The assessment of cytotoxicity of air contaminants such as gaseous or particulate compounds and complex mixtures has traditionally involved animal experiments, due to the difficulties in exposing cell cultures directly to these substances. New cultivation and exposure techniques enhance the efficiency of in vitro studies, as demonstrated by a new experimental system called CULTEX which allows direct exposure of cells at the air/liquid interface. In this case, human bronchial epithelial cells are cultivated on porous transwell membranes in a device allowing intermittent medium supply. The medium is pumped into a special modular culture unit through the transwell membrane supporting the cells. At certain time intervals, the medium is complete...
Numerous approaches have been employed for testing the biological activity of cigarette smoke in vit...
The epithelium that covers the conducting airways and alveoli is a primary target for inhaled toxic ...
Using benzene as a candidate air toxicant and A549 cells as an in vitro cell model, we have develope...
The application of in vitro methods to the analysis of the effects of airborne materials is still li...
Application of in vitro methods for analyzing the toxicological effects of gases and complex mixture...
In vitro studies of adverse cellular effects induced by inhalable substances face a number of proble...
AbstractThe increased application of in vitro systems in pharmacology and toxicology requires cell c...
For toxicity testing of airborne particles, air-liquid interface (ALI) exposure systems have been de...
Toxicology studies of adverse effects induced by inhaled chemicals are technically challenging, due ...
Genotoxic effects of air contaminants, such as gaseous or particulate compounds, have been difficult...
A novel method for exposing mammalian cells in vitro to air pollutants under conditions resembling t...
The state-of-the-art technique for testing inhalable gases in vitro is the air-liquid-interphase (AL...
A computer-controlled spray-generating and spray-exposure unit called RHINOCON was designed and cons...
The state of the art for cell-based in vitro investigations of airborne and inhalable material is "a...
In recent years there has been lot of effort to develop more relevant and real life resembling expos...
Numerous approaches have been employed for testing the biological activity of cigarette smoke in vit...
The epithelium that covers the conducting airways and alveoli is a primary target for inhaled toxic ...
Using benzene as a candidate air toxicant and A549 cells as an in vitro cell model, we have develope...
The application of in vitro methods to the analysis of the effects of airborne materials is still li...
Application of in vitro methods for analyzing the toxicological effects of gases and complex mixture...
In vitro studies of adverse cellular effects induced by inhalable substances face a number of proble...
AbstractThe increased application of in vitro systems in pharmacology and toxicology requires cell c...
For toxicity testing of airborne particles, air-liquid interface (ALI) exposure systems have been de...
Toxicology studies of adverse effects induced by inhaled chemicals are technically challenging, due ...
Genotoxic effects of air contaminants, such as gaseous or particulate compounds, have been difficult...
A novel method for exposing mammalian cells in vitro to air pollutants under conditions resembling t...
The state-of-the-art technique for testing inhalable gases in vitro is the air-liquid-interphase (AL...
A computer-controlled spray-generating and spray-exposure unit called RHINOCON was designed and cons...
The state of the art for cell-based in vitro investigations of airborne and inhalable material is "a...
In recent years there has been lot of effort to develop more relevant and real life resembling expos...
Numerous approaches have been employed for testing the biological activity of cigarette smoke in vit...
The epithelium that covers the conducting airways and alveoli is a primary target for inhaled toxic ...
Using benzene as a candidate air toxicant and A549 cells as an in vitro cell model, we have develope...