ロンドン超低排出ゾーン導入が子どもの肺成長改善と関連(Introduction of London’s ULEZ linked to improved lung growth in children)

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2026-08-19 インペリアル・カレッジ・ロンドン(ICL)

ロンドンの超低排出ゾーン(ULEZ)導入後、子どもの肺の成長が改善したことを示す研究成果が発表された。クイーン・メアリー大学ロンドンを中心に、インペリアル・カレッジ・ロンドンなどが参加したCHILL研究では、ロンドンと比較対象のルートンに住む6~9歳の子ども3,414人を2018~2023年に追跡した。ULEZ導入後、ロンドンでは二酸化窒素(NO₂)への曝露がルートンより速く低下し、1秒間努力性呼気量(FEV1)の年間増加量もロンドンで233 mL、ルートンで223 mLとなった。導入前にはロンドンの子どもの肺機能が低かったが、約4年後には両地域でほぼ同等に達した。交通由来大気汚染によって抑制された子どもの肺成長が、排出削減政策によって回復し得ることを示す重要な自然実験結果である。

<関連情報>

英国ロンドンにおける超低排出ガス区域が小児の肺機能成長に及ぼす影響:前向き並行コホート研究 Impact of the Ultra Low Emission Zone on lung function growth in children in London, UK: a prospective parallel cohort study

Helen E Wood, DPhil ∙ Hajar Hajmohammadi, PhD ∙ Rosamund E Dove, PhD ∙ James Scales, PhD ∙ Ivelina Tsocheva, PhD ∙ Jasmine Chavda, MSc ∙ et al.
The Lancet Public Health  Published: August 18, 2026
DOI:https://doi.org/10.1016/S2468-2667(26)00163-5

ロンドン超低排出ゾーン導入が子どもの肺成長改善と関連(Introduction of London’s ULEZ linked to improved lung growth in children)

Summary

Background
Traffic-related air pollution is a risk factor for lung disease and early mortality. Clean air zones are public health policy interventions used to reduce traffic-related air pollution in urban areas, but evidence of their health benefits is limited. We describe a natural experiment study evaluating the impact of the Ultra Low Emission Zone (ULEZ) in London, UK. The primary aim was to assess the impact of the ULEZ on children’s lung function growth trajectories, by comparing forced expiratory volume in 1 s (FEV1) measurements over 5 years between children in London and Luton, UK.

Methods
The Children’s Health in London and Luton (CHILL) study is a prospective, two-arm, parallel cohort study. We recruited children aged 6–9 years from primary schools in central London (the original area of the ULEZ implementation) and Luton (a comparator site with no clean air zone). Children were excluded if they had symptoms of lung disease (excluding asthma) or learning or physical disabilities preventing them from giving informed assent. Lung function was measured by spirometry at annual school visits at baseline (before ULEZ implementation) and over the following 4 years. Annual residential exposures to nitrogen dioxide (NO2) and particulate matter with aerodynamic diameters of less than 10 μm (PM10) and less than 2·5 μm (PM2·5) were estimated at each child’s home address at 20 m2 resolution using a validated dispersion modelling system. The primary outcome was the annual rate of lung function growth, measured as post-bronchodilator FEV1 over the 5-year study period. We assessed growth trajectories against individualised residential exposure to NO2, PM10, and PM2·5. We used mixed-effects linear regression to compare lung function growth between London and Luton and to examine associations between air pollution exposures and lung growth.

Findings
Of 122 schools approached, 84 (69%) agreed to participate (44 schools in London; 40 schools in Luton). Of 9419 children invited, we recruited 3414 children (1664 in London and 1750 in Luton) between June 5, 2018, and April 4, 2019, before ULEZ implementation. 3209 (94·0%) of 3414 children were included in the FEV1 analysis (1557 children in London, 1652 children in Luton). Children were similar across the two sites in terms of age, height, and weight, with a higher proportion of girls in London (867 [56%] of 1557) than in Luton (809 [49%] of 1652). Baseline adjusted FEV1 was lower in London than Luton (difference –38 mL, 95% CI –58 to –18; p=0·0002). At baseline, children’s modelled annual exposures to NO2, the pollutant most reflective of exhaust emissions, were 18·95 μg/m3 (95% CI 18·51 to 19·38; p<0·0001) higher in London than in Luton. Over the follow-up period, children’s FEV1 growth increased by 10 mL/year (95% CI 5 to 15; p=0·0002) more in London than in Luton (233 mL/year vs 223 mL/year), with modelled residential exposures to NO2 decreasing faster in London than in Luton (decreases of –3·77 μg/m3 per year in London vs –1·77 μg/m3 per year in Luton; p<0·0001). After 4 years, mean FEV1 reached parity across sites: 2283 mL (2207 to 2354) in London; 2282 mL (2185 to 2376) in Luton. The proportion of children with clinically impaired lung function fell from 184 (14%) of 1280 children to 51 (9%) of 585 children in London, and from 126 (9%) of 1339 children to 41 (7%) of 606 children in Luton.

Interpretation
Introduction of the London ULEZ was associated with improved lung function growth trajectories in children in London compared with children in Luton, suggesting that previous deficits in lung development were restored. This evidence supports wider implementation of clean air zones as a public health intervention.

Funding
National Institute for Health and Care Research and Natural Environment Research Council UK Research and Innovation.

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