387
Views
14
CrossRef citations to date
0
Altmetric
Original Articles

Lung Alterations Following Single or Multiple Low-Dose Carbon Black Nanoparticle Aspirations in Mice

, , , , , , , & show all
Pages 1317-1332 | Received 21 Aug 2013, Accepted 07 Oct 2013, Published online: 27 Nov 2013

REFERENCES

  • Aam , B. B. and Fonnum , F. 2007 . Carbon black particles increase reactive oxygen species formation in rat alveolar macrophages in vitro . Arch. Toxicol , 81 : 441 – 446 .
  • Akdis , M. , Burgler , S. , Crameri , R. , Eiwegger , T. , Fujita , H. , Gomez , E. , Klunker , S. , Meyer , N. , O'Mahony , L. , Palomares , O. , Rhyner , C. , Ouaked , N. , Schaffartzik , A. , Van De Veen , W. , Zeller , S. , Zimmermann , M. and Akdis , C. A. 2011 . Interleukins, from 1 to 37, and interferon-γ: receptors, functions, and roles in diseases. J , 127 : 701 – 721 . Allergy Clin. Immunol
  • Baan , R. A. 2007 . Carcinogenic hazards from inhaled carbon black, titanium dioxide, and talc not containing asbestos or asbestiform fibers: Recent evaluations by an IARC Monographs Working Group . Inhal. Toxicol , 19 : 213 – 228 .
  • Barlow , P. G. , Clouter-Baker , A. , Donaldson , K. , Maccallum , J. and Stone , V. 2005 . Carbon black nanoparticles induce type II epithelial cells to release chemotaxins for alveolar macrophages . Part. Fibre Toxicol , 2 : 11
  • Bartlett , G. R. 1959 . Phosphorus assay in column chromatography . J. Biol. Chem , 234 : 466 – 468 .
  • Beck-Speier , I. , Dayal , N. , Karg , E. , Maier , K. L. , Schumann , G. , Schulz , H. , Semmler , M. , Takenaka , S. , Stettmaier , K. , Bors , W. , Ghio , A. , Samet , J. M. and Heyder , J. 2005 . Oxidative stress and lipid mediators induced in alveolar macrophages by ultrafine particles . Free Radical Biol. Med , 38 : 1080 – 1092 .
  • Belade , E. , Armand , L. , Martinon , L. , Kheuang , L. , Fleury-Feith , J. , Baeza-Squiban , A. , Lanone , S. , Billon-Galland , M. A. , Pairon , J. C. and Boczkowski , J. 2012 . A comparative transmission electron microscopy study of titanium dioxide and carbon black nanoparticles uptake in human lung epithelial and fibroblast cell lines . Toxicol. In Vitro , 26 : 57 – 66 .
  • Bello , D. , Martin , J. , Santeufemio , C. , Sun , Q. , Bunker , K. L. , Shafer , M. and Demokritou , P. 2013 . Physicochemical and morphological characterization of nanoparticles from photocopiers: Implications for environmental health . Nanotoxicology , 7 : 989 – 1003 .
  • Bourdon , J. A. , Saber , A. T. , Jacobsen , N. R. , Jensen , K. A. , Madsen , A. M. , Lamson , J. S. , Wallin , H. , Møller , P. , Loft , S. , Yauk , C. L. and Vogel , U. B. 2012 . Carbon black nanoparticle instillation induces sustained inflammation and genotoxicity in mouse lung and liver . Part. Fibre Toxicol , 9 : 5
  • Brain , J. D. , Knudson , D. E. , Sorokin , S. P. and Davis , M. A. 1976 . Pulmonary distribution of particles given by intratracheal instillation or by aerosol inhalation . Environ. Res , 11 : 13 – 33 .
  • Brown , D. M. , Dickson , C. , Duncan , P. , Al-Attili , F. and Stone , V. 2010 . Interaction between nanoparticles and cytokine proteins: Impact on protein and particle functionality . Nanotechnology , 21 : 215104
  • Clouter , A. , Brown , D. , Höhr , D. , Borm , P. and Donaldson , K. 2001 . Inflammatory effects of respirable quartz collected in workplaces versus standard DQ12 quartz: Particle surface correlates . Toxicol. Sci , 63 : 90 – 98 .
