Sort   by:  
 Page size 
Renewable diesel fuels, derived from various biomass sources, have the potential to reduce greenhouse gas emissions and particulate matter (PM) compared to conventional fossil-based diesel. However, the toxicity of emissions from renewable diesel fuels is not yet fully understood. We assessed pulm...
ORGANISM(S): Mus musculus 
Air pollution is an environmental risk factor linked to multiple human diseases including cardiovascular diseases (CVDs). While particulate matter (PM) emitted by diesel exhaust damages multiple organ systems, heart disease is one of the most severe pathologies affected by PM. However, the in vivo e...
ORGANISM(S): Mus musculus (Mouse) 
2023-12-09 | PXD045029 | Pride
Diesel exhaust particles (DEPs), a major component of airborne particulate matter (PM), are strongly associated with the development of both acute and chronic upper airway inflammatory diseases. In this study, we investigated the effects of prolonged daily exposure to low-dose DEPs on the maturation...
ORGANISM(S): Homo sapiens (Human) 
2026-05-23 | PXD065940 | Pride
C57BL/6 Mouse cortex samples at 2-months of age, both sexes, exposed to one acute 5-hour dose of 100ug/m3 of air pollution from diesel exhaust particles or dust from the World Trade Center collapse. C57BL/6 female mouse cortex exposed to one acute 4-hour dose of 500ug/m3 of woodsmoke.
ORGANISM(S): Mus musculus 
Effect of Diesel Exhaust Particles in Normal Human Embryonic Lung Cell (WI-38) Line
Transcriptomic responses to diesel exhaust particles or World trade center dust
There is an emerging concern that particulate air pollution increases the risk of cranial nerve disease onset. Small nanoparticles, mainly derived from diesel exhaust particles reach the olfactory bulb by their nasal depositions. It has been reported that diesel exhaust inhalation causes inflammatio...
ORGANISM(S): Mus musculus 
Diesel exhaust particles Enhance Monocyte Recruitment, Accelerating Allergic Airway Inflammation
In vitro transformation of human bronchial epithelial cells by diesel exhaust particles
Human BEAS-2B bronchial epithelial cells were exposed directly at the air-liquid interphase towards exhaust gas and particles of a ship engine. The goal was to compare the responses towards different fuel combustions. The engine run either on diesel fuel (DF) or on Heavy Fuel Oil (HFO).
ORGANISM(S): Homo sapiens 
2015-02-01 | GSE63962 | GEO
Sort   by:  
 Page size