Literature DB >> 2424602

Stathmokinetic analysis of human epidermal cells in vitro.

M Kimmel, Z Darzynkiewicz, L Staiano-Coico.   

Abstract

Proliferation kinetics of cultured human epidermal cells is characterized in quantitative terms. Three distinct subpopulations of keratinocytes, two of which are cycling, have been discriminated by two parameter DNA/RNA flow cytometry. Based on mathematical modelling, the cell cycle parameters of the cycling subpopulations have been assessed from stathmokinetic data collected at different time points after initiation of cultures (7-15 days). The first subpopulation is composed of low-RNA cells which resemble basal keratinocytes of epidermis and which show some characteristics of stem cells; these cells have a mean generation time of approximately 100 hr. The second subpopulation consists of high-RNA cells, resembling stratum spinosum cells of epidermis, which have an average generation time of approximately 40 hr. The third subpopulation consists of non-cycling cells with G0/G1 DNA content, with cytochemical features similar to those of cells in granular layer of epidermis. The results based on modelling can reproduce with acceptable accuracy the actual growth curve of the cultured cell population. Analysis of kinetics and differentiation of human keratinocytes is of interest in view of the recent application of cultured epidermal cell sheets for transplantation onto burn wounds. The results of this study also reveal the existence of regulatory mechanisms associated with proliferation and differentiation in the cultured epidermal cell population.

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Year:  1986        PMID: 2424602     DOI: 10.1111/j.1365-2184.1986.tb00681.x

Source DB:  PubMed          Journal:  Cell Tissue Kinet        ISSN: 0008-8730


  2 in total

1.  Asymptotic behavior of nonlinear semigroup describing a model of selective cell growth regulation.

Authors:  O Arino; M Kimmel
Journal:  J Math Biol       Date:  1991       Impact factor: 2.259

2.  Flow cytometric identification of proliferative subpopulations within normal human epidermis and the localization of the primary hyperproliferative population in psoriasis.

Authors:  Z Bata-Csorgo; C Hammerberg; J J Voorhees; K D Cooper
Journal:  J Exp Med       Date:  1993-10-01       Impact factor: 14.307

  2 in total

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