous unit offers a tractable model, a prenatally-formed complex mini-organ combining hair and sebum production with a stem cell reservoir. Using histomorphology, spatial transcriptomics, and single-cell multiomics on the same human prenatal scalp skin samples (8-19 post-conception weeks), integrated and analyzed using machine learning approaches, we built a spatiotemporal map of pilosebaceous unit development. We demonstrate that epithelial-mesenchymal interactions coordinate cellular fate and organogenesis, using an in vitro hair-bearing skin organoid model to validate this tissue-patterning. In addition, we show sebaceous gland developmental programmes are overcome during tumor formation. Our large-scale multi-modal analysis provides a unique framework for understanding form and function of tissues with applications in tissue engineering and pathology.

Authors

  • Farr
  • E.; Kritikaki
  • E.; Chroscik
  • M.; Admane
  • C.; Graves
  • E.; Tudor
  • C.; Chan
  • H. M.; Boccacino
  • J.; McWilliam
  • J.; Torabi
  • F.; Chakala
  • K.; Basurto-Lozada
  • D.; Li
  • T.; Binkevich
  • A.; Predeus
  • A.; Prete
  • M.; Panamarova
  • M.; Adao
  • D.; Evans
  • K.; Stewart
  • K.; Steele
  • L.; Winheim
  • E.; Gopee
  • N. H.; Stephenson
  • E.; Patel
  • M.; Hale
  • C.; Gambardella
  • L.; Harpur
  • B.; Smith
  • C.; Horsfall
  • D.; Shanmugiah
  • V.; Parts
  • L.; Adams
  • D. J.; Kasper
  • M.; Dugourd
  • A.; Saez-Rodriguez
  • J.; Foster
  • A. R.; Haniffa
  • M.