4.5 Article

Seasonal variation in the toxicological properties of size-segregated indoor and outdoor air particulate matter

Journal

TOXICOLOGY IN VITRO
Volume 27, Issue 5, Pages 1550-1561

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.tiv.2013.04.001

Keywords

Particulate matter; Inflammation; Cytotoxicity; Microbes; Indoor air PM; Ambient air PM

Categories

Funding

  1. Regional Council of Pohjois-Savo, The City of Kuopio
  2. Juho Vainio Foundation
  3. University of Eastern Finland

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Ambient air particulate matter (PM) as well as microbial contaminants in the indoor air are known to cause severe adverse health effects. It has been shown that there is a clear seasonal variation in the potency of outdoor air particles to evoke inflammation and cytotoxicity. However, the role of outdoor sources in the indoor air quality, especially on its toxicological properties, remains largely unknown. In this study, we collected size segregated (PM10-2.5, PM2.5-0.2 and PM0.2) particulate samples with a high volume cascade impactor (HVCI) on polyurethane foam and fluoropore membrane filters. The samples were collected during four different seasons simultaneously from indoor and outdoor air. Thereafter, the samples were weighed and extracted with methanol from the filters before undergoing toxicological analyses. Mouse macrophages (RAW264.7) were exposed to particulate sample doses of 50, 150 and 300 mu g/ml for 24 h. Thereafter, the levels of the proinflammatory cytokine (TNF-alpha), NO-production, cytotoxicity (MTT-test) and changes in the cell cycle (SubG(1), G(1), S and G(2)/M phases) were investigated. PM10-2.5 particles evoked the highest inflammatory and cytotoxic responses. Instead, PM2.5-0.2 samples exerted the greatest effect on apoptotic activity in the macrophages. With respect to the outdoor air samples, particles collected during warm seasons had a stronger potency to induce inflammatory and cytotoxic responses, whereas no such clear effect was seen with the corresponding indoor air samples. Outdoor air samples were associated with higher inflammatory potential, whereas indoor air samples had overall higher cytotoxic properties. This indicates that the outdoor air has a limited influence on the indoor air quality in a modern house. Thus, the indoor sources dominate the toxicological responses obtained from samples collected inside house. (C) 2013 Elsevier Ltd. All rights reserved.

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