- Conference Article
- 10.1183/13993003.congress-2025.pa3899
Effects of tyre and road wear particle (TRWP) on toxicity and respiratory virus infection on iPSC-derived human bronchial epithelium
- Sep 27, 2025
- Hugo Ombredane + 5 more +5
<bold>Background:</bold> The body of evidence strongly suggests a link between air pollution and severity of illness associated with respiratory infection. Due to a global trend shifting away from combustion-engine vehicles towards much heavier electric vehicles, car emissions levels have been substantially reduced. Despite this improvement, the tyre and road wear particle (TRWP) polluting effect remains an overlooked yet major source of micro and nano-plastics, and is on course to worsen in the coming years. <bold>Aim:</bold> To evaluate impacts of TRWP, especially 2-(4-morpholinyl)benzothiazole (24 MoBT) and 2-Methyl-1,3-butadiene (2MB) on toxicity and respiratory virus infection (rhinovirus RV-A16 and influenza H1N1 ) on iPSC-derived air liquid culture human bronchial epithelium (hBE). <bold>Methods:</bold> iPSC-derived ALI hBE (HiLung Inc.) were apically treated with 24 MoBT or 2MB 24h prior to RV-A16 and H1N1(PR8) apical inoculation. Viral loads (TCID<sub>50</sub>) were determined from apical wash collections on days 2 and 5 post infection (PI). A panel of interferon stimulated genes (ISGs) was evaluated in cell samples day 5 PI by RT-PCR. <bold>Results:</bold> Pre-treatment with 24 MoBT trended towards increased RV-A16 viral loads at day 2 and day 5 PI. Pre-exposure to 24 MoBT was also associated with a reduction of ISG transcripts on day 5 PI compared with vehicle control (0.5% DMSO). Pre-treatment to 2MB significantly increased H1N1 viral load 48h post virus inoculation. <bold>Conclusion:</bold> Exposure to TRWP pollutant 24 MoBT trended towards exacerbated RV-A16 infection and 2MB significantly exacerbated influenza PR8 infection; perhaps explained by TRWP ability to dampen the antiviral interferon signalling pathway.
Read more