Sic transit gloria: farewell to the epidermal transit amplifying cell?
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Summary
It is suggested that epidermal stem cells give rise to transit amplifying cells, which undergo a limited number of cell divisions before initiating terminal differentiation.
- Type
- review
- Published
- 2007-10-11
- Cited by
- 190
- References
- 92
- Access
- Open access
- OpenAlex
- https://openalex.org/W2004087690
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17808584
Keywords
Biology, Compartment (ship), Homeostasis, Cell biology, Stem cell
References
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- Psoriasis, cell proliferation
- Trans-gender induction of hair follicles
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- Talking about a revolution: The impact of site-specific recombinases on genetic analyses in mice.
- Cell replacement in epidermis (keratopoiesis) via discrete units of proliferation.
- Immunochemical demonstration of the clonal organization of chimaeric mouse epidermis.
- Evidence that the centrally and peripherally located cells in the murine epidermal proliferative unit are two distinct cell populations.
- Restoration of growth potential in paraclones of human keratinocytes by a viral oncogene.
- Organization of stem cells and their progeny in human epidermis.
- Socializing with the neighbors: stem cells and their niche.
- Epidermal stem cells arise from the hair follicle after wounding
- In vivo time-lapse imaging of cell divisions during neurogenesis in the developing zebrafish retina.
- Stem cell patterning and fate in human epidermis.
- Distinct stem cell populations regenerate the follicle and interfollicular epidermis.
- Asymmetric cell divisions promote stratification and differentiation of mammalian skin
- A single type of progenitor cell maintains normal epidermis
- Label-retaining cells reside in the bulge area of pilosebaceous unit: implications for follicular stem cells, hair cycle, and skin carcinogenesis.
Cited by
- Role of aPKCl in epidermal morphogenesis and homeostasis
- The Skin: A Home to Multiple Classes of Epithelial Progenitor Cells
- Extracellular Matrix as a Regulator of Epidermal Stem Cell Fate
- Transcriptional control of epidermal stem cells.
- The in vitro plasticity of hair follicle dermal and mesenchymal stem cells
- Caractérisation des cellules souches cancéreuses de la peau humaine : implication de la voie de signalisation de l'Epidermal Growth Factor Receptor dans le contrôle de la différenciation des cellules souches de l'épiderme
- Regulation of Asymmetric Cell Divisions in the Developing Epidermis
- Asymmetric Cell Divisions in the Epidermis
- Stem Cell Networks
- Re‐epithelialization of wounds
- Hypoxic regulation of MYC and epidermal barrier development
- Life or cell death: identifying c-Myc regulated genes in two distinct tissues
- Cancer Networks: A general theoretical and computational framework for understanding cancer
- Cell biology: More than skin deep
- Human Papillomavirus Induced Transformation in Cervical and Head and Neck Cancers
- C/EBPα and β couple interfollicular keratinocyte proliferation arrest to commitment and terminal differentiation
- Local Microenvironment Provides Important Cues for Cell Differentiation in Lingual Epithelia
- Epidermal Notch signalling: differentiation, cancer and adhesion
- Assaying proliferation and differentiation capacity of stem cells using disaggregated adult mouse epidermis
- Understanding the Melanocyte Distribution in Human Epidermis: An Agent-Based Computational Model Approach
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