  • Corti , M. , Brody , A. R. and Harrison , J. H. 1996 . Isolation and primary culture of murine alveolar type II cells . Am J. Respir. Cell Mol. Biol , 14 : 309 – 315 .
  • Creutzenberg , O. , Hansen , T. , Ernst , H. , Muhle , H. , Oberdörster , G. and Hamilton , R. 2008 . Toxicity of a quartz with occluded surfaces in a 90-day intratracheal instillation study in rats . Inhal. Toxicol , 20 : 995 – 1008 .
  • Dahl , A. , Gharibi , A. , Swietlicki , E. , Gudmundsson , A. , Bohgard , M. , Ljungman , A. , Blomqvist , G. and Gustafsson , M. 2006 . Traffic generated emissions of ultrafine particles from pavement-tire interface . Atmos. Environ , 40 : 1314 – 1323 .
  • De Vooght , V. , Vanoirbeek , J. A. , Haenen , S. , Verbeken , E. , Nemery , B. and Hoet , P. H. 2009 . Oropharyngeal aspiration: An alternative route for challenging in a mouse model of chemical-induced asthma . Toxicology , 259 : 84 – 89 .
  • Diabaté , S. , Bergfeldt , B. , Plaumann , D. , Ubel , C. and Weiss , C. 2011 . Anti-oxidative and inflammatory responses induced by fly ash particles and carbon black in lung epithelial cells . Anal. Bioanal. Chem , 401 : 3197 – 3212 .
  • Edwards , Y. S. 2001 . Stretch stimulation: Its effects on alveolar type II cell function in the lung . Comp. Biochem. Physiol. A Mol. Integr. Physiol , 129 : 245 – 260 .
  • Fehrenbach , H. 2001 . Alveolar epithelial type II cell: Defender of the alveolus revisited . Respir. Res , 2 : 33 – 46 .
  • Glaab , T. , Daser , A. , Braun , A. , Neuhaus-Steinmetz , U. , Fabel , H. , Alarie , Y. and Renz , H. 2001 . Tidal midexpiratory flow as a measure of airway hyperresponsiveness in allergic mice . Am. J. Physiol. Lung Cell Mol. Physiol , 280 : L565 – L573 .
  • Guo , N. L. , Wan , Y. W. , Denvir , J. , Porter , D. W. , Pacurari , M. , Wolfarth , M. G. , Castranova , V. and Qian , Y. 2012 . Multiwalled carbon nanotube-induced gene signatures in the mouse lung: Potential predictive value for human lung cancer risk and prognosis . J. Toxicol. Environ. Health A , 75 : 1129 – 1153 .
  • Hoet , P. H. , Brüske-Hohlfeld , I. and Salata , O. V. 2004 . Nanoparticles—Known and unknown health risks . J. Nonobiotechnol , 2 : 12
  • Holder , A. L. , Goth-Goldstein , R. , Lucas , D. and Koshland , C. P. 2012 . Particle-induced artifacts in the MTT and LDH viability assays . Chem. Res. Toxicol , 25 : 1885 – 1892 .
  • Husain , M. , Saber , A. T. , Guo , C. , Jacobsen , N. R. , Jensen , K. A. , Yauk , C. L. , Williams , A. , Vogel , U. , Wallin , H. and Halappanavar , S. 2013 . Pulmonary instillation of low doses of titanium dioxide nanoparticles in mice leads to particle retention and gene expression changes in the absence of inflammation . Toxicol. Appl. Pharmacol , 269 : 250 – 262 .
  • International Carbon Black Association. 2012. International Carbon Black Association Online, 2012(accessed August 20, 2013). http://carbon-black.org (http://carbon-black.org)
  • Jacobsen , N. R. , Pojana , G. , White , P. , Møller , P. , Cohn , C. A. , Korsholm , K. S. , Vogel , U. , Marcomini , A. , Loft , S. and Wallin , H. 2008 . Genotoxicity, cytotoxicity, and reactive oxygen species induced by single-walled carbon nanotubes and C60 fullerenes in the FE1-MutaTM mouse lung epithelial cells . Environ. Mol. Mutagen , 49 : 476 – 487 .
