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Short cell cycle duration is a phenotype of human epidermal stem cells
Faculty
Science
Year:
2024
Type of Publication:
ZU Hosted
Pages:
Authors:
Ayman Mohamed MohamedKhalifaSedky
Staff Zu Site
Abstract In Staff Site
Journal:
Stem Cell Research & Therapy BMC, part of springer nature
Volume:
76
Keywords :
Short cell cycle duration , , phenotype , human
Abstract:
Abstract Background A traditional view is that stem cells (SCs) divide slowly. Meanwhile, both embryonic and pluripotent SCs display a shorter cell cycle duration (CCD) in comparison to more committed progenitors (CPs). Methods We examined the in vitro proliferation and cycling behavior of somatic adult human cells using live cell imaging of passage zero keratinocytes and single-cell RNA sequencing. Results We found two populations of keratinocytes: those with short CCD and protracted near exponential growth, and those with long CCD and terminal differentiation. Applying the ergodic principle, the comparative numbers of cycling cells in S phase in an enriched population of SCs confirmed a shorter CCD than CPs. Further, analysis of single-cell RNA sequencing of cycling adult human keratinocyte SCs and CPs indicated a shortening of both G1 and G2M phases in the SC. Conclusions Contrary to the pervasive paradigm, SCs progress through cell cycle more quickly than more differentiated dividing CPs. Thus, somatic human adult keratinocyte SCs may divide infrequently, but divide rapidly when they divide. Additionally, it was found that SC-like proliferation persisted in vitro.
Author Related Publications
Ayman Mohamed MohamedKhalifaSedky, "1464 The effects of decreased sensory innervation and substance P on wound healing and stem cell division fate", Elsevier Inc, 2023
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Ayman Mohamed MohamedKhalifaSedky, "1354 Adult epidermal stem cells maintain their proliferative behavior in vitro", Elsevier Inc, 2023
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Ayman Mohamed MohamedKhalifaSedky, "Neuropeptide substance P alters stem cell fate to aid wound healing and promote epidermal stratification through asymmetric stem cell divisions", Oxford Academic, 2024
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Department Related Publications
Iman Hassan Mohammed Sheikh, "Scanning Electron Microscopic Studies of Gill Arches and Rakers in Relation to Feeding Habits of Some Fresh Water Fishes", Elsevier, 2013
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Iman Hassan Mohammed Sheikh, "Light and scanning electron microscopical studies of the tongue in the hooded crow (Aves: Corvus corone cornix)", Elsevier, 2014
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Iman Hassan Mohammed Sheikh, "Ultramorphological and histological studies on the tongue of the common kingfisher in relation to its feeding", Elsevier, 2014
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