Systems toxicology of complex wood combustion aerosol reveals gaseous carbonyl compounds as critical constituents

info:eu-repo/classification/ddc/570 570 Aldehydes Drug-Related Side Effects and Adverse Reactions biology Air pollution Air–liquid interface Respiratory Aerosols and Droplets 540 Lung cells Life sciences Systems toxicology Wood 3. Good health Environmental sciences Carbonyl compounds 13. Climate action Wood smoke Smoke 11. Sustainability Humans GE1-350 Particulate Matter ddc:570 Gases
DOI: 10.1016/j.envint.2023.108169 Publication Date: 2023-08-24T15:56:24Z
ABSTRACT
Epidemiological studies identified air pollution as one of the prime causes for human morbidity and mortality, due to harmful effects mainly on the cardiovascular and respiratory systems. Damage to the lung leads to several severe diseases such as fibrosis, chronic obstructive pulmonary disease and cancer. Noxious environmental aerosols are comprised of a gas and particulate phase representing highly complex chemical mixtures composed of myriads of compounds. Although some critical pollutants, foremost particulate matter (PM), could be linked to adverse health effects, a comprehensive understanding of relevant biological mechanisms and detrimental aerosol constituents is still lacking. Here, we employed a systems toxicology approach focusing on wood combustion, an important source for air pollution, and demonstrate a key role of the gas phase, specifically carbonyls, in driving adverse effects. Transcriptional profiling and biochemical analysis of human lung cells exposed at the air-liquid-interface determined DNA damage and stress response, as well as perturbation of cellular metabolism, as major key events. Connectivity mapping revealed a high similarity of gene expression signatures induced by wood smoke and agents prompting DNA-protein crosslinks (DPCs). Indeed, various gaseous aldehydes were detected in wood smoke, which promote DPCs, initiate similar genomic responses and are responsible for DNA damage provoked by wood smoke. Hence, systems toxicology enables the discovery of critical constituents of complex mixtures i.e. aerosols and highlights the role of carbonyls on top of particulate matter as an important health hazard.
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