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Inhalation Toxicology
International Forum for Respiratory Research
Volume 27, 2015 - Issue 2
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Research Article

Cardiomyopathy confers susceptibility to particulate matter-induced oxidative stress, vagal dominance, arrhythmia and pulmonary inflammation in heart failure-prone rats

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Pages 100-112 | Received 10 Sep 2014, Accepted 24 Nov 2014, Published online: 20 Jan 2015

References

  • Brook RD, Rajagopalan S, Pope CA III, et al. (2010). Particulate matter air pollution and cardiovascular disease: an update to the scientific statement from the American Heart Association. Circulation 121:2331–78
  • Brouri F, Findji L, Mediani O, et al. (2002). Toxic cardiac effects of catecholamines: role of beta-adrenoreceptor downregulation. Eur J Pharmacol 456:69–75
  • Brouri F, Hanoun N, Mediani O, et al. (2004). Blockade of beta 1- and desensitization of beta 2-adrenoceptors reduce isoprenaline-induced cardiac fibrosis. Eur J Pharmacol 485:227–34
  • Burnett RT, Dales R, Krewski D, et al. (1995). Associations between ambient particulate sulfate and admissions to Ontario hospitals for cardiac and respiratory diseases. Am J Epidemiol 142:15–22
  • Campen MJ, McDonald JD, Gigliotti AP, et al. (2003). Cardiovascular effects of inhaled diesel exhaust in spontaneously hypertensive rats. Cardiovasc Toxicol 3:353–61
  • Carll AP, Haykal-Coates N, Winsett DW, et al. (2010). Particulate matter inhalation exacerbates cardiopulmonary injury in a rat model of isoproterenol-induced cardiomyopathy. Inhal Toxicol 22:355–68
  • Carll AP, Haykal-Coates N, Winsett DW, et al. (2011a). Dietary salt exacerbates isoproterenol-induced cardiomyopathy in rats. Toxicol Pathol 39:925–37
  • Carll AP, Willis MS, Lust RM, et al. (2011b). Merits of non-invasive rat models of left ventricular heart failure. Cardiovasc Toxicol 11:91–112
  • Carll AP, Hazari MS, Perez CM, et al. (2012). Whole and particle-free diesel exhausts differentially affect cardiac electrophysiology, blood pressure, and autonomic balance in heart failure-prone rats. Toxicol Sci 128:490–9
  • Carll AP, Hazari MS, Perez CM, et al. (2013a). An autonomic link between inhaled diesel exhaust and impaired cardiac performance: insight from treadmill and dobutamine challenges in heart failure-prone rats. Toxicol Sci 135:425–36
  • Carll AP, Lust RM, Hazari MS, et al. (2013b). Diesel exhaust inhalation increases cardiac output, bradyarrhythmias, and parasympathetic tone in aged heart failure-prone rats. Toxicol Sci 131:583–95
  • Chuang HC, Hsueh TW, Chang CC, et al. (2013). Nickel-regulated heart rate variability: the roles of oxidative stress and inflammation. Toxicol Appl Pharmacol 266:298–306
  • Coleridge HM, Coleridge JCG. (2011). Reflexes evoked from tracheobronchial tree and lungs. In: Pollock DM (ed.). Comprehensive physiology. Bethesda, MD: Wiley Online Library/The American Physiological Society, 395–429
  • Costa DL, Dreher KL. (1997). Bioavailable transition metals in particulate matter mediate cardiopulmonary injury in healthy and compromised animal models. Environ Health Perspect 105:1053–60
  • Dominici F, Peng RD, Bell ML, et al. (2006). Fine particulate air pollution and hospital admission for cardiovascular and respiratory diseases. JAMA 295:1127–34
  • Farraj AK, Haykal-Coates N, Winsett DW, et al. (2009). Increased non-conducted P-wave arrhythmias after a single oil fly ash inhalation exposure in hypertensive rats. Environ Health Perspect 117:709–15
