Modelling the human epidermis in vitro: tools for basic and applied research
Open Access
- 28 October 2006
- journal article
- review article
- Published by Springer Nature in Archives of Dermatological Research
- Vol. 298 (8) , 361-369
- https://doi.org/10.1007/s00403-006-0709-6
Abstract
Culture models of tissues and organs are valuable tools developed by basic research that help investigation of the body functions. Modelling is aimed at simplifying experimental procedures in order to better understand biological phenomena, and consequently, when sufficiently characterized, culture models can also be utilized with high potential in applied research. In skin biology and pathology, the development of cultures of keratinocytes as monolayers has allowed the elucidation of most functional and structural characteristics of the cell type. Beside the multiple great successes that have been obtained with this type of culture, this review draws attention on several neglected characteristics of monolayer cultures. The more sophisticated models created in order to reconstruct the fully differentiated epidermis have followed the monolayers. The epidermal reconstruction produces all typical layers found in vivo and thus makes the model much less simple, but only this kind of model allows the study of full differentiation in keratinocyte and production of the cornified barrier. In addition to its interest in basic research, the reconstructed epidermis is currently gaining a lot of interest for applied research, particularly as an alternative to laboratory animals in the chemical and cosmetic industry. Today several commercial providers propose reconstructed skin or epidermis, but in vitro assays on these materials are still under development. In order to be beneficial at long term, the validation of assays must be performed on a material whose availability will not be interrupted. We warn here providers and customers that the longevity of in vitro assays will be guaranteed only if these assays are done with well-described models, prepared according to published procedures, and must consider having a minimum of two independent simultaneous producers of similar material.Keywords
This publication has 47 references indexed in Scilit:
- Proliferation, Cell Cycle Exit, and Onset of Terminal Differentiation in Cultured Keratinocytes: Pre-Programmed Pathways in Control of C-Myc and Notch1 Prevail Over Extracellular Calcium SignalsJournal of Investigative Dermatology, 2005
- A simple reconstructed human epidermis: preparation of the culture model and utilization in in vitro studiesArchives of Dermatological Research, 2004
- Development and characterization of a canine oral mucosa equivalent in a serum-free environmentJournal of Biomedical Materials Research, 2004
- Transcriptional Profiling of Epidermal Keratinocytes: Comparison of Genes Expressed in Skin, Cultured Keratinocytes, and Reconstituted Epidermis, Using Large DNA MicroarraysJournal of Investigative Dermatology, 2003
- Analysis of interleukin-1α (IL-1α) and interleukin-8 (IL-8) expression and release in in vitro reconstructed human epidermis for the prediction of in vivo skin irritation and/or sensitizationToxicology in Vitro, 2003
- Predictive ability of reconstructed human epidermis equivalents for the assessment of skin irritation of cosmeticsToxicology in Vitro, 2002
- Vitamin C enhances differentiation of a continuous keratinocyte cell line (REK) into epidermis with normal stratum corneum ultrastructure and functional permeability barrierHistochemistry and Cell Biology, 2001
- High-Cell-Density Phorbol Ester and Retinoic Acid Upregulate Involucrin and Downregulate Suprabasal Keratin 10 in Autocrine Cultures of Human Epidermal KeratinocytesMolecular Cell Biology Research Communications, 1999
- Basal cell adhesion to a culture substratum controls the polarized spatial organization of human epidermal keratinocytes into proliferating basal and terminally differentiating suprabasal populations.1993
- Structural Integration of Skin Equivalents Grafted to Lewis and Spraque-Dawley RatsJournal of Investigative Dermatology, 1983