Analysis and pharmacological modulation of senescence in human epithelial stem cells

Human epithelial stem cells (ESCs) are characterized by long‐term regenerative properties, much dependent on the tissue of origin and varying during their lifespan. We analysed such variables in cultures of ESCs isolated from the skin, conjunctiva, limbus and oral mucosa of healthy donors and patien...

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Veröffentlicht in:Journal of cellular and molecular medicine 2022-07, Vol.26 (14), p.3977-3994
Hauptverfasser: Barbaro, Vanessa, Orvieto, Antonio, Alvisi, Gualtiero, Bertolin, Marina, Bonelli, Filippo, Liehr, Thomas, Harutyunyan, Tigran, Kankel, Stefanie, Joksic, Gordana, Ferrari, Stefano, Daniele, Elena, Ponzin, Diego, Bettio, Daniela, Salviati, Leonardo, Di Iorio, Enzo
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Sprache:eng
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Zusammenfassung:Human epithelial stem cells (ESCs) are characterized by long‐term regenerative properties, much dependent on the tissue of origin and varying during their lifespan. We analysed such variables in cultures of ESCs isolated from the skin, conjunctiva, limbus and oral mucosa of healthy donors and patients affected by ectrodactyly‐ectodermal dysplasia‐clefting syndrome, a rare genetic disorder caused by mutations in the p63 gene. We cultured cells until exhaustion in the presence or in the absence of DAPT (γ‐secretase inhibitor; N‐[N‐(3, 5‐difluorophenacetyl)‐L‐alanyl]‐S‐phenylglycine T‐butyl ester). All cells were able to differentiate in vitro but exhibited variable self‐renewal potential. In particular, cells carrying p63 mutations stopped prematurely, compared with controls. Importantly, administration of DAPT significantly extended the replicative properties of all stem cells under examination. RNA sequencing analysis revealed that distinct sets of genes were up‐ or down‐regulated during their lifetime, thus allowing to identify druggable gene networks and off‐the‐shelf compounds potentially dealing with epithelial stem cell senescence. These data will expand our knowledge on the genetic bases of senescence and potentially pave the way to the pharmacological modulation of ageing in epithelial stem cells.
ISSN:1582-1838
1582-4934
DOI:10.1111/jcmm.17434