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Characterization of a New Reconstructed Full Thickness Skin Model, T-Skin™, and its Application for Investigations of Anti-Aging Compounds

Background: We have characterized a new reconstructed full-thickness skin model, T-Skin™, compared to normal human skin (NHS) and evaluated its use in testing anti-aging compounds. Methods: The structure and layer-specific markers were compared with NHS using histological and immunohistological stai...

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Autores principales: Bataillon, Michel, Lelièvre, Damien, Chapuis, Adeline, Thillou, Fabienne, Autourde, Jean Baptiste, Durand, Steven, Boyera, Nathalie, Rigaudeau, Anne-Sophie, Besné, Isabelle, Pellevoisin, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6540298/
https://www.ncbi.nlm.nih.gov/pubmed/31067675
http://dx.doi.org/10.3390/ijms20092240
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author Bataillon, Michel
Lelièvre, Damien
Chapuis, Adeline
Thillou, Fabienne
Autourde, Jean Baptiste
Durand, Steven
Boyera, Nathalie
Rigaudeau, Anne-Sophie
Besné, Isabelle
Pellevoisin, Christian
author_facet Bataillon, Michel
Lelièvre, Damien
Chapuis, Adeline
Thillou, Fabienne
Autourde, Jean Baptiste
Durand, Steven
Boyera, Nathalie
Rigaudeau, Anne-Sophie
Besné, Isabelle
Pellevoisin, Christian
author_sort Bataillon, Michel
collection PubMed
description Background: We have characterized a new reconstructed full-thickness skin model, T-Skin™, compared to normal human skin (NHS) and evaluated its use in testing anti-aging compounds. Methods: The structure and layer-specific markers were compared with NHS using histological and immunohistological staining. In anti-aging experiments, T-Skin(TM) was exposed to retinol (10 µM) or vitamin C (200 µM) for 5 days, followed by immunohistological staining evaluation. Results: T-Skin™ exhibits a well stratified, differentiated and self-renewing epidermis with a dermal compartment of functional fibroblasts. Epidermal (cytokeratin 10, transglutaminase 1), dermo–epidermal junction (DEJ) (laminin 5, collagen-IV, collagen VII) and dermally-located (fibrillin 1, procollagen I) biomarkers were similar to those in NHS. Treatment of T-Skin™ with retinol decreased the expression of differentiation markers, cytokeratin 10 and transglutaminase 1 and increased the proliferation marker, Ki67, in epidermis basal-layer cells. Vitamin C increased the expression of DEJ components, collagen IV and VII and dermal procollagen 1. Conclusions: T-Skin™ exhibits structural and biomarker location characteristics similar to NHS. Responses of T-Skin™ to retinol and vitamin C treatment were consistent with those of their known anti-aging effects. T-Skin™ is a promising model to investigate responses of epidermal, DEJ and dermal regions to new skin anti-ageing compounds.
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spelling pubmed-65402982019-06-04 Characterization of a New Reconstructed Full Thickness Skin Model, T-Skin™, and its Application for Investigations of Anti-Aging Compounds Bataillon, Michel Lelièvre, Damien Chapuis, Adeline Thillou, Fabienne Autourde, Jean Baptiste Durand, Steven Boyera, Nathalie Rigaudeau, Anne-Sophie Besné, Isabelle Pellevoisin, Christian Int J Mol Sci Article Background: We have characterized a new reconstructed full-thickness skin model, T-Skin™, compared to normal human skin (NHS) and evaluated its use in testing anti-aging compounds. Methods: The structure and layer-specific markers were compared with NHS using histological and immunohistological staining. In anti-aging experiments, T-Skin(TM) was exposed to retinol (10 µM) or vitamin C (200 µM) for 5 days, followed by immunohistological staining evaluation. Results: T-Skin™ exhibits a well stratified, differentiated and self-renewing epidermis with a dermal compartment of functional fibroblasts. Epidermal (cytokeratin 10, transglutaminase 1), dermo–epidermal junction (DEJ) (laminin 5, collagen-IV, collagen VII) and dermally-located (fibrillin 1, procollagen I) biomarkers were similar to those in NHS. Treatment of T-Skin™ with retinol decreased the expression of differentiation markers, cytokeratin 10 and transglutaminase 1 and increased the proliferation marker, Ki67, in epidermis basal-layer cells. Vitamin C increased the expression of DEJ components, collagen IV and VII and dermal procollagen 1. Conclusions: T-Skin™ exhibits structural and biomarker location characteristics similar to NHS. Responses of T-Skin™ to retinol and vitamin C treatment were consistent with those of their known anti-aging effects. T-Skin™ is a promising model to investigate responses of epidermal, DEJ and dermal regions to new skin anti-ageing compounds. MDPI 2019-05-07 /pmc/articles/PMC6540298/ /pubmed/31067675 http://dx.doi.org/10.3390/ijms20092240 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bataillon, Michel
Lelièvre, Damien
Chapuis, Adeline
Thillou, Fabienne
Autourde, Jean Baptiste
Durand, Steven
Boyera, Nathalie
Rigaudeau, Anne-Sophie
Besné, Isabelle
Pellevoisin, Christian
Characterization of a New Reconstructed Full Thickness Skin Model, T-Skin™, and its Application for Investigations of Anti-Aging Compounds
title Characterization of a New Reconstructed Full Thickness Skin Model, T-Skin™, and its Application for Investigations of Anti-Aging Compounds
title_full Characterization of a New Reconstructed Full Thickness Skin Model, T-Skin™, and its Application for Investigations of Anti-Aging Compounds
title_fullStr Characterization of a New Reconstructed Full Thickness Skin Model, T-Skin™, and its Application for Investigations of Anti-Aging Compounds
title_full_unstemmed Characterization of a New Reconstructed Full Thickness Skin Model, T-Skin™, and its Application for Investigations of Anti-Aging Compounds
title_short Characterization of a New Reconstructed Full Thickness Skin Model, T-Skin™, and its Application for Investigations of Anti-Aging Compounds
title_sort characterization of a new reconstructed full thickness skin model, t-skin™, and its application for investigations of anti-aging compounds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6540298/
https://www.ncbi.nlm.nih.gov/pubmed/31067675
http://dx.doi.org/10.3390/ijms20092240
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