  • Farraj AK, Hazari MS, Haykal-Coates N, et al. (2011). ST depression, arrhythmia, vagal dominance, and reduced cardiac micro-RNA in particulate-exposed rats. Am J Respir Cell Mol Biol 44:185–96
  • Goldberg MS, Bailar JC III, Burnett RT, et al. (2000). Identifying subgroups of the general population that may be susceptible to short-term increases in particulate air pollution: a time-series study in Montreal, Quebec. Res Rep Health Eff Inst 97:7–113
  • Gosse P, Coulon P, Papaioannou G, et al. (2011). Atrioventricular conduction in the hypertensive patient: influence of aging, pulse pressure, and arterial stiffness. Rejuvenation Res 14:405–10
  • Hatch GE, Boykin E, Graham JA, et al. (1985). Inhalable particles and pulmonary host defense: in vivo and in vitro effects of ambient air and combustion particles. Environ Res 36:67–80
  • Hayashi F, Coles SK, McCrimmon DR. (1996). Respiratory neurons mediating the Breuer-Hering reflex prolongation of expiration in rat. J Neurosci 16:6526–36
  • Hazari MS, Haykal-Coates N, Winsett DW, et al. (2009). A single exposure to particulate or gaseous air pollution increases the risk of aconitine-induced cardiac arrhythmia in hypertensive rats. Toxicol Sci 112:532–42
  • Hazari MS, Callaway J, Winsett DW, et al. (2012). Dobutamine “stress” test and latent cardiac susceptibility to inhaled diesel exhaust in normal and hypertensive rats. Environ Health Perspect 120:1088–93
  • James TN, Urthaler F, Hageman GR. (1980). Reflex heart block. Baroreflex, chemoreflex and bronchopulmonary reflex causes. Am J Cardiol 45:1182–8
  • Jaskot R, Charlet EG, Grose EC, et al. (1983). An automated analysis of glutathione peroxidase, S-transferase, and reductase activity in animal tissues. J Analyt Toxicol 7:86–8
  • Johnson B. (2013). NASA Releases Images of Beijing Air Pollution. CBS News. 15 Jan 2013. Available from http://www.cbsnews.com/news/nasa-releases-images-of-beijing-air-pollution/ [last accessed: 10 Nov 2014]
  • Kodavanti UP, Schladweiler MC, Ledbetter AD, et al. (2002). Temporal association between pulmonary and systemic effects of particulate matter in healthy and cardiovascular compromised rats. J Toxicol Environ Health A 65:1545–69
  • Lamb CM, Hazari MS, Haykal-Coates N, et al. (2012). Divergent electrocardiographic responses to whole and particle-free diesel exhaust inhalation in spontaneously hypertensive rats. Toxicol Sci 125:558–68
  • Ledbetter AD, Killough PM, Hudson GF. (1998). A low-sample-consumption dry-particulate aerosol generator for use in nose-only inhalation exposures. Inhal Toxicol 10:239–51
  • Marek W, Muckenhoff K, Prabhakar NR. (2008). Significance of pulmonary vagal afferents for respiratory muscle activity in the cat. J Physiol Pharmacol 59:407–20
  • Mills NL, Finlayson AE, Gonzalez MC, et al. (2011). Diesel exhaust inhalation does not affect heart rhythm or heart rate variability. Heart 97:544–50
  • Muggenburg BA, Barr EB, Cheng YS, et al. (2000). Effect of inhaled residual oil fly ash on the electrocardiogram of dogs. Inhal Toxicol 12:189–208
  • Nadziejko C, Chen LC, Nadas A, Hwang JS. (2004). The ‘Fishing License' method for analysing the time course of effects in repeated measurements. Stat Med 23:1399–411
  • Nanoff C, Freissmuth M, Tuisl E, Schutz W. (1989). A different desensitization pattern of cardiac beta-adrenoceptor subtypes by prolonged in vivo infusion of isoprenaline. J Cardiovasc Pharmacol 13:198–203
  • NASA. (2013). Smog Shuts Down Harbin. NASA Earth Observatory. 23 Oct 2013. Available from http://earthobservatory.nasa.gov/IOTD/view.php?id=82220&src=eoa-iotd [last accessed: 10 Nov 2014]
