Publication Cover
Inhalation Toxicology
International Forum for Respiratory Research
Volume 20, 2008 - Issue 4
183
Views
38
CrossRef citations to date
0
Altmetric
Research Article

Acute Pulmonary Effects of Combined Exposure to Carbon Nanotubes and Ozone in Mice

, , &
Pages 391-398 | Received 03 Oct 2007, Accepted 23 Nov 2007, Published online: 06 Oct 2008

REFERENCES

  • Abbey D. E., Nishino N., McDonnell W. F., Burchette R. J., Knutsen S. F., Lawrence Beeson W., Yang J. X. Long-term inhalable particles and other air pollutants related to mortality in nonsmokers. Am. J. Respir. Crit. Care Med. 1999; 159: 373–382
  • Andrews R., Jacques D., Rao A. M., Derbyshire F., Qian D., Fan X., Dickey E. C., Chen J. Continuous production of aligned carbon nanotubes: A step closer to commercial realization. Chem. Phys. Lett. 1999; 303: 467–474
  • Bhalla D. K., Hoffman L. Time course of airway epithelial and inflammatory changes in rats exposed to moderate levels of ozone. Inhal. Toxicol. 1997; 9: 829–842
  • Bhalla D. K. Interactive effects of cigarette smoke and ozone in the induction of lung injury. Toxicol. Sci. 2002; 65: 1–3
  • Bhalla D. K. Ozone-induced lung inflammation and mucosal barrier disruption: Toxicology, mechanisms, and implications. J. Toxicol. Environ. Health B 1999; 2: 31–86
  • Bhalla D. K., Reinhart P. G., Bai C., Gupta S. K. Amelioration of ozone-induced lung injury by anti-tumor necrosis factor-alpha. Toxicol. Sci. 2002; 69: 400–408
  • Chitano P., Hosselet J. J., Mapp C. E., Fabbri L. M. Effect of oxidant air pollutants on the respiratory system: Insights from experimental animal research. Eur. Respir. J. 1995; 8: 1357–1371
  • Cui D., Tian F., Ozkan C. S., Wang M., Gao H. Effect of single wall carbon nanotubes on human HEK293 cells. Toxicol. Lett. 2005; 155: 73–85
  • Devlin R. B., McDonnell W. F., Mann R., Becker S., House D. E., Schreinemachers D., Koren H. S. Exposure of humans to ambient levels of ozone for 6.6 hours causes cellular and biochemical changes in the lung. Am. J. Respir. Cell Mol. Biol. 1991; 4: 72–81
  • Ding L., Stilwell J., Zhang T., Elboudwarej O., Jiang H., Selegue J. P., Cooke P. A., Gray J. W., Chen F. F. Molecular characterization of the cytotoxic mechanism of multiwall carbon nanotubes and nano-onions on human skin fibroblast. Nano Lett. 2005; 5: 2448–2464
  • Donaldson K., Stone V., Clouter A., Renwick L., MacNee W. Ultrafine particles. Occup. Environ. Med. 2001; 58: 211–216
  • Elder A. C., Gelein R., Finkelstein J. N., Cox C., Oberdorster G. Pulmonary inflammatory response to inhaled ultrafine particles is modified by age, ozone exposure, and bacterial toxin. Inhal. Toxicol. Suppl. 2000; 4: 227–246
  • Forastiere F., Stafoggia M., Picciotto S., Bellander T., D'Ippoliti D., Lanki T., von Klot S., Nyberg F., Paatero P., Peters A., Pekkanen J., Sunyer J., Perucci C. A. A case-crossover analysis of out-of-hospital coronary deaths and air pollution in Rome, Italy. Am. J. Respir. Crit. Care Med. 2005; 172: 1549–1555
  • Jang A. S., Choi I. S., Takizawa H., Rhim T., Lee J. H., Park S. W., Park C. S. Additive effect of diesel exhaust particulates and ozone on airway hyperresponsiveness and inflammation in a mouse model of asthma. J. Korean Med. Sci. 2005; 20: 759–763
  • Jia G., Wang H., Yan L., Wang X., Pei R., Yan T., Zhao Y., Guo X. Cytotoxicity of carbon nanomaterials: Single-wall nanotube, multi-wall nanotube, and fullerene. Environ. Sci. Technol. 2005; 39: 1378–1383
