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Effects of inhaled ambient particulate matter on pulmonary antimicrobial immune defense
Judith T Zelikoff1, Lung Chi Chen, Mitchell D Cohen
1New York University School of Medicine, Nelson Institute of Environmental Medicine, Tuxedo, NY 10987, USA. judyz@env.med.nyu.edu
Abstract:
Respiratory-tract infection, specifically pneumonia, contributes substantially to the increased morbidity and mortality among elderly individuals exposed to airborne particulate matter of <10 microm diameter (PM(10)). These epidemiological findings suggest that PM(10) may act as an immunosuppressive factor that can undermine normal pulmonary antimicrobial defense mechanisms. To investigate whether, and how, compromised pulmonary immunocompetence might contribute to increased mortality, two sets of laboratory studies were performed. The first examined the effects of a single inhalation exposure to concentrated ambient PM(2.5) (CAPS) from New York City air on pulmonary/systemic immunity and on the susceptibility of exposed aged rats to subsequent infection with Streptococcus pneumoniae. The second set of studies determined whether CAPS exposure, at a concentration approximating or somewhat greater than the promulgated 24-h NAAQS of 65 microg/m(3), could exacerbate an ongoing infection. Taken together, results demonstrated that a single exposure of healthy animals to CAPS had little effect on pulmonary immune function or bacterial clearance during subsequent challenge with S. pneumoniae. Alternatively, CAPS exposure of previously infected rats significantly increased bacterial burdens and decreased percentages of lavageable neutrophils and proinflammatory cytokine levels compared to those in infected filtered-air-exposed controls. These studies demonstrate that a single exposure to ambient PM(2.5) compromises a host's ability to handle ongoing pneumococcal infections and support the epidemiological findings of increased pneumonia-related deaths in ambient PM-exposed elderly individuals.
Insights
Air pollution, specifically fine particulate matter (PM2.5), exacerbates ongoing lung infections in rats. Exposure to PM2.5 impairs the immune system, increasing susceptibility to bacterial pneumonia and supporting findings in elderly populations.
Area of Science:
- Environmental Health
- Immunology
- Pulmonary Medicine
Background:
- Elderly individuals exposed to fine particulate matter (PM10) experience increased pneumonia morbidity and mortality.
- Epidemiological data suggest PM10 may suppress pulmonary immune defenses.
- The mechanisms by which PM exposure compromises immunocompetence require further investigation.
Purpose of the Study:
- To investigate the effects of concentrated ambient fine particulate matter (PM2.5) on pulmonary immunity and susceptibility to Streptococcus pneumoniae infection.
- To determine if PM2.5 exposure exacerbates ongoing pneumococcal infections in aged rats.
Main Methods:
- Aged rats were exposed via inhalation to concentrated ambient PM2.5 (CAPS) or filtered air.
- Exposure protocols included a single exposure before bacterial challenge or exposure during an established infection.
- Pulmonary immune responses, bacterial clearance, and inflammatory markers were assessed.
Main Results:
- A single CAPS exposure had minimal impact on immune function or bacterial clearance in healthy rats challenged with S. pneumoniae.
- CAPS exposure of rats with ongoing pneumococcal infections significantly increased bacterial load.
- Infected rats exposed to CAPS showed reduced percentages of lavageable neutrophils and lower proinflammatory cytokine levels compared to controls.
Conclusions:
- A single exposure to ambient PM2.5 compromises the host's ability to resolve ongoing pneumococcal infections.
- These findings support epidemiological observations linking ambient PM exposure to increased pneumonia-related mortality in the elderly.
- PM2.5 exposure can impair pulmonary immune responses during active bacterial infections.