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. 1996 Nov;51(11):1109–1114. doi: 10.1136/thx.51.11.1109

Acute effects of summer air pollution on respiratory function in primary school children in southern England.

J F Scarlett 1, K J Abbott 1, J L Peacock 1, D P Strachan 1, H R Anderson 1
PMCID: PMC1090522  PMID: 8958894

Abstract

BACKGROUND: There is growing concern about health effects of air pollution in the UK. Studies in the USA have reported adverse effects on lung function among children but no comparable studies have been published in the UK. This study investigates the relationship between daily changes in ambient air pollution and short term variations in lung function in a panel of school children. METHODS: One hundred and fifty four children aged 7-11 attending a primary school adjacent to a major motorway in Surrey, south-east England, were studied. Bellows spirometry was performed daily on 31 schooldays between 6 June and 21 July 1994. Levels of ozone, nitrogen dioxide, and particulates of less than 10 microns in diameter (PM10) were measured continuously at the school and the pollen count was measured six miles away. Relationships between daily changes in forced expiratory volume in 0.75 seconds (FEV0.75), forced vital capacity (FVC), the FEV0.75/FVC ratio and pollutants were analysed using separate autoregressive models for each child. A weighted average of the resulting slopes was then calculated. RESULTS: There was a significant inverse relationship between daily mean PM10 levels lagged one day and FVC, with a reduction in lung function of 1% (95% CI 0.3% to 2%) across the whole range of PM10 levels (20-150 micrograms/m3). The effect on FEV0.75 was similar (-0.5%) but was not significant when weighted by 1/SE2 (95% CI -1.2% to 0.2%). There was no effect of PM10 levels on the FEV0.75/FVC ratio. No significant association was seen between FEV0.75, FVC, or the FEV0.75/FVC ratio and either ozone or nitrogen dioxide levels. There was no evidence that wheezy children were more affected than healthy children. Pollen levels on the previous day had no effect on lung function and did not change the air pollution results. CONCLUSIONS: There is a very small, but statistically significant, adverse effect of airborne respirable particulate matter, measured as PM10, on lung function in this study group. There is no evidence for an inverse association of lung function with levels of ozone or NO2 measured on the previous day.

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Selected References

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  1. Braun-Fahrländer C., Ackermann-Liebrich U., Schwartz J., Gnehm H. P., Rutishauser M., Wanner H. U. Air pollution and respiratory symptoms in preschool children. Am Rev Respir Dis. 1992 Jan;145(1):42–47. doi: 10.1164/ajrccm/145.1.42. [DOI] [PubMed] [Google Scholar]
  2. Devlin R. B., McDonnell W. F., Mann R., Becker S., House D. E., Schreinemachers D., Koren H. S. Exposure of humans to ambient levels of ozone for 6.6 hours causes cellular and biochemical changes in the lung. Am J Respir Cell Mol Biol. 1991 Jan;4(1):72–81. doi: 10.1165/ajrcmb/4.1.72. [DOI] [PubMed] [Google Scholar]
  3. Dockery D. W., Pope C. A., 3rd Acute respiratory effects of particulate air pollution. Annu Rev Public Health. 1994;15:107–132. doi: 10.1146/annurev.pu.15.050194.000543. [DOI] [PubMed] [Google Scholar]
  4. Higgins B. G., Francis H. C., Yates C. J., Warburton C. J., Fletcher A. M., Reid J. A., Pickering C. A., Woodcock A. A. Effects of air pollution on symptoms and peak expiratory flow measurements in subjects with obstructive airways disease. Thorax. 1995 Feb;50(2):149–155. doi: 10.1136/thx.50.2.149. [DOI] [PMC free article] [PubMed] [Google Scholar]
  5. Hoek G., Brunekreef B., Kosterink P., Van den Berg R., Hofschreuder P. Effect of ambient ozone on peak expiratory flow of exercising children in The Netherlands. Arch Environ Health. 1993 Jan-Feb;48(1):27–32. doi: 10.1080/00039896.1993.9938390. [DOI] [PubMed] [Google Scholar]
  6. Kinney P. L., Ware J. H., Spengler J. D. A critical evaluation of acute ozone epidemiology results. Arch Environ Health. 1988 Mar-Apr;43(2):168–173. doi: 10.1080/00039896.1988.9935847. [DOI] [PubMed] [Google Scholar]
  7. Matthews J. N. A refinement to the analysis of serial data using summary measures. Stat Med. 1993 Jan 15;12(1):27–37. doi: 10.1002/sim.4780120105. [DOI] [PubMed] [Google Scholar]
  8. McDonnell W. F., Kehrl H. R., Abdul-Salaam S., Ives P. J., Folinsbee L. J., Devlin R. B., O'Neil J. J., Horstman D. H. Respiratory response of humans exposed to low levels of ozone for 6.6 hours. Arch Environ Health. 1991 May-Jun;46(3):145–150. doi: 10.1080/00039896.1991.9937441. [DOI] [PubMed] [Google Scholar]
  9. Pearce N., Weiland S., Keil U., Langridge P., Anderson H. R., Strachan D., Bauman A., Young L., Gluyas P., Ruffin D. Self-reported prevalence of asthma symptoms in children in Australia, England, Germany and New Zealand: an international comparison using the ISAAC protocol. Eur Respir J. 1993 Nov;6(10):1455–1461. [PubMed] [Google Scholar]
  10. Schwartz J. Air pollution and daily mortality: a review and meta analysis. Environ Res. 1994 Jan;64(1):36–52. doi: 10.1006/enrs.1994.1005. [DOI] [PubMed] [Google Scholar]
  11. Walters S., Griffiths R. K., Ayres J. G. Temporal association between hospital admissions for asthma in Birmingham and ambient levels of sulphur dioxide and smoke. Thorax. 1994 Feb;49(2):133–140. doi: 10.1136/thx.49.2.133. [DOI] [PMC free article] [PubMed] [Google Scholar]
  12. Walters S., Phupinyokul M., Ayres J. Hospital admission rates for asthma and respiratory disease in the West Midlands: their relationship to air pollution levels. Thorax. 1995 Sep;50(9):948–954. doi: 10.1136/thx.50.9.948. [DOI] [PMC free article] [PubMed] [Google Scholar]
  13. Whittemore A. S., Korn E. L. Asthma and air pollution in the Los Angeles area. Am J Public Health. 1980 Jul;70(7):687–696. doi: 10.2105/ajph.70.7.687. [DOI] [PMC free article] [PubMed] [Google Scholar]

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