ANTICYTOSKELETAL DRUGS AND TIME CULTURE EFFECTS UPON THE MECHANICAL BEHAVIOR OF DERMAL EQUIVALENT TISSUE SUBMITTED TO UNCONFINED COMPRESSION LOADING

Author:

RAMTANI S.1,GEIGER D.2

Affiliation:

1. Laboratoire des Propriétés Mécaniques et, Thermodynamiques des Matériaux, CNRS UPR 9001, Institut Galilée, Université Paris Nord, 99 Avenue J-B Clément, 93430 Villetaneuse, France

2. Laboratoire de Biomécanique Biomatériaux Ostéo-Articulaires, CNRS (SPI) UMR 7052, Faculté des Sciences et Technologie, Université Paris Val de Marne, 61 Avenue du Général De Gaulle, 94010 Créteil Cedex, France

Abstract

The dermal equivalent (DE), a dermis substitute consisting of human skin fibroblasts growing into a three-dimensional collagen matrix, is extensively used in many applications: wound-healing response, pharmacological studies, skin grafting, fibroblast proliferation and migration, extracellular matrix remodeling, and efficacy of cosmetic products. The widespread growth of numerical modeling in biomechanical research has placed a heightened emphasis on accurate material property data for soft biological tissues, in particular for equivalent dermis which has not been so thoroughly investigated. Under unconfined compression loading, the effects of the strain rate, time culture, and cytoskeleton-disrupting agents are experimentally investigated. In order to model the observed mechanical behavior of the DE under the above conditions, the internal state variable approach is adopted for finite deformation viscoelasticity and the optimized material parameters are identified with respect to the stated thermodynamic restriction (i.e. positive viscous dissipation).

Publisher

World Scientific Pub Co Pte Ltd

Subject

Biomedical Engineering

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