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Inhalation Toxicology
International Forum for Respiratory Research
Volume 20, 2008 - Issue 1
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Research Article

Pulmonary Inflammation by Ambient Air Particles is Mediated by Superoxide Anion

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Pages 11-15 | Received 02 Aug 2007, Accepted 21 Sep 2007, Published online: 06 Oct 2008

REFERENCES

  • Cadenas E., Sies H. Low-level chemiluminescence as an indicator of singlet molecular oxygen in biological systems. Methods Enzymol. 1984; 105: 221–231
  • Churg A., Xie C., Wang X., Vincent R., Wang R. D. W. Air pollution particles activate NF-kappaB on contact with airway epithelial cell surfaces. Toxicol Appl Pharmacol 2005; 208: 37–45
  • Clarke R. W., Catalano P. J., Coull B., Koutrakis P., Krishna Murty G. G., Rice T., Godleski J. J. Age-related responses in rats to concentrated urban air particles (CAPs). Inhal. Toxicol. 2000a; 1: 73–84
  • Clarke R. W., Catalano P. J., Krishna Murty G. G., Sioutas C., Paulauskis J., Coull B., Ferguson S., Godleski J. J. Urban air particulate inhalation alters pulmonary function and induces pulmonary inflammation in a rodent model of chronic bronchitis. Inhal. Toxicol. 1999; 11: 637–656
  • Clarke R. W., Coull B., Reinisch U., Catalano P., Killingsworth C., Koutrakis P., Kavouras I., Krishna Murty G. G., Lawrence J., Lovett E., Wolfson M., Verrier R., Godleski J. J. Inhaled concentrated ambient particles are associated with hematological and bronchoalveolar lavage changes in canines. Environ. Health Perspect. 2000b; 108: 1179–1187
  • Dick C. A. J., Brown D. M., Donaldson K., Stone V. The role of free radicals in the toxic and inflammatory effects of four different ultrafine particle types. Inhal. Toxicol. 2003; 15: 39–52
  • Evelson P., González-Flecha B. Time course and quantitative analysis of the adaptive responses to mild hyperoxia in the rat lung and heart. Biochim. Biophys. Acta 2000; 1523: 209–216
  • Fernandez Y., Miller T., Denoyelle C., Esteban J. A., Tang W. H., Bengtson A. L., Soengas M. S. Chemical blockage of the proteasome inhibitory function of Bortezomib: Impact on tumor cell death. J. Biol. Chem. 2006; 281: 1107–1118
  • Ghio A. J., Devlin R. B. Inflammatory lung injury after bronchial instillation of air pollution particles. Am. J. Respir. Crit. Care Med. 2001; 164: 704–708
  • Ghio A. J., Kim C., Devlin R. B. Concentrated ambient air particles induce mild pulmonary inflammation in healthy human volunteers. Am. J. Respir. Crit. Care Med. 2001; 162: 981–988
  • Godleski J. J., Verrier R. L., Koutrakis P., Catalano P., Coull B., Reinisch U., Lovett E. G., Lawrence J., Murthy G. G., Wolfson J. M., Clarke R. W., Nearing B. D., Killingsworth C. Mechanisms of morbidity and mortality from exposure to ambient air particles. Res. Rep. Health Effects Inst. 2000; 91: 5–88
  • Gurgueira S., Sigaud S., Macchione M., Lawrence J., González-Flecha B. H2O2-mediated proinflammatory and toxic responses to ambient air particles in primary alveolar type II cells. Air pollution research trends. Nova Science, New York 2007, In press
  • Gurgueira S. A., Lawrence J., Coull B., Krishna Murthy G. G., González-Flecha B. Rapid increases in the steady-state concentration of reactive oxygen species in the lungs and heart after particulate air pollution inhalation. Environ. Health Perspect. 2002; 110: 749–755
  • Hatch G. E., Boykin E., Graham J. A., Lewtas J., Pott F., Loud K., Mumford J. L. Inhalable particles and pulmonary host defense: In vivo and in vitro effects of ambient air and combustion particles. Environ. Res. 1985; 36: 67–80
