Exposure to vapours of volatile chemicals is a major occupational and environmental health concern. Toxicity testing of volatile organic compounds (VOCs) has always faced significant technological problems due to their high volatility and/or low solubility. The aim of this study was to develop a practical and reproducible in vitro exposure technique for toxicity testing of VOCs. Standard test atmospheres of xylene and toluene were generated in glass chambers using a static method. Human cells including: A549-lung derived cell lines, HepG2-liver derived cell lines and skin fibroblasts, were grown in porous membranes and exposed to various airborne concentrations of selected VOCs directly at the air/liquid interface for 1 h at 37 degrees C. C...
Des centaines de composés chimiques volatils (COV et aldéhydes) sont présents dans l'air que nous re...
A study was conducted to develop a rapid and reliable method for the collection and incorporation of...
Genotoxic carcinogens significantly damage cells and tissues by targeting macromolecules such as pro...
Toxicology studies of adverse effects induced by inhaled chemicals are technically challenging, due ...
Exposure to air contaminants is significantly associated with both short-term and long-term healthef...
Volatile organic compounds (VOCs) such as benzene and toluene, and low molecular weight carbonyls li...
Hundreds of chemicals like volatile organic compounds (VOCs) are present in the indoor environment a...
Using benzene as a candidate air toxicant and A549 cells as an in vitro cell model, we have develope...
Application of in vitro methods for analyzing the toxicological effects of gases and complex mixture...
The aim of this study was to establish a dynamic in vitro model for direct exposure of human cells t...
Inhalation of gases, vapors and can cause a wide range of adverse health effects, ranging from simpl...
The application of in vitro methods to the analysis of the effects of airborne materials is still li...
Cytotoxicity of benzene, toluene, ethylbenzene and xylenes (BTEX) to human lung cells was explored u...
In vitro studies of adverse cellular effects induced by inhalable substances face a number of proble...
Exposure to airborne contaminants is significantly associated with human health risks, ranging from ...
Des centaines de composés chimiques volatils (COV et aldéhydes) sont présents dans l'air que nous re...
A study was conducted to develop a rapid and reliable method for the collection and incorporation of...
Genotoxic carcinogens significantly damage cells and tissues by targeting macromolecules such as pro...
Toxicology studies of adverse effects induced by inhaled chemicals are technically challenging, due ...
Exposure to air contaminants is significantly associated with both short-term and long-term healthef...
Volatile organic compounds (VOCs) such as benzene and toluene, and low molecular weight carbonyls li...
Hundreds of chemicals like volatile organic compounds (VOCs) are present in the indoor environment a...
Using benzene as a candidate air toxicant and A549 cells as an in vitro cell model, we have develope...
Application of in vitro methods for analyzing the toxicological effects of gases and complex mixture...
The aim of this study was to establish a dynamic in vitro model for direct exposure of human cells t...
Inhalation of gases, vapors and can cause a wide range of adverse health effects, ranging from simpl...
The application of in vitro methods to the analysis of the effects of airborne materials is still li...
Cytotoxicity of benzene, toluene, ethylbenzene and xylenes (BTEX) to human lung cells was explored u...
In vitro studies of adverse cellular effects induced by inhalable substances face a number of proble...
Exposure to airborne contaminants is significantly associated with human health risks, ranging from ...
Des centaines de composés chimiques volatils (COV et aldéhydes) sont présents dans l'air que nous re...
A study was conducted to develop a rapid and reliable method for the collection and incorporation of...
Genotoxic carcinogens significantly damage cells and tissues by targeting macromolecules such as pro...