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Personal exposure to fine particulate matter (PM2.5) and self-reported asthma-related health

Datos Bibliográficos

ID4599151
AutoresAmy Mccarron (0000-0001-9534-4997, University of Stirling, autor de correspondencia), Sean Semple (0000-0002-0462-7295, University of Stirling), Christine F Braban (0000-0003-4275-0152, UK Centre for Ecology & Hydrology), Colin S Gillespie (0000-0003-1787-0275, Scottish Environment Protection Agency), Colin Gillespie, Vivien Swanson (0000-0002-1685-2991, University of Stirling), Hugh Douglas Price (0000-0001-6886-4516, University of Stirling)
Año2023
Volumen337
Páginas116293
Fecha de publicación2023-11-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaSocial Science & Medicine (JOURNAL)
Identificadores de la revistaISSN: 0277-9536 • E-ISSN: 1873-5347
EditorialElsevier BV (PUBLISHER)
DOI10.1016/j.socscimed.2023.116293
OpenAlexW4387398518
IdiomaEN
Citas recibidas4
Referencias citadas42

PM2.5 (fine particulate matter ≤2.5 μm in diameter) is a key pollutant that can produce acute asthma exacerbations and longer-term deterioration of respiratory health. Individual exposure to PM2.5 is unique and varies across microenvironments. Low-cost sensors (LCS) can collect data at a spatiotemporal resolution previously unattainable, allowing the study of exposures across microenvironments. The aim of this study is to investigate the acute effects of personal exposure to PM2.5 on self-reported asthma-related health. \n \n•Twenty-eight non-smoking adults with asthma living in Scotland collected PM2.5 personal exposure data using LCS. Measurements were made at a 2-min time resolution for a period of 7 days as participants conducted their typical daily routines. Concurrently, participants were asked to keep a detailed time-activity diary, logging their activities and microenvironments, along with hourly information on their respiratory health and medication use. Health outcomes were modelled as a function of hourly PM2.5 concentration (plus 1- and 2-h lag) using generalized mixed-effects models adjusted for temperature and relative humidity. \n \n•Personal exposures to PM2.5 varied across microenvironments, with the largest average microenvironmental exposure observed in private residences (11.5 ± 48.6 μg/m3) and lowest in the work microenvironment (2.9 ± 11.3 μg/m3). The most frequently reported asthma symptoms, wheezing, chest tightness and cough, were reported on 3.4%, 1.6% and 1.6% of participant-hours, respectively. The odds of reporting asthma symptoms increased per interquartile range (IQR) in PM2.5 exposure (odds ratio (OR) 1.29, 95% CI 1.07-1.54) for same-hour exposure. Despite this, no association was observed between reliever inhaler use (non-routine, non-exercise related) and PM2.5 exposure (OR 1.02, 95% CI 0.71-1.48). \n \n•Current air quality monitoring practices are inadequate to detect acute asthma symptom prevalence resulting from PM2.5 exposure; to detect these requires high-resolution air quality data and health information collected in situ. Personal exposure monitoring could have significant implications for asthma self-management and clinical practice

Asthma · Environmental health · Particulates · Public health · Air Quality and Health Impacts · Air Quality Monitoring and Forecasting · Chemistry · Medicine · Noise Effects and Management · Nursing · Psychology · Gerontology · Immunology

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Obras citantes distintas4
Citas por año1,33
Intervalo de citas2023 - 2026 (4)
Velocidad de citacióncurrent
Altamente citadoNo
Tipos de citaNeutras: 4
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