Passive airborne dust sampling with the electrostatic dustfall collector: optimization of storage and extraction procedures for endotoxin and glucan measurement.

Publication date

2010-08

Authors

Noss, I.ISNI 0000000391564786
Doekes, GertISNI 0000000388937019
Sander, I.
Heederik, Dick J JISNI 0000000388327640
Thorne, P.S.
Wouters, IngeORCID 0000-0001-7834-9390ISNI 0000000389429008

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Article
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Abstract

We recently introduced a passive dust sampling method for airborne endotoxin and glucan exposure assessment-the electrostatic dustfall collector (EDC). In this study, we assessed the effects of different storage and extraction procedures on measured endotoxin and glucan levels, using 12 parallel EDC samples from 10 low exposed indoor environments. Additionally, we compared 2- and 4-week sampling with the prospect of reaching higher dust yields. Endotoxin concentrations were highest after extraction with pyrogen-free water (pf water) + Tween. Phosphate-buffered saline (PBS)-Tween yielded significantly (44%) lower levels, and practically no endotoxin was detected after extraction in pf water without Tween. Glucan levels were highest after extraction in PBS-Tween at 120 degrees C, whereas extracts made in NaOH at room temperature or 120 degrees C were completely negative. Direct extraction from the EDC cloth or sequential extraction after a preceding endotoxin extraction yielded comparable glucan levels. Sample storage at different temperatures before extraction did not affect endotoxin and glucan concentrations. Doubling the sampling duration yielded similar endotoxin and only 50% higher glucan levels. In conclusion, of the tested variables, the extraction medium was the predominant factor affecting endotoxin and glucan yields.

Keywords

dust sampling, endotoxin, exposure assessment, exposure assessment methodology, glucans, indoor environment, lipopolysaccharide, passive sampling

Citation

Noss, I, Doekes, G, Sander, I, Heederik, D J J, Thorne, P S & Wouters, I M 2010, 'Passive airborne dust sampling with the electrostatic dustfall collector: optimization of storage and extraction procedures for endotoxin and glucan measurement.', Annals of Occupational Hygiene, vol. 54, no. 6, pp. 651-658. https://doi.org/10.1093/annhyg/meq026