  • Pavlov VA, Tracey KJ. (2005). The cholinergic anti-inflammatory pathway. Brain Behav Immun 19:493–9
  • Pham H, Bonham AC, Pinkerton KE, Chen CY. (2009). Central neuroplasticity and decreased heart rate variability after particulate matter exposure in mice. Environ Health Perspect 117:1448–53
  • Pope CA III, Verrier RL, Lovett EG, et al. (1999). Heart rate variability associated with particulate air pollution. Am Heart J 138:890–9
  • Quinlan T, Spivack S, Mossman BT. (1994). Regulation of antioxidant enzymes in lung after oxidant injury. Environ Health Perspect 102:79–87
  • Riediker M, Cascio WE, Griggs TR, et al. (2004a). Particulate matter exposure in cars is associated with cardiovascular effects in healthy young men. Am J Respir Crit Care Med 169:934–40
  • Riediker M, Devlin RB, Griggs TR, et al. (2004b). Cardiovascular effects in patrol officers are associated with fine particulate matter from brake wear and engine emissions. Part Fibre Toxicol 1:2
  • Riediker M. (2007). Cardiovascular effects of fine particulate matter components in highway patrol officers. Inhal Toxicol 19:99–105
  • Rowan WH, Campen MJ, Wichers LB, Watkinson WP. (2007). Heart rate variability in rodents: uses and caveats in toxicological studies. Cardiovasc Toxicol 7:28–51
  • Savelieva I, Yap YG, Yi G, et al. (1998). Comparative reproducibility of QT, QT peak, and T peak-T end intervals and dispersion in normal subjects, patients with myocardial infarction, and patients with hypertrophic cardiomyopathy. Pacing Clin Electrophysiol 21:2376–81
  • Schulz H, Harder V, Ibald-Mulli A, et al. (2005). Cardiovascular effects of fine and ultrafine particles. J Aerosol Med 18:1–22
  • Shah AS, Langrish JP, Nair H, et al. (2013). Global association of air pollution and heart failure: a systematic review and meta-analysis. Lancet 382:1039–48
  • Shimizu M, Ino H, Okeie K, et al. (2002). T-peak to T-end interval may be a better predictor of high-risk patients with hypertrophic cardiomyopathy associated with a cardiac troponin I mutation than QT dispersion. Clin Cardiol 25:335–9
  • Szydlo K, Wita K, Trusz-Gluza M, Tabor Z. (2010). Late phase of repolarization (TpeakTend) as a prognostic marker of left ventricle remodeling in patients with anterior myocardial infarction treated with primary coronary intervention. Cardiol J 17:244–8
  • Takeshita D, Shimizu J, Kitagawa Y, et al. (2008). Isoproterenol-induced hypertrophied rat hearts: does short-term treatment correspond to long-term treatment? J Physiol Sci 58:179–88
  • Tankersley CG, Campen M, Bierman A, et al. (2004). Particle effects on heart-rate regulation in senescent mice. Inhal Toxicol 16:381–90
  • Tankersley CG, Champion HC, Takimoto E, et al. (2008). Exposure to inhaled particulate matter impairs cardiac function in senescent mice. Am J Physiol Reg Integ Compar Physiol 295:R252–63
  • Thayer JF. (2009). Vagal tone and the inflammatory reflex. Cleve Clin J Med 76:S23–6
  • Wellenius G, Saldiva P, Batalha J, et al. (2002). Electrocardiographic changes during exposure to residual oil fly ash (ROFA) particles in a rate model of myocardial infarction. Toxicol Sci 66:327–35
  • Wellenius GA, Bateson TF, Mittleman MA, Schwartz J. (2005). Particulate air pollution and the rate of hospitalization for congestive heart failure among medicare beneficiaries in Pittsburgh, PA. Am J Epidemiol 161:1030–6
  • Widdicombe J, Lee LY. (2001). Airway reflexes, autonomic function, and cardiovascular responses. Environ Health Perspect 109:579–84

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