Combined effects of aerobiological pollutants, chemical pollutants and meteorological conditions on asthma admissions and A & E attendances in Derbyshire UK, 1993–96.
- 1 December 2000
- journal article
- research article
- Published by Wiley in Clinical and Experimental Allergy
- Vol. 30 (12) , 1724-1732
- https://doi.org/10.1046/j.1365-2222.2000.00947.x
Abstract
Background: The effect of outdoor aeroallergen exposure in asthma may be enhanced by air pollutants, including ozone, nitrogen dioxide and particulates, and by certain weather conditions. It is not yet established whether these interactions are important in determining asthma morbidity at the population level.Objective: We have investigated the joint effects of aeroallergens, rainfall, thunderstorms and outdoor air pollutants on daily asthma admissions and Accident and Emergency (A & E) attendance using routinely collected data between 1993 and 1996 from Derby in central England.Methods: Daily counts during the aeroallergen season of grass and birch pollen, basidiospores, Didymella, Alternaria and Cladosporium, maximum 1 hour ozone and nitrogen dioxide and daily average black smoke measurements, all made in the vicinity of the city centre, were categorized in tertiles. Rainfall was classified as dry, light (≤ 2 mm) or heavy (> 2 mm). The modifying effect of outdoor pollutant levels, and rainfall or the occurrence of a thunderstorm, upon the effects of individual aeroallergens on asthma admissions and A & E attendance were investigated by fitting appropriate interactions in log linear autoregression models with adjustment for potential confounders.Results: We found a significant interaction between the effects of grass pollen and weather conditions upon A & E attendance, such that the increase with grass pollen count was most marked on days of light rainfall (adjusted rate ratio for ≥ 50 vs < 10 grains/m3 at lag 2 days = 2.1, 95% CI 1.4, 3.3). Asthma admissions increased with Cladosporium count. We found no statistically significant interactions between effects of any individual aeroallergen and outdoor air pollutant upon either measure of asthma morbidity.Conclusions: Rainfall and thunderstorms are important effect modifiers in the relation between grass pollen and measures of acute asthma morbidity. Interactions between ambient levels of aeroallergens and chemical pollutants in the Derby area do not play a major role in determining asthma admissions and A & E attendance.Keywords
This publication has 22 references indexed in Scilit:
- Concentrations of major grass group 5 allergens in pollen grains and atmospheric particles: implications for hay fever and allergic asthma sufferers sensitized to grass pollen allergensClinical and Experimental Allergy, 1999
- Discussion: Mechanisms of pollution-induced airway diseaseAllergy, 1997
- Major grass pollen allergen Lol p 1 binds to diesel exhaust particles: implications for asthma and air pollutionClinical and Experimental Allergy, 1997
- Interaction of Ozone and Allergen Challenges on Bronchial Responsiveness and Inflammation in Sensitised Guinea PigsInternational Archives of Allergy and Immunology, 1997
- Short term effects of air pollution on health: a European approach using epidemiologic time series data: the APHEA protocol.Journal of Epidemiology and Community Health, 1996
- Interaction between air pollutants and aeroallergensClinical and Experimental Allergy, 1995
- Association of severe asthma attacks with weather, pollen, and air pollutants.Thorax, 1993
- Seasonal variability of exercise‐induced asthma especially outdoors. Effect of birch pollen allergyClinical and Experimental Allergy, 1989
- ASTHMA OUTBREAK DURING A THUNDERSTORMThe Lancet, 1985
- DIDYMELLA EXITIALIS AND LATE SUMMER ASTHMAThe Lancet, 1985