| Literature DB >> 28843492 |
Michèle Roth1, Jakob Usemann2, Christoph Bisig3, Pierre Comte4, Jan Czerwinski4, Andreas C R Mayer5, Konstantin Beier6, Barbara Rothen-Rutishauser3, Philipp Latzin2, Loretta Müller7.
Abstract
Air pollution exposure, including passenger car emissions, may cause substantial respiratory health effects and cancer death. In western countries, the majority of passenger cars are driven by gasoline fuel. Recently, new motor technologies and ethanol fuels have been introduced to the market, but potential health effects have not been thoroughly investigated. We developed and verified a coculture model composed of bronchial epithelial cells (ECs) and natural killer cells (NKs) mimicking the human airways to compare toxic effects between pure gasoline (E0) and ethanol-gasoline-blend (E85, 85% ethanol, 15% gasoline) exhaust emitted from a flexfuel gasoline car. We drove a steady state cycle, exposed ECs for 6h and added NKs. We assessed exhaust effects in ECs alone and in cocultures by RT-PCR, flow cytometry, and oxidative stress assay. We found no toxic effects after exposure to E0 or E85 compared to air controls. Comparison between E0 and E85 exposure showed a weak association for less oxidative DNA damage after E85 exposure compared to E0. Our results indicate that short-term exposure to gasoline exhaust may have no major toxic effects in ECs and NKs and that ethanol as part of fuel for gasoline cars may be favorable.Entities:
Keywords: Airways; Cocultures; DNA damage; Diesel exhaust particles; Ethanol-gasoline blend; Flexfuel; Gasoline exhaust
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Year: 2017 PMID: 28843492 DOI: 10.1016/j.tiv.2017.08.016
Source DB: PubMed Journal: Toxicol In Vitro ISSN: 0887-2333 Impact factor: 3.500