  • Jacobsen , N. R. , Saber , A. T. , White , P. , Møller , P. , Pojana , G. , Vogel , U. , Loft , S. , Gingerich , J. , Soper , L. , Douglas , G. R. and Wallin , H. 2007 . Increased mutant frequency by carbon black, but not quartz, in the lacZ and cII transgenes of muta mouse lung epithelial cells . Environ. Mol. Mutagen , 48 : 451 – 461 .
  • Junqueira , L. C. , Bignolas , G. and Brentani , R. R. 1979 . Picrosirius staining plus polarization microscopy, a specific method for collagen detection in tissue sections . Histochem. J , 11 : 447 – 455 .
  • Kendall , M. , Brown , L. and Trought , K. 2004 . Molecular adsorption at particle surfaces: A PM toxicity mediation mechanism . Inhal. Toxicol , 1 : 99 – 105 .
  • Kim , J. J. , Smorodinsky , S. , Lipsett , M. , Singer , B. C. , Hodgson , A. T. and Ostro , B. 2004 . Traffic-related air pollution near busy roads . Am. J. Respir. Crit. Care Med , 170 : 52 – 526 .
  • Kim , J. S. , Song , K. S. , Joo , H. J. , Lee , J. H. and Yu , I. J. 2010 . Determination of cytotoxicity attributed to multiwall carbon nanotubes (MWCNT) in normal human embryonic lung cell (WI-38) line . J. Toxicol. Environ. Health A , 73 : 1521 – 1529 .
  • Kinnula , V. L. and Crapo , J. D. 2003 . Superoxide dismutases in the lung and human lung diseases . Am. J. Respir. Crit. Care Med , 167 : 1600 – 1619 .
  • Kolling , A. , Ernst , H. , Rittinghausen , S. and Heinrich , U. 2011 . Relationship of pulmonary toxicity and carcinogenicity of fine and ultrafine granular dusts in a rat bioassay . Inhal. Toxicol , 23 : 544 – 554 .
  • Lakatos , H. F. , Burgess , H. A. , Thatcher , T. H. , Redonnet , M. R. , Hernady , E. , Williams , J. P. and Sime , P. J. 2006 . Oropharyngeal aspiration of a silica suspension produces a superior model of silicosis in the mouse when compared to intratracheal instillation . Exp. Lung Res , 32 : 181 – 199 .
  • Layachi , S. , Rogerieux , F. , Robidel , F. , Lacroix , G. and Bayat , S. 2012 . Effet of combined nitrogen dioxide and carbon nanoparticle exposure on lung function during ovalbumin sensitization in brown Norway rat . PLoS One , 7 : e45687
  • Lee , C. and Hsu , D. 2007 . Measurements of fine and ultrafine particles formation in photocopy centers in Taiwan . Atmos. Environ , 41 : 6598 – 6609 .
  • Levy , L. , Chaudhuri , I. , Krueger , N. and McCunney , R. 2012 . Does carbon black disaggregate in lung fluid? A critical assessment . Chem. Res. Toxicol , 25 : 2001 – 2006 .
  • Livak , K. J. and Schmittgen , T. D. 2001 . Analysis of relative gene expression data using real-time quantitative PCR and the 2(–Delta Delta C(T)) method . Methods , 25 : 402 – 408 .
  • Long , C. M. , Nascarella , M. A. and Valberg , P. A. 2013 . Carbon black vs. black carbon and other airborne materials containing elemental carbon: Physical and chemical distinctions . Environ. Pollut , 181 : 271 – 286 .
  • MacNee , W. and Donaldson , K. 2003 . Mechanism of lung injury caused by PM10 and ultrafine particles with special reference to COPD . Eur. Respir. J. Suppl , 40 : 47 – 51 .
  • Magdolenova , Z. , Lorenzo , Y. , Collins , A. and Dusinska , M. 2012 . Can standard genotoxicity tests be applied to nanoparticles? . J. Toxicol. Environ. Health A , 75 : 800 – 806 .
  • Oberdörster , G. , Maynard , A. , Donaldson , K. , Castranova , V. , Fitzpatrick , J. , Ausman , K. , Carter , J. , Karn , B. , Kreyling , W. , Lai , D. , Olin , S. , Monteiro-Riviere , N. , Warheit , D. and Yang , H. 2005 . Principles for characterizing the potential human health effects from exposure to nanomaterials: Elements of a screening strategy . Part. Fibre Toxicol , 2 : 8
  • Pacurari , M. , Castranova , V. and Vallyathan , V. 2010 . Single- and multi-wall carbon nanotubes versus asbestos: Are the carbon nanotubes a new health risk to humans? . J. Toxicol. Environ. Health A , 73 : 378 – 395 .
