AbstractThe increased application of in vitro systems in pharmacology and toxicology requires cell culture systems that facilitate the cultivation process and ensure stable, reproducible and controllable cultivation conditions. Up to now, some devices have been developed for the cultivation of cells under submersed conditions. However, systems meeting the requirements of an air–liquid interface (ALI) cultivation for the special needs of bronchial epithelial cells for example are still lacking. In order to obtain in vivo like organization and differentiation of these cells they need to be cultivated under ALI conditions on microporous membranes in direct contact with the environmental atmosphere. For this purpose, a Long-Term-Cultivation sys...
Respiratory tract infections are of significant concern in the agriculture industry. There is a requ...
AbstractAir–liquid interface cell culture is an organotypic model for study of differentiated functi...
AbstractWe describe an air–liquid interface primary culture method for murine tracheal epithelial ce...
AbstractThe increased application of in vitro systems in pharmacology and toxicology requires cell c...
Current airborne particulate toxicity screens require the culture of a ciliated, pseudostratified ep...
AbstractAn epithelial airway-derived 3-D cell culture model is described. The long lifetime of this ...
The assessment of cytotoxicity of air contaminants such as gaseous or particulate compounds and comp...
There is an urgent need to develop improved, physiologically-relevant in vitro models of airway epit...
Air-liquid interface (ALI) cultures of mouse tracheal epithelial cells (MTEC) are a well-established...
Abstract Background Bronchial epithelium plays a key role in orchestrating innate and adaptive immun...
Stem cell therapies and tissue engineering strategies are required for the clinical treatment of res...
The human respiratory muco-ciliary epithelium consists of different cell types, connected by tight j...
Airway and alveolar epithelial cells are daily exposed to large amounts of inhaled air that contains...
Differentiated human bronchial epithelial cells in air liquid interface cultures (ALI-PBEC) represen...
Traditional stem cell differentiation protocols make use of a variety of cytokines including growth ...
Respiratory tract infections are of significant concern in the agriculture industry. There is a requ...
AbstractAir–liquid interface cell culture is an organotypic model for study of differentiated functi...
AbstractWe describe an air–liquid interface primary culture method for murine tracheal epithelial ce...
AbstractThe increased application of in vitro systems in pharmacology and toxicology requires cell c...
Current airborne particulate toxicity screens require the culture of a ciliated, pseudostratified ep...
AbstractAn epithelial airway-derived 3-D cell culture model is described. The long lifetime of this ...
The assessment of cytotoxicity of air contaminants such as gaseous or particulate compounds and comp...
There is an urgent need to develop improved, physiologically-relevant in vitro models of airway epit...
Air-liquid interface (ALI) cultures of mouse tracheal epithelial cells (MTEC) are a well-established...
Abstract Background Bronchial epithelium plays a key role in orchestrating innate and adaptive immun...
Stem cell therapies and tissue engineering strategies are required for the clinical treatment of res...
The human respiratory muco-ciliary epithelium consists of different cell types, connected by tight j...
Airway and alveolar epithelial cells are daily exposed to large amounts of inhaled air that contains...
Differentiated human bronchial epithelial cells in air liquid interface cultures (ALI-PBEC) represen...
Traditional stem cell differentiation protocols make use of a variety of cytokines including growth ...
Respiratory tract infections are of significant concern in the agriculture industry. There is a requ...
AbstractAir–liquid interface cell culture is an organotypic model for study of differentiated functi...
AbstractWe describe an air–liquid interface primary culture method for murine tracheal epithelial ce...