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Enrichment of putative human epidermal stem cells based on cell size and collagen type IV adhesiveness 被引量:8

Enrichment of putative human epidermal stem cells based on cell size and collagen type IV adhesiveness
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摘要 The enrichment and identification of human epidermal stem cells (EpSCs) are of paramount importance for both basic research and clinical application. Although several approaches for the enrichment of EpSCs have been established, enriching a pure population of viable EpSCs is still a challenging task. An improved approach is worth developing to enhance the purity and viability of EpSCs. Here we report that cell size combined with collagen type IV adhesiveness can be used in an improved approach to enrich pure and viable human EpSCs. We separated the rap- idly adherent keratinocytes into three populations that range in size from 5-7 μm (population A), to 7-9 μm (population B), to ≥9μm (population C) in diameter, and found that human putative EpSCs could be further enriched in population A with the smallest size. Among the three populations, population A displayed the highest density of plintegrin receptor, contained the highest percentage of cells in G0/G1 phase, showed the highest nucleus to cytoplasm ratio, and possessed the highest colony formation efficiency (CFE). When injected into murine blastocysts, these cells participated in multi-tissue formation. More significantly, compared with a previous approach that sorted putative EpSCs according to pl-integrin antibody staining, the viability of the EpSCs enriched by the improved approach was significantly enhanced. Our results provide a putative strategy for the enrichment of human EpSCs, and encourage further study into the role of cell size in stem cell biology.
出处 《Cell Research》 SCIE CAS CSCD 2008年第3期360-371,共12页 细胞研究(英文版)
关键词 epidermal stem cells collagen type cell size Β1-INTEGRIN 表皮干细胞 骨胶原 β1-整联蛋白 细胞生物学
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  • 1Watt FM. Epidermal stem cells: marker, patterning and the control of stem cell fate. Philos Trans R Soc London B 1998; 353:831-837.
  • 2Jones PH, Watt FM. Separation of human epidermal stem cells from transit amplifying cells on the basis of differences in integrin function and expression. Cell 1993; 73:713-724.
  • 3Lajtha LG. Stem cell concepts. Differenation 1979; 14:23-34.
  • 4Clayton E, Doupe DP, Klein AM, Winton D J, Simons BD, Jones PH. A single type of progenitor cell maintains normal epidermis. Nature 2007; 446:185-189.
  • 5Bickenbach JR, Stern MM, Grinnell KL, Manuel A, Chinnathambi S. Epidermal stem cells have the potential to assist in healing damaged tissues. J Invest Dermatol Symp Proc 2006; 11:118-123.
  • 6Motlik J, Klima J, Dvorankova B, Smetana K Jr. Porcine epidermal stem cells as a biomedical model for wound healing and normal/malignant epithelial cell propagation. Theriogenology 2007; 67:105-111.
  • 7Chebotaev D, Yemelyanov A, Zhu L, Lavker RM, Budunova I. The tumor suppressor effect of the glucocorticoid receptor in skin is mediated via its effect on follicular epithelial stem cells. Oncogene 2007; 26:3060-3068.
  • 8Spoler F, Forst M, Marquardt Y, et al. High-resolution optical coherence tomography as a non-destructive monitoring tool for the engineering of skin equivalents. Skin Res Technol.2006; 12:261-267.
  • 9Andreadis ST. Gene-modified tissue-engineered skin: the next generation of skin substitutes. Adv Biochem Eng Biotechnol 2007; 103:241-274.
  • 10Li A, Simmons P J, Kaur P. Identification and isolation of candidate human keratinocyte stem cells based on cell surface phenotype. Proc Natl Acad Sci USA 1998; 95:3902-3907.

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