  • Kafoury R. M., Kelley J. Ozone enhances diesel exhaust particles (DEP)-induced interleukin-8 (IL-8) gene expression in human airway epithelial cells through activation of nuclear actors-kappaB (NF-kappaB) and IL-6 (NF-IL6). Int. J. Environ. Res. Public Health 2005; 2: 403–410
  • Lam C. W., James J. T., McCluskey R., Arepalli S., Hunter R. L. A review of carbon nanotube toxicity and assessment of potential occupational and environmental health risks. Crit. Rev. Toxicol. 2006; 36: 189–217
  • Lam C. W., James J. T., McCluskey R., Hunter R. L. Pulmonary toxicity of single-wall carbon nanotubes in mice 7 and 90 days after intratracheal instillation. Toxicol. Sci. 2004; 77: 126–134
  • Lappalainen U., Whitsett J. A., Wert S. E., Tichelaar J. W., Bry K. Interleukin-1beta causes pulmonary inflammation, emphysema, and airway remodeling in the adult murine lung. Am. J. Respir. Cell Mol. Biol. 2005; 32: 311–318
  • Last J. A. Global atmospheric change: Potential health effects of acid aerosol and oxidant gas mixtures. Environ. Health Perspect. 1991; 96: 151–157
  • Li L., Hamilton R. F., Jr, Holian A. Protection against ozone-induced pulmonary inflammation and cell death by endotoxin pretreatment in mice: Role of HO-1. Inhal. Toxicol. 2000; 12: 1225–1238
  • Linn W. S., Szlachcic Y., Gong H., Jr, Kinney P. L., Berhane K. T. Air pollution and daily hospital admissions in metropolitan Los Angeles. Environ. Health Perspect. 2000; 108: 427–434
  • Lucey E. C., Keane J., Kuang P. P., Snider G. L., Goldstein R. H. Severity of elastase-induced emphysema is decreased in tumor necrosis factor-alpha and interleukin-1beta receptor-deficient mice. Lab. Invest. 2002; 82: 79–85
  • McConnell R., Berhane K., Gilliland F., London S. J., Vora H., Avol E., Gauderman W. J., Margolis H. G., Lurmann F., Thomas D. C., Peters J. M. Air pollution and bronchitic symptoms in Southern California children with asthma. Environ. Health Perspect. 1999; 107: 757–760
  • McGuckin M. A., Thornton D. J. Detection and quantitation of mucins using chemical, lectin, and antibody methods. Methods Mol. Biol. 2000; 125: 45–55
  • Medina-Ramon M., Zanobetti A., Schwartz J. The effect of ozone and PM10 on hospital admissions for pneumonia and chronic obstructive pulmonary disease: A national multicity study. Am. J. Epidemiol. 2006; 163: 579–588
  • Mudway I. S., Kelly F. J. Ozone and the lung: A sensitive issue. Mol. Aspects Med. 2000; 21: 1–48
  • Muller J., Huaux F., Moreau N., Misson P., Heilier J. F., Delos M., Arras M., Fonseca A., Nagy J. B., Lison D. Respiratory toxicity of multi-wall carbon nanotubes. Toxicol. Appl. Pharmacol. 2005; 207: 221–231
  • Mustafa M. G. Biochemical basis of ozone toxicity. Free Radical Biol. Med. 1990; 9: 245–265
  • Nel A., Xia T., Madler L., Li N. Toxic potential of materials at the nanolevel. Science 2006; 311: 622–627
  • Oberdorster G., Oberdorster E., Oberdorster J. Nanotoxicology: An emerging discipline evolving from studies of ultrafine particles. Environ. Health Perspect. 2005; 113: 823–839
  • Oberdorster G., Utell M. J. Ultrafine particles in the urban air: To the respiratory tract—And beyond?. Environ. Health Perspect. 2002; 110: A440–A441
  • Peters A., Skorkovsky J., Kotesovec F., Brynda J., Spix C., Wichmann H. E., Heinrich J. Associations between mortality and air pollution in central Europe. Environ. Health Perspect. 2000; 108: 283–287
  • Pope C. A., 3rd, Dockery D. W. Health effects of fine particulate air pollution: Lines that connect. J. Air Waste Manage. Assoc. 2006; 56: 709–742
