The three-dimensional culturing of human keratinocytes at the air-liquid interface yields a fully stratified epidermis including a functional stratum corneum and thus enables the study on epidermal structure and function in the context of biomedical, toxicological and pharmaceutical sciences. Here we provide a step-by-step detailed protocol for the isolation of human primary keratinocytes and the development of human epidermal equivalents generated from primary keratinocytes or immortalized keratinocytes (N/TERT-1; N/TERT-2G), including widely accepted procedures for the analysis of barrier function, tissue morphology, cell proliferation, and gene expression
Because engineered tissues are designed for clinical applications in humans, a major problem is the ...
Currently, human skin equivalents (HSEs) used for in vitro assays (e.g., for wound healing) make use...
In this thesis, a novel 3D polystyrene scaffold was investigated for use as a 3D cell culture materi...
A three-dimensional human epidermis model reconstructed from neonatal primary keratinocytes is prese...
A three-dimensional human epidermis model reconstructed from neonatal primary keratinocytes is prese...
Contains fulltext : 177146.pdf (publisher's version ) (Open Access)The strong soci...
Nowadays, human skin constructs (HSCs) are required for biomaterials, pharmaceuticals and cosmetics ...
Cornification and epidermal barrier defects are associated with a number of clinically diverse skin ...
SummaryCornification and epidermal barrier defects are associated with a number of clinically divers...
Epidermal cell models are critical for studying skin biology. The gold standard used by the scientif...
A fully differentiated epithelium having the features of epidermis was obtained in vitro by culturin...
The aim of this work is the realization of a three-dimensional human skin equivalent tissue (3D-HSE)...
Recreating the structure of human tissues in the laboratory is valuable for fundamental research, te...
The epidermis (including stratum corneum) of human keratinocytes cultured at the air-liquid interfac...
Currently, human skin equivalents (HSEs) used for in vitro assays (e.g., for wound healing) make use...
Because engineered tissues are designed for clinical applications in humans, a major problem is the ...
Currently, human skin equivalents (HSEs) used for in vitro assays (e.g., for wound healing) make use...
In this thesis, a novel 3D polystyrene scaffold was investigated for use as a 3D cell culture materi...
A three-dimensional human epidermis model reconstructed from neonatal primary keratinocytes is prese...
A three-dimensional human epidermis model reconstructed from neonatal primary keratinocytes is prese...
Contains fulltext : 177146.pdf (publisher's version ) (Open Access)The strong soci...
Nowadays, human skin constructs (HSCs) are required for biomaterials, pharmaceuticals and cosmetics ...
Cornification and epidermal barrier defects are associated with a number of clinically diverse skin ...
SummaryCornification and epidermal barrier defects are associated with a number of clinically divers...
Epidermal cell models are critical for studying skin biology. The gold standard used by the scientif...
A fully differentiated epithelium having the features of epidermis was obtained in vitro by culturin...
The aim of this work is the realization of a three-dimensional human skin equivalent tissue (3D-HSE)...
Recreating the structure of human tissues in the laboratory is valuable for fundamental research, te...
The epidermis (including stratum corneum) of human keratinocytes cultured at the air-liquid interfac...
Currently, human skin equivalents (HSEs) used for in vitro assays (e.g., for wound healing) make use...
Because engineered tissues are designed for clinical applications in humans, a major problem is the ...
Currently, human skin equivalents (HSEs) used for in vitro assays (e.g., for wound healing) make use...
In this thesis, a novel 3D polystyrene scaffold was investigated for use as a 3D cell culture materi...