  • Pacurari , M. , Qian , Y. , Fu , W. , Schwegler-Berry , D. , Ding , M. , Castranova , V. and Guo , N. L. 2012 . Cell permeability, migration, and reactive oxygen species induced by multiwalled carbon nanotubes in human microvascular endothelial cells . J. Toxicol. Environ. Health A , 75 : 129 – 147 .
  • Pirela , S. , Molina , R. , Watson , C. , Cohen , J. M. , Bello , D. , Demokritou , P. and Brain , J. 2013 . Effects of copy center particles on the lungs: A toxicological characterization using a Balb/c mouse model . Inhal. Toxicol , 25 : 498 – 508 .
  • Puchtler , H. , Waldrop , F. S. and Valentine , L. S. 1973 . Polarization microscopic studies of connective tissue stained with picro-sirius red FBA . Beitr. Pathol , 150 : 174 – 187 .
  • 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. and Hubbs , A. F. 2003 . Efficacy of a technique for exposing the mouse lung to particles aspirated from the pharynx . J. Toxicol. Environ. Health A , 66 : 1441 – 1452 .
  • Renwick , L. C. , Brown , D. , Clouter , A. and Donaldson , K. 2004 . Increased inflammation and altered macrophage chemotactic responses caused by two ultrafine particle types . Occup. Environ. Med , 61 : 442 – 447 .
  • Rothen-Rutishauser , B. , Blank , F. , Mühlfeld , C. and Gehr , P. 2008 . In vitro models of the human epithelial airway barrier to study the toxic potential of particulate matter . Expert Opin. Drug Metab. Toxicol , 4 : 1075 – 1089 .
  • Roursgaard , M. , Jensen , K. A. , Poulsen , S. S. , Jensen , N. E. , Poulsen , L. K. , Hammer , M. , Nielsen , G. D. and Larsen , S. T. 2011 . Acute and subchronic airway inflammation after intratracheal instillation of quartz and titanium dioxide agglomerates in mice . Sci. World J , 11 : 801 – 825 .
  • Sibille , Y. and Reynolds , H. Y. 1990 . Macrophages and polymorphonuclear neutrophils in lung defense and injury . Am Rev. Respir. Dis , 141 : 471 – 501 .
  • Stoeger , T. , Reinhard , C. , Takenaka , S. , Schroeppel , A. , Karg , E. , Ritter , B. , Heyder , J. and Schulz , H. 2006 . Instillation of six different ultrafine carbon particles indicates a surface area threshold dose for acute lung inflammation in mice . Environ. Health Perspect , 114 : 328 – 333 .
  • Sydlik , U. , Bierhals , K. , Soufi , M. , Abel , J. , Schins , R. P. and Unfried , K. 2006 . Ultrafine carbon particles induce apoptosis and proliferation in rat lung epithelial cells via specific signaling pathways both using EGF-R . Am J. Physiol. Lung Cell Mol. Physiol , 291 : 725 – 733 .
  • Tabet , L. , Bussy , C. , Amara , N. , Setyan , A. , Grodet , A. , Rossi , M. J. , Pairon , J. C. , Boczkowski , J. and Lanone , S. 2009 . Adverse effects of industrial multiwalled carbon nanotubes on human pulmonary cells . J. Toxicol. Environ. Health A , 72 : 60 – 73 .
  • Thompson , A. B. , Robbins , R. A. , Romberger , D. J. , Sisson , J. H. , Spurzem , J. R. , Teschler , H. and Rennard , S. I. 1995 . Immunological functions of the pulmonary epithelium . Eur. Respir. J , 8 : 127 – 149 .
  • Wang , L. , Mercer , R. R. , Rojanasakul , Y. , Qiu , A. , Lu , Y. , Scabilloni , J. F. , Wu , N. and Castranova , V. 2010 . Direct fibrogenic effects of dispersed single-walled carbon nanotubes on human lung fibroblasts . J. Toxicol. Environ. Health A , 73 : 410 – 422 .

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.