Literature DB >> 12676590

Inhalation of concentrated ambient air particles exacerbates myocardial ischemia in conscious dogs.

Gregory A Wellenius1, Brent A Coull, John J Godleski, Petros Koutrakis, Kazunori Okabe, Sara T Savage, Joy E Lawrence, G G Krishna Murthy, Richard L Verrier.   

Abstract

Short-term increases in ambient air pollution have been associated with an increased incidence of acute cardiac events. We assessed the effect of inhalation exposure to concentrated ambient particles (CAPs) on myocardial ischemia in a canine model of coronary artery occlusion. Six mongrel dogs underwent thoracotomy for implantation of a vascular occluder around the left anterior descending coronary artery and tracheostomy to facilitate particulate exposure. After recovery (5-13 weeks), pairs of subjects were exposed for 6 hr/day on 3 or 4 consecutive days. Within each pair, one subject was randomly assigned to breathe CAPs on the second exposure day and filtered air at other times. The second subject breathed CAPs on the third exposure day and filtered air at other times. Immediately after each exposure, subjects underwent 5-min coronary artery occlusion. We determined ST-segment elevation, a measure of myocardial ischemia heart rate, and arrhythmia incidence during occlusion from continuous electrocardiograms. Exposure to CAPs (median, 285.7; range, 161.3-957.3 microg/m3) significantly (p = 0.007) enhanced occlusion-induced peak ST-segment elevation in precordial leads V4 (9.4 +/- 1.7 vs. 6.2 +/- 0.9 mm, CAPs vs. filtered air, respectively) and V5 (9.2 +/- 1.3 vs. 7.5 +/- 0.9 mm). ST-segment elevation was significantly correlated with the silicon concentration of the particles and other crustal elements possibly associated with urban street dust (p = 0.003 for Si). No associations were found with CAPs mass or number concentrations. Heart rate was not affected by CAPs exposure. These results suggest that exacerbation of myocardial ischemia during coronary artery occlusion may be an important mechanism of environmentally related acute cardiac events.

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Year:  2003        PMID: 12676590      PMCID: PMC1241419          DOI: 10.1289/ehp.5775

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


  26 in total

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Authors:  Robert D Brook; Jeffrey R Brook; Bruce Urch; Renaud Vincent; Sanjay Rajagopalan; Frances Silverman
Journal:  Circulation       Date:  2002-04-02       Impact factor: 29.690

2.  Canines as sentinel species for assessing chronic exposures to air pollutants: part 2. Cardiac pathology.

Authors:  L Calderón-Garcidueñas; T M Gambling; H Acuña; R García; N Osnaya; S Monroy; A Villarreal-Calderón; J Carson; H S Koren; R B Devlin
Journal:  Toxicol Sci       Date:  2001-06       Impact factor: 4.849

3.  Living near a main road and the risk of wheezing illness in children.

Authors:  A J Venn; S A Lewis; M Cooper; R Hubbard; J Britton
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4.  Acute effects of inhaled urban particles and ozone: lung morphology, macrophage activity, and plasma endothelin-1.

Authors:  L Bouthillier; R Vincent; P Goegan; I Y Adamson; S Bjarnason; M Stewart; J Guénette; M Potvin; P Kumarathasan
Journal:  Am J Pathol       Date:  1998-12       Impact factor: 4.307

5.  Air pollution and incidence of cardiac arrhythmia.

Authors:  A Peters; E Liu; R L Verrier; J Schwartz; D R Gold; M Mittleman; J Baliff; J A Oh; G Allen; K Monahan; D W Dockery
Journal:  Epidemiology       Date:  2000-01       Impact factor: 4.822

6.  Increased particulate air pollution and the triggering of myocardial infarction.

Authors:  A Peters; D W Dockery; J E Muller; M A Mittleman
Journal:  Circulation       Date:  2001-06-12       Impact factor: 29.690

Review 7.  Mechanisms of morbidity and mortality from exposure to ambient air particles.

Authors:  J J Godleski; R L Verrier; P Koutrakis; P Catalano; B Coull; U Reinisch; E G Lovett; J Lawrence; G G Murthy; J M Wolfson; R W Clarke; B D Nearing; C Killingsworth
Journal:  Res Rep Health Eff Inst       Date:  2000-02

8.  Electrocardiographic changes during exposure to residual oil fly ash (ROFA) particles in a rat model of myocardial infarction.

