Literature DB >> 12460797

Concentrated ambient air particles induce vasoconstriction of small pulmonary arteries in rats.

Joao R F Batalha1, Paulo H N Saldiva, Robert W Clarke, Brent A Coull, Rebecca C Stearns, Joy Lawrence, G G Krishna Murthy, Petros Koutrakis, John J Godleski.   

Abstract

The objective of this study was to determine whether short-term exposures to concentrated ambient particles (CAPs) alter the morphology of small pulmonary arteries in normal rats and rats with chronic bronchitis (CB). Sprague-Dawley male rats were exposed to CAPs, using the Harvard Ambient Particle Concentrator, or to particle-free air (sham) under identical conditions during 3 consecutive days (5 hr/day) in six experimental sets. CB was induced by exposure to 276 +/- 9 ppm of sulfur dioxide (5 hr/day, 5 days/week, 6 weeks). Physicochemical characterization of CAPs included measurements of particle mass, size distribution, and composition. Rats were sacrificed 24 hr after the last CAPs exposure. Histologic slides were prepared from random sections of lung lobes and coded for blinded analysis. The lumen/wall area (L/W) ratio was determined morphometrically on transverse sections of small pulmonary arteries. When all animal data (normal and CB) were analyzed together, the L/W ratios decreased as concentrations of fine particle mass, silicon, lead, sulfate, elemental carbon, and organic carbon increased. In separate univariate analyses of animal data, the association for sulfate was significant only in normal rats, whereas silicon was significantly associated in both CB and normal rats. In multivariate analyses including all particle factors, the association with silicon remained significant. Our results indicate that short-term CAPs exposures (median, 182.75 micro g/m3; range, 73.50-733.00 micro g/m3) can induce vasoconstriction of small pulmonary arteries in normal and CB rats. This effect was correlated with specific particle components and suggests that the pulmonary vasculature might be an important target for ambient air particle toxicity.

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Year:  2002        PMID: 12460797      PMCID: PMC1241105          DOI: 10.1289/ehp.021101191

Source DB:  PubMed          Journal:  Environ Health Perspect        ISSN: 0091-6765            Impact factor:   9.031


  40 in total

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Authors:  L Bouthillier; R Vincent; P Goegan; I Y Adamson; S Bjarnason; M Stewart; J Guénette; M Potvin; P Kumarathasan
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2.  Assessments of pulmonary macrophage clearance responses to inhaled particulates.

Authors:  D B Warheit; M A Hartsky
Journal:  Scanning Microsc       Date:  1988-06

3.  Urban air particulate inhalation alters pulmonary function and induces pulmonary inflammation in a rodent model of chronic bronchitis.

Authors:  R W Clarke; P J Catalano; P Koutrakis; G G Murthy; C Sioutas; J Paulauskis; B Coull; S Ferguson; J J Godleski
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4.  Pentobarbital anesthesia alters pulmonary vascular response to neural antagonists.

Authors:  D P Nyhan; H M Goll; B B Chen; D M Fehr; P W Clougherty; P A Murray
Journal:  Am J Physiol       Date:  1989-05

5.  Cardiac arrhythmia induction after exposure to residual oil fly ash particles in a rodent model of pulmonary hypertension.

Authors:  W P Watkinson; M J Campen; D L Costa
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Authors:  U P Kodavanti; M C Jackson; A D Ledbetter; J R Richards; S Y Gardner; W P Watkinson; M J Campen; D L Costa
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8.  Deposition pattern of inorganic particles at the alveolar level in the lungs of rats and mice.

Authors:  A R Brody; M W Roe
Journal:  Am Rev Respir Dis       Date:  1983-10

9.  Endothelin-1 is elevated in monocrotaline pulmonary hypertension.

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