Indoor ultrafine particles and childhood asthma: exploring a potential public health concern
- 1 April 2007
- journal article
- review article
- Published by Hindawi Limited in Indoor Air
- Vol. 17 (2) , 81-91
- https://doi.org/10.1111/j.1600-0668.2006.00446.x
Abstract
Exposure to airborne particulate matter has a negative effect on respiratory health in both children and adults. The ultrafine fraction of particulate air pollution is of particular interest because of its increased ability to cause oxidative stress and inflammation in the lungs. We reviewed the literature, and to date findings suggest that ultrafine particles (UFPs) may play an important role in triggering asthma symptoms. Furthermore, we believe that indoor UFP exposures may be particularly important because people spend the majority of their time indoors where sources of these contaminants are often present. While several epidemiological studies have examined the respiratory effects of ambient UFP exposures, the relationship between indoor UFP exposures and childhood asthma has yet to be examined in clinical or epidemiological studies. However, the portable instrumentation necessary to conduct such investigations is increasingly available, and we expect that this issue will be addressed in the near future. Therefore, the aim of this article is to provide a general review of UFP toxicity as related to childhood asthma in order to draw attention to a potentially important public health concern. A number of indoor sources of ultrafine particles (UFPs) have been identified, but the health effects of indoor UFP exposures remain largely unexplored. The potential respiratory effects of such exposures seem most concerning because these particles are known to cause oxidative stress and inflammation in the lungs. Subsequently, indoor UFP exposures may contribute to the exacerbation of asthma symptoms in susceptible individuals. This paper provides a review of UFP toxicity as related to childhood asthma, and to date evidence suggests that further investigation into the respiratory effects of indoor UFP exposures is warranted.Keywords
This publication has 111 references indexed in Scilit:
- Ultrafine carbon black particles stimulate proliferation of human airway epithelium via EGF receptor-mediated signaling pathwayAmerican Journal of Physiology-Lung Cellular and Molecular Physiology, 2004
- The Capacity of Particles to Increase Allergic Sensitization Is Predicted by Particle Number and Surface Area, Not by Particle MassToxicological Sciences, 2004
- Pulmonary responses of acute exposure to ultrafine iron particles in healthy adult ratsEnvironmental Toxicology and Water Quality, 2003
- Ultrafine Particles Cause Cytoskeletal Dysfunctions in MacrophagesToxicology and Applied Pharmacology, 2002
- IgE ADJUVANT ACTIVITY OF PARTICLES-WHAT PHYSICAL CHARACTERISTICS ARE IMPORTANT?Inhalation Toxicology, 2000
- DIFFERENCES IN THE EXTENT OF INFLAMMATION CAUSED BY INTRATRACHEAL EXPOSURE TO THREE ULTRAFINE METALS: ROLE OF FREE RADICALSJournal of Toxicology and Environmental Health, Part A, 1998
- Early Pulmonary Cytokine Responses to Zinc Oxide Fume InhalationEnvironmental Research, 1997
- Metal Fume FeverJournal of Occupational and Environmental Medicine, 1997
- Wood Smoke: Emissions and Noncancer Respiratory EffectsAnnual Review of Public Health, 1994
- Acute lower respiratory tract infections in nonhospitalized childrenThe Journal of Pediatrics, 1986