Authors:  Gregory A Wellenius; Paulo H N Saldiva; Joao R F Batalha; G G Krishna Murthy; Brent A Coull; Richard L Verrier; John J Godleski
Journal:  Toxicol Sci       Date:  2002-04       Impact factor: 4.849

9.  Inhalation toxicology of urban ambient particulate matter: acute cardiovascular effects in rats.

Authors:  R Vincent; P Kumarathasan; P Goegan; S G Bjarnason; J Guénette; D Bérubé; I Y Adamson; S Desjardins; R T Burnett; F J Miller; B Battistini
Journal:  Res Rep Health Eff Inst       Date:  2001-10

10.  Inhaled concentrated ambient particles are associated with hematologic and bronchoalveolar lavage changes in canines.

Authors:  R W Clarke; B Coull; U Reinisch; P Catalano; C R Killingsworth; P Koutrakis; I Kavouras; G G Murthy; J Lawrence; E Lovett; J M Wolfson; R L Verrier; J J Godleski
Journal:  Environ Health Perspect       Date:  2000-12       Impact factor: 9.031

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  40 in total

1.  Toxicological evaluation of realistic emission source aerosols (TERESA): introduction and overview.

Authors:  John J Godleski; Annette C Rohr; Choong M Kang; Edgar A Diaz; Pablo A Ruiz; Petros Koutrakis
Journal:  Inhal Toxicol       Date:  2011-06-03       Impact factor: 2.724

2.  Short term effects of particulate matter on cause specific mortality: effects of lags and modification by city characteristics.

Authors:  A Zeka; A Zanobetti; J Schwartz
Journal:  Occup Environ Med       Date:  2005-10       Impact factor: 4.402

3.  Myocardial ischemia, reperfusion, and infarction in chronically instrumented, intact, conscious, and unrestrained mice.

Authors:  Heidi L Lujan; Hussein Janbaih; Han-Zhong Feng; Jian-Ping Jin; Stephen E DiCarlo
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2012-04-25       Impact factor: 3.619

4.  Air pollution and cardiovascular admissions association in Spain: results within the EMECAS project.

Authors:  F Ballester; P Rodríguez; C Iñíguez; M Saez; A Daponte; I Galán; M Taracido; F Arribas; J Bellido; F B Cirarda; A Cañada; J J Guillén; F Guillén-Grima; E López; S Pérez-Hoyos; A Lertxundi; S Toro
Journal:  J Epidemiol Community Health       Date:  2006-04       Impact factor: 3.710

5.  Permanent tracheostomy for long-term respiratory studies.

Authors:  Carlo R Bartoli; Ichiro Akiyama; Kazunori Okabe; Edgar A Diaz; John J Godleski
Journal:  J Surg Res       Date:  2007-08-30       Impact factor: 2.192

6.  The search for non-linear exposure-response relationships at ambient levels in environmental epidemiology.

Authors:  Morton Lippmann
Journal:  Nonlinearity Biol Toxicol Med       Date:  2005-01

Review 7.  Air particulate matter and cardiovascular disease: the epidemiological, biomedical and clinical evidence.

Authors:  Yixing Du; Xiaohan Xu; Ming Chu; Yan Guo; Junhong Wang
Journal:  J Thorac Dis       Date:  2016-01       Impact factor: 2.895

8.  Acute effects of fine particulate air pollution on ST segment height: a longitudinal study.

Authors:  Fan He; Michele L Shaffer; Sol Rodriguez-Colon; Edward O Bixler; Alexandros N Vgontzas; Ronald W Williams; Rongling Wu; Wayne E Cascio; Duanping Liao
Journal:  Environ Health       Date:  2010-11-08       Impact factor: 5.984

9.  Long-term exposure to constituents of fine particulate air pollution and mortality: results from the California Teachers Study.

Authors:  Bart Ostro; Michael Lipsett; Peggy Reynolds; Debbie Goldberg; Andrew Hertz; Cynthia Garcia; Katherine D Henderson; Leslie Bernstein
Journal:  Environ Health Perspect       Date:  2009-10-26       Impact factor: 9.031

10.  Mechanisms of inhaled fine particulate air pollution-induced arterial blood pressure changes.

Authors:  Carlo R Bartoli; Gregory A Wellenius; Edgar A Diaz; Joy Lawrence; Brent A Coull; Ichiro Akiyama; Lani M Lee; Kazunori Okabe; Richard L Verrier; John J Godleski
Journal:  Environ Health Perspect       Date:  2008-10-06       Impact factor: 9.031

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