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Inhalation Toxicology
International Forum for Respiratory Research
Volume 30, 2018 - Issue 4-5
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Research Article

Effects of nitrous acid exposure on baseline pulmonary resistance and Muc5ac in rats

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Pages 149-158 | Received 26 Jan 2018, Accepted 10 May 2018, Published online: 04 Jun 2018

References

  • Arens F, Gutzwiller L, Baltensperger U, et al. (2001). Heterogeneous reaction of NO2 on diesel soot particles. Environ Sci Technol 35:2191–9.
  • Barth PJ, Müller B, Wagner U, et al. (1995). Quantitative analysis of parenchymal and vascular alterations in NO2-induced lung injury in rats. Eur Respir J 8:1115–21.
  • Beckett WS, Russi MB, Haber AD, et al. (1995). Effect of nitrous acid on lung function in asthmatics: a chamber study. Environ Health Perspect 103:372–5.
  • Blank J, Glasgow JE, Pietra GG, et al. (1988). Nitrogen-dioxide-induced emphysema in rats. Lack of worsening by beta-aminopropionitrile treatment. Am Rev Respir Dis 137:376–9.
  • Brauer M, Rasmussen TR, Kjaergaard SK, et al. (1993). Nitrous acid formation in an experimental exposure chamber. Indoor Air 3:94–105.
  • Chitano P, Rado V, Di Stefano A, et al. (1996). Effect of subchronic in vivo exposure to nitrogen dioxide on lung tissue inflammation, airway microvascular leakage, and in vitro bronchial muscle responsiveness in rats. Occup Environ Med 53:379–86.
  • D'Donoghue JG, Graesser FE. (1962). Effects of sulphur dioxide on Guinea Pigs and Swine. Can J Comp Med Vet Sci 26:255–63.
  • Dunnill MS. (1962). Quantitative methods in the study of pulmonary pathology. Thorax 17:320–8.
  • Febo A, Perrino C, Cortiello M. (1993). A denuder technique for the measurement of nitrous acid in urban atmospheres. Atmos Environ 27:1721–8.
  • Filep Á, Fodor GH, Kun-Szabó F, et al. (2016). Exposure to urban PM1 in rats: development of bronchial inflammation and airway hyperresponsiveness. Respir Res 17:26.
  • Freeman G, Crane SC, Furiosi NJ. (1969). Healing in rat lung after subacute exposure to nitrogen dioxide. Am Rev Respir Dis 100:662–76.
  • George C, Strekowski RS, Kleffmann J, et al. (2005). Photoenhanced uptake of gaseous NO2 on solid organic compounds: a photochemical source of HONO? Faraday Discuss 130:195–210.
  • Giles RE, Finkel MP, Mazurowski J. (1971). Use of an analog on-line computer for the evaluation of pulmonary resistance and dynamic compliance in the anesthetized dog. Arch Int Pharmacodyn Ther 194:213–22.
  • Gutzwiller L, Arens F, Baltensperger U, et al. (2002). Significance of semivolatile diesel exhaust organics for secondary HONO formation. Environ Sci Technol 36:677–82.
  • Han M, Ji X, Li G, et al. (2017). NO2 inhalation enhances asthma susceptibility in a rat model. Environ Sci Pollut Res Int 24:27843–54. DOI: 10.1007/s11356-017-0402-7
  • Jarvis DL, Leaderer BP, Chinn S, et al. (2005). Indoor nitrous acid and respiratory symptoms and lung function in adults. Thorax 60:474–9.
  • Khoder MI. (2002). Nitrous acid concentrations in homes and offices in residential areas in Greater Cairo. J Environ Monit 4:573–8.
  • Koutrakis P, Wolfson JM, Slater JL, et al. (1988). Evaluation of an annular denuder/filter pack system to collect acidic aerosols and gases. Environ Sci Technol 22:1463–8.
  • Ning Y, Shang Y, Huang H, et al. (2013). Attenuation of cigarette smoke-induced airway mucus production by hydrogen-rich saline in rats. PLoS One 8:e83429. DOI: 10.1371/journal.pone.0083429
  • Nishimoto Y, Hisatsune A, Katsuki H, et al. (2010). Glycyrrhizin attenuates mucus production by inhibition of MUC5AC mRNA expression in vivo and in vitro. J Pharmacol Sci 113:76–83.
  • Ohyama M, Oka K, Adachi S, et al. (2010). Effects of nitrous acid exposure on pulmonary tissues in guinea pigs. Inhal Toxicol 22:930–6.
  • Ohyama M, Oka K, Adachi S, et al. (2011). Histological effect of nitrous acid with secondary products of nitrogen dioxide and nitric oxide exposure on pulmonary tissue in mice. J Clinic Toxicol 1:103.
  • Ohyama M, Oka K, Adachi S, et al. (2013). Development of a gaseous nitrous acid generation system for animal exposure experiments. J Clinic Toxicol 3:165.
  • Oka K, Ohyama M, Takenaka N. (2010). Development of a continuous generation system for gaseous nitrous acid using the porous polytetrafluoroetylene tube. J Jpn Soc Atomo Environ 45:73–80.
  • Pitts JN, Jr, Winer AM, Harris GW, et al. (1983). Trace nitrogenous species in urban atmospheres. Environ Health Perspect 52:153–7.
  • Platt U, Perner D, Harris GW, et al. (1980). Observations of nitrous acid in an urban atmosphere by differential optical absorption. Nature 285:312–4.
  • Rasmussen TR, Brauer M, Kjaergaard S. (1995). Effects of nitrous acid exposure on human mucous membranes. Am J Respir Crit Care Med 151:1504–11.
  • Shore S, Kobzik L, Long NC, et al. (1995). Increased airway responsiveness to inhaled methacholine in a rat model of chronic bronchitis. Am J Respir Crit Care Med 151:1931–8.
  • Smeding L, Kuiper JW, Plötz FB, et al. (2013). Aggravation of myocardial dysfunction by injurious mechanical ventilation in LPS-induced pneumonia in rats. Respir Res 14:92.
  • Stemmler K, Ammann M, Donders C, et al. (2006). Photosensitized reduction of nitrogen dioxide on humic acid as a source of nitrous acid. Nature 440:195–8.
  • Takenaka N, Hiroi M, Koteishi H, et al. (2006). Secondary generation of gaseous HONO and its effect on our health. Proceedings of the 6th General Seminar of the Core University Program – Environmental Science & Technology for Sustainability of Asia, 96–100.
  • Thurlbeck WM. (1967). Internal surface area and other measurements in emphysema. Thorax 22:483–96.
  • USEPA (United States Environmental Protection Agency). (2016). Integrated Science Assessment (ISA) for oxides of nitrogen – health criteria (EPA/600/R-15/068). Research Triangle Park (NC): USEPA.
  • Wang X, Li X, Erhardt JA, et al. (2000). Detection of tumor necrosis factor-alpha mRNA induction in ischemic brain tolerance by means of real-time polymerase chain reaction. J Cereb Blood Flow Metab 20:15–20.
  • WHO (World Health Organization). (2005). WHO Air quality guidelines for particulate matter, ozone, nitrogen dioxide and sulfur dioxide. Switzerland: WHO.

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