DOAJ Open Access 2025

Copper-enriched automotive brake wear particles perturb human alveolar cellular homeostasis

James G. H. Parkin Lareb S. N. Dean Joseph A. Bell Natasha H. C. Easton Liam J. Edgeway +15 lainnya

Abstrak

Abstract Background Airborne fine particulate matter with diameter < 2.5 μm (PM2.5), can reach the alveolar regions of the lungs, and is associated with over 4 million premature deaths per year worldwide. However, the source-specific consequences of PM2.5 exposure remain poorly understood. A major, but unregulated source is car brake wear, which exhaust emission reduction measures have not diminished. Methods We used an interdisciplinary approach to investigate the consequences of brake-wear PM2.5 exposure upon lung alveolar cellular homeostasis using diesel exhaust PM as a comparator. This involved RNA-Seq to analyse global transcriptomic changes, metabolic analyses to investigate glycolytic reprogramming, mass spectrometry to determine PM composition, and reporter assays to provide mechanistic insight into differential effects. Results We identified brake-wear PM from copper-enriched non-asbestos organic, and ceramic brake pads as inducing the greatest oxidative stress, inflammation, and pseudohypoxic HIF activation (a pathway implicated in diseases associated with air pollution exposure, including cancer, and pulmonary fibrosis), as well as perturbation of metabolism, and metal homeostasis compared with brake wear PM from low- or semi-metallic pads, and also, importantly, diesel exhaust PM. Compositional and metal chelator analyses identified that differential effects were driven by copper. Conclusions We demonstrate here that brake-wear PM may perturb cellular homeostasis more than diesel exhaust PM. Our findings demonstrate the potential differences in effects, not only for non-exhaust vs exhaust PM, but also amongst different sources of non-exhaust PM. This has implications for our understanding of the potential health effects of road vehicle-associated PM. More broadly, our findings illustrate the importance of PM composition on potential health effects, highlighting the need for targeted legislation to protect public health.

Penulis (20)

J

James G. H. Parkin

L

Lareb S. N. Dean

J

Joseph A. Bell

N

Natasha H. C. Easton

L

Liam J. Edgeway

M

Matthew J. Cooper

R

Robert Ridley

F

Franco Conforti

S

Siyuan Wang

L

Liudi Yao

J

Juanjuan Li

H

Helen Vethakan Raj

J

Julian Downward

M

Miriam Gerlofs-Nijland

F

Flemming R. Cassee

Y

Yihua Wang

R

Richard B. Cook

M

Mark G. Jones

D

Donna E. Davies

M

Matthew Loxham

Format Sitasi

Parkin, J.G.H., Dean, L.S.N., Bell, J.A., Easton, N.H.C., Edgeway, L.J., Cooper, M.J. et al. (2025). Copper-enriched automotive brake wear particles perturb human alveolar cellular homeostasis. https://doi.org/10.1186/s12989-024-00617-2

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Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.1186/s12989-024-00617-2
Akses
Open Access ✓