This study used toxicogenomics to identify the complex biological response of human lung BEAS-2B cells treated with organic components of particulate matter in the exhaust of a diesel engine. First, we characterized particles from standard diesel (B0), biodiesel (methylesters of rapeseed oil) in its neat form (B100) and 30% by volume blend with diesel fuel (B30), and neat hydrotreated vegetable oil (NEXBTL100). The concentration of polycyclic aromatic hydrocarbons (PAHs) and their derivatives in organic extracts was the lowest for NEXBTL100 and higher for biodiesel. We further analyzed global gene expression changes in BEAS-2B cells following 4 h and 24 h treatment with extracts. The concentrations of 50 µg extract/mL induced a similar mole...
Diesel emissions have a high level of particulate matter which can cause inflammation and oxidative ...
Biodiesel engines produce several intermediate species, which can potentially harm the human health....
Introduction: Diesel particulate matter can cause inflammation and oxidative stress in the airways. ...
This study used toxicogenomics to identify the complex biological response of human lung BEAS-2B cel...
This study used toxicogenomics to identify the complex biological response of human lung BEAS-2B cel...
Motor vehicle emissions substantially contribute to air pollution worldwide and cause serious health...
BACKGROUND: Combustion of biodiesels in place of fossil diesel (FD) has been proposed as a method of...
There is increasing demand for renewable energy and the use of biodiesel in traffic is a major optio...
An analysis of the toxic effects of emissions should reflect real traffic conditions. The exhaust em...
Alternative fuels are increasingly combusted in diesel- and gasoline engines and the contribution of...
Abstract Background Combustion of biodiesels in place of fossil diesel (FD) has been proposed as a m...
<p>The physicochemical properties of combustion particles that promote lung toxicity are not fully u...
INTRODUCTION: Diesel emissions have a high level of particulate matter which can cause inflammation ...
The physicochemical properties of combustion particles that promote lung toxicity are not fully unde...
Analysis of fuel emissions is crucial for understanding the pathogenesis of mortality because of air...
Diesel emissions have a high level of particulate matter which can cause inflammation and oxidative ...
Biodiesel engines produce several intermediate species, which can potentially harm the human health....
Introduction: Diesel particulate matter can cause inflammation and oxidative stress in the airways. ...
This study used toxicogenomics to identify the complex biological response of human lung BEAS-2B cel...
This study used toxicogenomics to identify the complex biological response of human lung BEAS-2B cel...
Motor vehicle emissions substantially contribute to air pollution worldwide and cause serious health...
BACKGROUND: Combustion of biodiesels in place of fossil diesel (FD) has been proposed as a method of...
There is increasing demand for renewable energy and the use of biodiesel in traffic is a major optio...
An analysis of the toxic effects of emissions should reflect real traffic conditions. The exhaust em...
Alternative fuels are increasingly combusted in diesel- and gasoline engines and the contribution of...
Abstract Background Combustion of biodiesels in place of fossil diesel (FD) has been proposed as a m...
<p>The physicochemical properties of combustion particles that promote lung toxicity are not fully u...
INTRODUCTION: Diesel emissions have a high level of particulate matter which can cause inflammation ...
The physicochemical properties of combustion particles that promote lung toxicity are not fully unde...
Analysis of fuel emissions is crucial for understanding the pathogenesis of mortality because of air...
Diesel emissions have a high level of particulate matter which can cause inflammation and oxidative ...
Biodiesel engines produce several intermediate species, which can potentially harm the human health....
Introduction: Diesel particulate matter can cause inflammation and oxidative stress in the airways. ...