Literature DB >> 19449765

Health effects of real-world exposure to diesel exhaust in persons with asthma.

Junfeng Jim Zhang1, James E McCreanor, Paul Cullinan, Kian Fan Chung, Pamela Ohman-Strickland, In-Kyu Han, Lars Järup, Mark J Nieuwenhuijsen.   

Abstract

Many people, including people with asthma, experience short-term exposure to diesel exhaust (DE*) during daily activities. The health effects of such exposures, however, remain poorly understood. The present study utilized a real-world setting to examine whether short-term DE exposure would (1) worsen asthma symptoms, (2) augment airway inflammation, or (3) increase oxidative stress burdens. The study also examined exposure-response relations for several DE components and the contribution of background asthma severity to individuals' respiratory responses to DE exposure. Sixty people participated in the study; 31 had mild asthma and 29 had moderate asthma. Each participant completed an exposure and a control session. During the exposure session, participants walked for 2 hours along a heavily trafficked city street where motor vehicle access was restricted to buses and official taxicabs. These vehicles were powered by diesel engines. During the control session, participants walked for the same duration and at the same speed in a public park where motor vehicle traffic was prohibited. The concentrations of elemental carbon (EC), NO2, ultrafine particles (UFP), and particulate matter less than or equal to 2.5 microm in aerodynamic diameter (PM2.5) during exposure sessions were, on average, 4.8, 4.0, 3.4, and 2.0 times higher, respectively, than during control sessions. Increases in asthma symptom score and in the daily use of asthma reliever medication within the 7-day measurement period after exposure were not significant. Some effects on lung function were statistically significant. Compared with control sessions, forced expiratory volume in the first second (FEV1) was reduced 3.0% to 4.1%, and forced vital capacity (FVC) was reduced 2.8% to 3.7% in the 5 hours immediately after the exposure sessions. Analyses of biomarkers showed that the exposure sessions led to a significant reduction in exhaled breath condensate (EBC) pH and to significant increases in induced sputum neutrophils and myeloperoxidase (MPO). The changes in lung function indices (FEV1, FVC, and forced expiratory flow during the middle half of the FVC [FEF25-75]) were most consistently associated with UFP and EC exposures, whereas the changes in EBC pH were most consistently associated with NO2 exposure. In addition, NO2 had a significant effect on bronchial reactivity and on the amount of interleukin-8 (IL-8) in induced sputum; it also modified the UFP effect on EBC pH and the EC effect on exhaled nitric oxide (eNO). However, our findings cannot be taken as demonstrating a causal association with any measured pollutant, because the measured pollutant concentrations may simply represent the entire roadside diesel-traffic exposure that comprises not only the pollutants measured in this study but also other pollutants in the complex DE mixture and resuspended coarse particles from road dust, engine debris, and tire debris. The effects of exposure appeared to be larger in the more severe asthmatic group for most outcomes measured. In conclusion, short-term exposure to urban roadside diesel traffic led to consistent and significant reductions in lung function, accompanied by airway acidification and neutrophilic inflammation. Our findings help to explain the epidemiologic evidence on diesel traffic health effects in persons with asthma.

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Year:  2009        PMID: 19449765

Source DB:  PubMed          Journal:  Res Rep Health Eff Inst        ISSN: 1041-5505


  28 in total

1.  Short-term exposure to air pollution and lung function in the Framingham Heart Study.

Authors:  Mary B Rice; Petter L Ljungman; Elissa H Wilker; Diane R Gold; Joel D Schwartz; Petros Koutrakis; George R Washko; George T O'Connor; Murray A Mittleman
Journal:  Am J Respir Crit Care Med       Date:  2013-12-01       Impact factor: 21.405

2.  A Laboratory Comparison of Emission Factors, Number Size Distributions, and Morphology of Ultrafine Particles from 11 Different Household Cookstove-Fuel Systems.

Authors:  Guofeng Shen; Chethan K Gaddam; Seth M Ebersviller; Randy L Vander Wal; Craig Williams; Jerroll W Faircloth; James J Jetter; Michael D Hays
Journal:  Environ Sci Technol       Date:  2017-05-24       Impact factor: 9.028

Review 3.  Small things make a big difference: particulate matter and exercise.

Authors:  Paul T Cutrufello; James M Smoliga; Kenneth W Rundell
Journal:  Sports Med       Date:  2012-12-01       Impact factor: 11.136

4.  Role of neprilysin in airway inflammation induced by diesel exhaust emissions.

Authors:  Simon S Wong; Nina N Sun; Cynthia D Fastje; Mark L Witten; R Clark Lantz; Bao Lu; Duane L Sherrill; Craig J Gerard; Jefferey L Burgess
Journal:  Res Rep Health Eff Inst       Date:  2011-06

5.  Associations between ambient particle radioactivity and lung function.

Authors:  Marguerite M Nyhan; Mary Rice; Annelise Blomberg; Brent A Coull; Eric Garshick; Pantel Vokonas; Joel Schwartz; Diane R Gold; Petros Koutrakis
Journal:  Environ Int       Date:  2019-06-11       Impact factor: 9.621

6.  Respiratory Health Effects of Ultrafine Particles in Children: A Literature Review.

Authors:  Amy Heinzerling; Joy Hsu; Fuyuen Yip
Journal:  Water Air Soil Pollut       Date:  2015-12-22       Impact factor: 2.520

7.  Evaluation of dicarbonyls generated in a simulated indoor air environment using an in vitro exposure system.

Authors:  Stacey E Anderson; Laurel G Jackson; Jennifer Franko; J R Wells
Journal:  Toxicol Sci       Date:  2010-03-03       Impact factor: 4.849

8.  Evaluating the genotoxicity of urban PM2.5 using PCR-based methods in human lung cells and the Salmonella TA98 reverse test.

Authors:  Deborah Traversi; Piero Cervella; Giorgio Gilli
Journal:  Environ Sci Pollut Res Int       Date:  2014-08-21       Impact factor: 4.223

9.  Indoor and outdoor measurements of particle number concentration in near-highway homes.

Authors:  Christina H Fuller; Doug Brugge; Paige L Williams; Murray A Mittleman; Kevin Lane; John L Durant; John D Spengler
Journal:  J Expo Sci Environ Epidemiol       Date:  2013-01-16       Impact factor: 5.563

10.  Factors and Trends Affecting the Identification of a Reliable Biomarker for Diesel Exhaust Exposure.

Authors:  David A Morgott
Journal:  Crit Rev Environ Sci Technol       Date:  2014-08       Impact factor: 12.561

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