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Air pollution and alveolar health

Air pollution and alveolar health
Air pollution and alveolar health
Exposure to air pollution has been associated with up to 9 million premature deaths per year worldwide, with the respiratory system a key site for its effects. Air pollution exposure is a well-established risk factor for the development and exacerbation of airways diseases and lung cancer, however relatively little is known regarding the risks associated with air pollution interacting with areas of gas exchange – the alveoli and pulmonary interstitium. In recent years, evidence has emerged identifying a role in the development and progression of sub-clinical interstitial lung abnormalities as well as progression and risk of exacerbation of fibrotic interstitial lung diseases. This review outlines the epidemiologic evidence that air pollution perturbs alveolar health. It considers the different components of ambient air pollution, how penetration to the alveoli is determined by particle size, and whether the response to alveolar exposure may be modulated by personal susceptibility factors. We discuss potential acute and chronic pathogenic mechanisms of injury upon the pulmonary interstitium, and how these may contribute to the development and/or progression of interstitial processes. Finally, we explore current knowledge gaps and the potential for air pollution interventions in vulnerable individuals to support alveolar homeostasis and so prevent disease development and/or progression.
0905-9180
Sofia, Carmelo
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Parkin, James G.H.
2ecf26c5-e17a-4ca5-9217-afa2be2fad62
Dean, Lareb
41e0c113-ad78-425f-a9dc-60081f8f0027
Bell, Joseph A.
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Edgeway, Liam J.
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Sayer, Lucy
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Easton, Natasha H.C.
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Davies, Donna E.
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Marshall, Ben G.
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Holgate, Stephen T.
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Richeldi, Luca
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Jones, Mark G.
a6fd492e-058e-4e84-a486-34c6035429c1
Loxham, Matthew
8ef02171-9040-4c1d-8452-2ca34c56facb
Sofia, Carmelo
9cf553fb-ff70-4e71-9013-9f22a792b55b
Parkin, James G.H.
2ecf26c5-e17a-4ca5-9217-afa2be2fad62
Dean, Lareb
41e0c113-ad78-425f-a9dc-60081f8f0027
Bell, Joseph A.
68ba55a7-95b8-4a5a-a9f2-f90afea18b11
Edgeway, Liam J.
8004b225-c8ee-49db-9254-c3f113774123
Sayer, Lucy
4b132b47-4a38-4520-a9b3-15ac22b79478
Easton, Natasha H.C.
18beeb87-ef47-4d7c-812a-b905631b8b28
Davies, Donna E.
7de8fdc7-3640-4e3a-aa91-d0e03f990c38
Marshall, Ben G.
9abf382c-977f-459c-9b91-5ed8cbf2284f
Holgate, Stephen T.
2e7c17a9-6796-436e-8772-1fe6d2ac5edc
Richeldi, Luca
540f0654-88a1-4ce1-8141-fb1b1ec1071d
Jones, Mark G.
a6fd492e-058e-4e84-a486-34c6035429c1
Loxham, Matthew
8ef02171-9040-4c1d-8452-2ca34c56facb

Sofia, Carmelo, Parkin, James G.H., Dean, Lareb, Bell, Joseph A., Edgeway, Liam J., Sayer, Lucy, Easton, Natasha H.C., Davies, Donna E., Marshall, Ben G., Holgate, Stephen T., Richeldi, Luca, Jones, Mark G. and Loxham, Matthew (2025) Air pollution and alveolar health. European Respiratory Review. (In Press)

Record type: Review

Abstract

Exposure to air pollution has been associated with up to 9 million premature deaths per year worldwide, with the respiratory system a key site for its effects. Air pollution exposure is a well-established risk factor for the development and exacerbation of airways diseases and lung cancer, however relatively little is known regarding the risks associated with air pollution interacting with areas of gas exchange – the alveoli and pulmonary interstitium. In recent years, evidence has emerged identifying a role in the development and progression of sub-clinical interstitial lung abnormalities as well as progression and risk of exacerbation of fibrotic interstitial lung diseases. This review outlines the epidemiologic evidence that air pollution perturbs alveolar health. It considers the different components of ambient air pollution, how penetration to the alveoli is determined by particle size, and whether the response to alveolar exposure may be modulated by personal susceptibility factors. We discuss potential acute and chronic pathogenic mechanisms of injury upon the pulmonary interstitium, and how these may contribute to the development and/or progression of interstitial processes. Finally, we explore current knowledge gaps and the potential for air pollution interventions in vulnerable individuals to support alveolar homeostasis and so prevent disease development and/or progression.

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Accepted/In Press date: 1 June 2025

Identifiers

Local EPrints ID: 503456
URI: http://eprints.soton.ac.uk/id/eprint/503456
ISSN: 0905-9180
PURE UUID: 368e40e9-2d0c-43eb-bf54-876e23893af4
ORCID for Lareb Dean: ORCID iD orcid.org/0000-0002-8703-9236
ORCID for Natasha H.C. Easton: ORCID iD orcid.org/0000-0002-9168-3294
ORCID for Donna E. Davies: ORCID iD orcid.org/0000-0002-5117-2991
ORCID for Mark G. Jones: ORCID iD orcid.org/0000-0001-6308-6014
ORCID for Matthew Loxham: ORCID iD orcid.org/0000-0001-6459-538X

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Date deposited: 01 Aug 2025 16:36
Last modified: 31 Aug 2025 04:01

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Contributors

Author: Carmelo Sofia
Author: James G.H. Parkin
Author: Lareb Dean ORCID iD
Author: Joseph A. Bell
Author: Liam J. Edgeway
Author: Lucy Sayer
Author: Natasha H.C. Easton ORCID iD
Author: Donna E. Davies ORCID iD
Author: Ben G. Marshall
Author: Luca Richeldi
Author: Mark G. Jones ORCID iD
Author: Matthew Loxham ORCID iD

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