Your browser doesn't support javascript.
loading
Multiscale Approach to Characterize Mechanical Properties of Tissue Engineered Skin.
Tupin, S; Molimard, J; Cenizo, V; Hoc, T; Sohm, B; Zahouani, H.
Affiliation
  • Tupin S; Laboratoire de Tribologie et Dynamique des Systèmes (LTDS, CNRS UMR5513), Université de Lyon, Ecole Centrale de Lyon, ENISE, 69134, Ecully, France.
  • Molimard J; Ecole Nationale Supérieure des Mines, CIS-EMSE, INSERM UMR1059, SAINBIOSE, 42023, Saint-Etienne, France.
  • Cenizo V; BASF Beauty Care Solutions France S.A.S, 69366, Lyon Cedex 07, France.
  • Hoc T; Laboratoire de Tribologie et Dynamique des Systèmes (LTDS, CNRS UMR5513), Université de Lyon, Ecole Centrale de Lyon, ENISE, 69134, Ecully, France.
  • Sohm B; BASF Beauty Care Solutions France S.A.S, 69366, Lyon Cedex 07, France.
  • Zahouani H; Laboratoire de Tribologie et Dynamique des Systèmes (LTDS, CNRS UMR5513), Université de Lyon, Ecole Centrale de Lyon, ENISE, 69134, Ecully, France. hassan.zahouani@ec-lyon.fr.
Ann Biomed Eng ; 44(9): 2851-62, 2016 09.
Article de En | MEDLINE | ID: mdl-26942585
ABSTRACT
Tissue engineered skin usually consist of a multi-layered visco-elastic material composed of a fibrillar matrix and cells. The complete mechanical characterization of these tissues has not yet been accomplished. The purpose of this study was to develop a multiscale approach to perform this characterization in order to link the development process of a cultured skin to the mechanical properties. As a proof-of-concept, tissue engineered skin samples were characterized at different stages of manufacturing (acellular matrix, reconstructed dermis and reconstructed skin) for two different aging models (using cells from an 18- and a 61-year-old man). To assess structural variations, bi-photonic confocal microscopy was used. To characterize mechanical properties at a macroscopic scale, a light-load micro-mechanical device that performs indentation and relaxation tests was designed. Finally, images of the internal network of the samples under stretching were acquired by combining confocal microscopy with a tensile device. Mechanical properties at microscopic scale were assessed. Results revealed that adding cells during manufacturing induced structural changes, which provided higher elastic modulus and viscosity. Moreover, senescence models exhibited lower elastic modulus and viscosity. This multiscale approach was efficient to characterize and compare skin equivalent samples and permitted the first experimental assessment of the Poisson's ratio for such tissues.
Sujet(s)
Mots clés

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Contrainte mécanique / Résistance à la traction / Peau artificielle / Ingénierie tissulaire / Résistance au cisaillement Limites: Adolescent / Humans / Male / Middle aged Langue: En Journal: Ann Biomed Eng Année: 2016 Type de document: Article Pays d'affiliation: France

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Contrainte mécanique / Résistance à la traction / Peau artificielle / Ingénierie tissulaire / Résistance au cisaillement Limites: Adolescent / Humans / Male / Middle aged Langue: En Journal: Ann Biomed Eng Année: 2016 Type de document: Article Pays d'affiliation: France