In this study we validated our 3D-human dermis equivalent (3D-HDE), as an in vitro biological platform to study ECM modification under simulated solar exposure and as screening platform for testing cosmetic agents. 3D-HDE has been realized by means of a tissue engineering bottom-up approach. Due to endogenous and three-dimensional features of this tissue model is possible to analyze structure, composition and ECM assembly, tissue remodeling due to damage and photo-protective action of active compound. Samples have been investigated by Multiphoton Microscopy (MPM), immunofluorescence analyses (IF) and histological analyses. Second harmonic generation (SHG) imaging has been exploited to assess modification in endogenous collagen assembly with...
The current necessity of development new biological in vitro models that mimic the characteristics a...
BackgroundKeloids and hypertrophic scars result from aberrant wound healing and remain a potential c...
Background and objectivesIn order to optimize photorejuvenation of human skin, a method must be deve...
In this study we validated our 3D-human dermis equivalent (3D-HDE), as an in vitro biological platfo...
The realization of biologically relevant human tissue equivalents as an in vitro model to investigat...
La peau joue le rôle de barrière, participe à l'homéostasie générale de l'organisme et à la régulati...
In this research, we used UVA irradiation, which can penetrate into dermis and fibroblasts, the most...
Skin plays the role of a barrier, contributing to the general homeostasis of the body and regulating...
Utra Violet type A (UVA) exposure strongly affects the ageing of human skin by modifying both epider...
International audienceOne of the main functions of dermal fibroblasts is the generation of mechanica...
International audienceMultiphoton microscopy has emerged in the past decade as a promising non-invas...
Daily solar UV radiation has an important impact on skin health. Skin cancer and photoageing are som...
International audienceDermal fibroblasts are responsible for the generation of mechanical forces wit...
The aim of this work is the realization of a three-dimensional human skin equivalent tissue (3D-HSE)...
The current necessity of development new biological in vitro models that mimic the characteristics a...
BackgroundKeloids and hypertrophic scars result from aberrant wound healing and remain a potential c...
Background and objectivesIn order to optimize photorejuvenation of human skin, a method must be deve...
In this study we validated our 3D-human dermis equivalent (3D-HDE), as an in vitro biological platfo...
The realization of biologically relevant human tissue equivalents as an in vitro model to investigat...
La peau joue le rôle de barrière, participe à l'homéostasie générale de l'organisme et à la régulati...
In this research, we used UVA irradiation, which can penetrate into dermis and fibroblasts, the most...
Skin plays the role of a barrier, contributing to the general homeostasis of the body and regulating...
Utra Violet type A (UVA) exposure strongly affects the ageing of human skin by modifying both epider...
International audienceOne of the main functions of dermal fibroblasts is the generation of mechanica...
International audienceMultiphoton microscopy has emerged in the past decade as a promising non-invas...
Daily solar UV radiation has an important impact on skin health. Skin cancer and photoageing are som...
International audienceDermal fibroblasts are responsible for the generation of mechanical forces wit...
The aim of this work is the realization of a three-dimensional human skin equivalent tissue (3D-HSE)...
The current necessity of development new biological in vitro models that mimic the characteristics a...
BackgroundKeloids and hypertrophic scars result from aberrant wound healing and remain a potential c...
Background and objectivesIn order to optimize photorejuvenation of human skin, a method must be deve...