JOURNAL ARTICLE

Seasonal variability of endotoxin in ambient fine particulate matter

Cara L. CartyUlrike GehringJosef CyrysW. BischofJoachim Heinrich

Year: 2003 Journal:   Journal of Environmental Monitoring Vol: 5 (6)Pages: 953-953   Publisher: Royal Society of Chemistry

Abstract

Endotoxin is a toxic, pro-inflammatory compound that has been detected in indoor air and dust in homes and occupational settings, and also in outdoor air. Data on the outdoor sampling of endotoxin are limited. Currently, little is known about the seasonal variation and influence of temperature on outdoor endotoxin levels. In the present study, we report endotoxin levels in fine fraction particulate matter with a 50% aerodynamic cutoff diameter of 2.5 microm (PM2.5) and describe the seasonal variation of endotoxin in Munich, Germany. In 1999-2000, PM2.5 was collected at forty outdoor monitoring sites across Munich. Approximately four samples were collected at each site for a total of 158 samples. Endotoxin concentrations in the PM2.5 samples were determined using the kinetic chromogenic Limulus Amebocyte Lysate (LAL) assay. The geometric mean endotoxin concentration was 1.07 EU mg PM2.5(-1) (95% C.I.: 0.915-1.251) or 0.015 EU m(-3) of sampled air (95% C.I.: 0.013-0.018). Munich endotoxin levels were significantly related to ambient temperature (p < 0.0001) and percent relative humidity (p < 0.0001). Sampling periods with higher average temperatures yielded higher levels of endotoxin in PM2.5 (r = 0.641), whereas decreases in percent relative humidity were associated with increased endotoxin levels in PM2.5 (r = -0.388). Endotoxin levels were significantly higher during the warmer seasons of spring [means ratio (MR): 2.5-2.7] and summer (MR: 2.1-3.0) than during winter. Although temperature and relative humidity do not explain all of the variability in endotoxin levels, their effects were significant in our data set. Temperature effects and seasonal variation of endotoxin should be considered in future studies of outdoor endotoxin.

Keywords:
Limulus amebocyte lysate Relative humidity Aerodynamic diameter Particulates Seasonality Environmental science Animal science Humidity Environmental chemistry Chemistry Atmospheric sciences Meteorology Biology Ecology Immunology Geography

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Citation History

Topics

Indoor Air Quality and Microbial Exposure
Physical Sciences →  Environmental Science →  Health, Toxicology and Mutagenesis
Air Quality and Health Impacts
Physical Sciences →  Environmental Science →  Health, Toxicology and Mutagenesis
Odor and Emission Control Technologies
Physical Sciences →  Chemical Engineering →  Process Chemistry and Technology

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