  • Imrich A., Ning Y., Lawrence J., Coull B., Gitin E., Knutson M., Kobzik L. Alveolar macrophage cytokine response to air pollution particles: Oxidant mechanisms. Toxicol. Appl. Pharmacol. 2007; 218: 256–264
  • Jiang N., Dreher K. L., Dve J. A., Li Y., Richards H., Jr., Martin L. D., Adler K. B. Residual oil fly ash induces cytotoxicity and mucin secretion by guinea pig tracheal epithelial cells vai an oxidant-dependent mechanism. Toxicol. Appl. Pharmacol. 2002; 163: 221–230
  • Jimenez L. A., Thompson J., Brown D. A., Rahman I., Antonicelli F., Duffin R., Drost E. M., Hay R. T., Donaldson K., MacNee W. Activation of NF-kappaB by PM10) occurs via an iron-mediated mechanism in the absence of IkappaB degradation. Toxicol. Appl. Pharmacol. 2000; 166: 101–10
  • Kennedy T., Ghio A. J., Reed W., Samet J., Zagorski J., Quay J., Carter J., Dailey L., Hoidal J. R., Devlin R. B. Copper-dependent inflammation and nuclear factor-kappaB activation by particulate air pollution. Am. J. Respir. Cell Mol. Biol. 1998; 19: 366–378
  • Li N., Wand M., Oberley T. D., Sempf J. M., Nel A. E. Comparison of the pro-oxidant and pro-inflammatory effects of organic diesel exhaust particle chemicals in bronchial epithelial cells and macrophages. J. Immunol. 2002; 169: 4531–4541
  • Li X. Y., Gilmour P. S., Donaldson K., MacNee W. In vivo and in vitro proinflammatory effects of particulate air pollution (PM10). Environ. Health Perspect. 1997; 105: 1279–1283, (Suppl. 5)
  • Lowry O. H., Rosebrough N. J., Farr A. L., Randall R. J. Protein measurement with the Folin phenol reagent. J. Biol. Chem. 1951; 193: 265–275
  • Rhoden C. R., Lawrence J., Godleski J. J., Gonzalez-Flecha B. N-Acetylcysteine prevents lung inflammation after short-term inhalation exposure to concentrated ambient particles. Toxicol. Sci 2004; 79: 209–303
  • Rhoden C. R., Wellenius G., Ghelfi E., Lawrence J., Gonzalez-Flecha B. PM-Induced cardiac oxidative stress is mediated by autonomic stimulation. Biochem. Biophys. Acta 2005; 1725: 305–313
  • Roberts E. S., Richards J. H., Jaskot R., Dreher K. L. Oxidative stress mediates air pollution particle-induced acute lung injury and molecular pathology. Inhal. Toxicol. 2003; 15: 1327–1546
  • Romieu I., Sienra-Monge J. J., Ramírez-Aguilar M., Téllez-Rojo M. M., Moreno-Macías H., Reyes-Ruiz N. I., del Río-Navarro B. E., Ruiz-Navarro M. X., Hatch G., Slade R., Hernandez-Avila M. Antioxidant supplementation and lung functions among children with asthma exposed to high levels of air pollutants. Am. J. Respir. Crit. Care Med. 2002; 166: 703–709
  • Saldiva P. I., Clarke R. W., Coull B., Stearns R. C., Lawrence J., Murthy G. G., Diaz E., Koutrakis P., Suh H., Tsuda A., Godleski J. J. Lung Inflammation induced by concentrated air particles is related to particle composition. Am. J. Respir. Crit. Care Med. 2002; 165: 1610–1617
  • Shukla A., Timblin C., BeruBe K., Gordon T., McKinney W., Driscoll K., Vacek P., Mossman B. T. Inhaled particulate matter causes expression of nuclear factor (NF)-kappaB-related genes and oxidant-dependent NF-kappaB activation in vitro. Am. J. Respir. Cell Mol. Biol. 2000; 23: 182–187
  • Stowe D. F., Aldakkak M., Camara A. K., Riess M. L., Heinen A., Varadarajan S. G., Jiang M. T. Cardiac mitochondrial preconditioning by big Ca2 +-sensitive K+ channel opening requires superoxide radical generation. Am. J. Physiol. Heart Circ. Physiol. 2006; 290: H434–H440
  • Wang J., Wang H., Zhang Y., Gao H., Nattel S., Wang Z. Impairment of HERG K(+) channel function by tumor necrosis factor-alpha: Role of reactive oxygen species as a mediator. J. Biol. Chem. 2004; 279: 13289–13292

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