4.6 Article

Particulate Matter Induces Translocation of IL-6 from the Lung to the Systemic Circulation

Journal

Publisher

AMER THORACIC SOC
DOI: 10.1165/rcmb.2009-0427OC

Keywords

PM(10); IL-6; arteriovenous gradient; vascular dysfunction

Funding

  1. British Columbia Lung Association
  2. Heart and Stroke Foundation of Canada
  3. Canadian Institutes of Health Research
  4. Canada Research Chair
  5. Canadian Institute of Health Research

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The biological mechanisms responsible for an association between elevated concentrations of ambient particulate matter (PM) and increased cardiovascular morbidity and mortality remain unclear. Our laboratory showed that exposure to PM induces systemic inflammation that contributes to vascular dysfunction. This study was designed to determine whether the lung is a major source of systemic inflammatory mediators, using IL-6 as a surrogate marker. We also sought to determine the impact on vascular dysfunction after exposure to PM of less than 10 mu m in diameter(PM(10)). C57BL/6 mice were intratracheally exposed to a single instillation of PM(10) (10 or 200 mu g) or saline. Four hours or 24 hours after exposure, venous and arterial blood samples were simultaneously collected from the right atrium and descending aorta. Concentrations of IL-6 were measured in bronchoalveolar lavage fluid (BALF) and serum samples. Vascular functional responses to acetylcholine (ACh) and phenylephrine were measured in the abdominal aorta. Concentrations of IL-6 in BALF samples were increased at 4 and 24 hours after exposure to PM(10). At baseline, concentrations of IL-6 in venous blood were higher than those in arterial blood. Exposure to PM(10) reversed this arteriovenous gradient, 4 hours after exposure. The relaxation responses of the abdominal aorta to ACh decreased 4 hours after exposure to 200 mu g PM(10). In IL-6 knockout mice, the instillation of recombinant IL-6 increased IL-6 concentrations in the blood, and exposure to PM(10) did not cause vascular dysfunction. These results support our hypothesis that exposure to PM(10) increases pulmonary inflammatory mediators that translocate to the circulation, contributing to systemic inflammation, with downstream effects such as vascular dysfunction.

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