  • Rao G. V., Tinkle S., Weissman D. N., Antonini J. M., Kashon M. L., Salmen R., Battelli L. A., Willard P. A., Hoover M. D., Hubbs A. F. Efficacy of a technique for exposing the mouse lung to particles aspirated from the pharynx. J. Toxicol. Environ. Health A 2003; 66: 1441–1452
  • Ritz B., Wilhelm M., Zhao Y. Air pollution and infant death in southern California, 1989–2000. Pediatrics 2006; 118: 493–502
  • Samet J. M., Dominici F., Curriero F. C., Coursac I., Zeger S. L. Fine particulate air pollution and mortality in 20 U.S. cities, 1987–1994. N. Engl. J. Med. 2000; 343: 1742–1749
  • Schwartz J., Dockery D. W., Neas L. M. Is daily mortality associated specifically with fine particles?. J. Air Waste Manage. Assoc. 1996; 46: 927–399
  • Schwartz J., Norris G., Larson T., Sheppard L., Claiborne C., Koenig J. Episodes of high coarse particle concentrations are not associated with increased mortality. Environ. Health Perspect. 1999; 107: 339–342
  • Schwela D. Air pollution and health in urban areas. Rev. Environ. Health 2000; 15: 13–42
  • Seagrave J., McDonald J. D., Bedrick E., Edgerton E. S., Gigliotti A. P., Jansen J. J., Ke L., Naeher L. P., Seilkop S. K., Zheng M., Mauderly J. L. Lung toxicity of ambient particulate matter from southeastern U.S. sites with different contributing sources: Relationships between composition and effects. Environ. Health Perspect. 2006; 114: 1387–1393
  • Shvedova A. A., Castranova V., Kisin E. R., Schwegler-Berry D., Murray A. R., Gandelsman V. Z., Maynard A., Baron P. Exposure to carbon nanotube material: Assessment of nanotube cytotoxicity using human keratinocyte cells. J. Toxicol. Environ. Health A 2003; 66: 1909–1926
  • Shvedova A. A., Kisin E. R., Mercer R., Murray A. R., Johnson V. J., Potapovich A. I., Tyurina Y. Y., Gorelik O., Arepalli S., Schwegler-Berry D., Hubbs A. F., Antonini J., Evans D. E., Ku B. K., Ramsey D., Maynard A., Kagan V. E., Castranova V., Baron P. Unusual inflammatory and fibrogenic pulmonary responses to single-walled carbon nanotubes in mice. Am. J. Physiol. Lung Cell Mol. Physiol. 2005; 289: L698–L708
  • Stringer B., Kobzik L. Environmental particulate-mediated cytokine production in lung epithelial cells (A549): Role of preexisting inflammation and oxidant stress. J. Toxicol. Environ. Health A 1998; 55: 31–44
  • Tolbert P. E., Mulholland J. A., MacIntosh D. L., Xu F., Daniels D., Devine O. J., Carlin B. P., Klein M., Dorley J., Butler A. J., Nordenberg D. F., Frumkin H., Ryan P. B., White M. C. Air quality and pediatric emergency room visits for asthma in Atlanta, Georgia, USA. Am. J. Epidemiol. 2000; 151: 798–810
  • Warheit D. B., Laurence B. R., Reed K. L., Roach D. H., Reynolds G. A., Webb T. R. Comparative pulmonary toxicity assessment of single-wall carbon nanotubes in rats. Toxicol. Sci. 2004; 77: 117–125
  • Warheit D. B., Webb T. R., Sayes C. M., Colvin V. L., Reed K. L. Pulmonary instillation studies with nanoscale TiO2 rods and dots in rats: Toxicity is not dependent upon particle size and surface area. Toxicol. Sci. 2006; 91: 227–326
  • Warshamana G. S., Corti M., Brody A. R. TNF-alpha, PDGF, and TGF-beta(1) expression by primary mouse bronchiolar-alveolar epithelial and mesenchymal cells: TNF-alpha induces TGF-beta(1). Exp. Mol. Pathol. 2001; 71: 13–33
  • Yu M., Pinkerton K. E., Witschi H. Short-term exposure to aged and diluted sidestream cigarette smoke enhances ozone-induced lung injury in B6C3F1 mice. Toxicol. Sci. 2002; 65: 99–106
  • Zanobetti A., Schwartz J. Race, gender, and social status as modifiers of the effects of PM10 on mortality. J. Occup. Environ. Med. 2000; 42: 469–474

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.