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Original Article

Comparison of pulmonary inflammatory responses following intratracheal instillation and inhalation of nanoparticles

, , , , , , , , , , , , , , , , & show all
Pages 607-618 | Received 08 Jun 2015, Accepted 03 Oct 2015, Published online: 11 Nov 2015

References

  • Anderson DS, Silva RM, Lee D, Edwards PC, Sharmah A, Guo T, et al. 2015. Persistence of silver nanoparticles in the rat lung: influence of dose, size, and chemical composition. Nanotoxicology 9:591–602
  • Baisch BL, Corson NM, Wade-Mercer P, Gelein R, Kennell AJ, Oberdoester G, Elder A. 2014. Equivalent titanium dioxide nanoparticle deposition by intratracheal instillation and whole body inhalation: the effect of dose rate on acute respiratory tract inflammation. Part Fibre Toxicol 11:5
  • Bermudez E, Mangum JB, Wong BA, Asgharian B, Hext PM, Warheit DB, Everitt JI. 2004. Pulmonary responses of mice, rats, and hamsters to subchronic inhalation of ultrafine titanium dioxide particles. Toxicol Sci 77:347–57
  • Bonner JC, Silva RM, Taylor AJ, Brown JM, Hilderbrand S, Castranova V, et al. 2013. Interlaboratory evaluation of rodent pulmonary responses to engineered nanomaterials: the NIEHS nano GO consortium. Environ Health Perspect 121:676–82
  • Borm PJ, Driscoll K. 1996. Particles, inflammation and respiratory tract carcinogenesis. Toxicol Lett 88:109–13
  • Farina F, Sancini G, Battaglia C, Tinaglia V, Mantecca P, Camatini M, Palestini P. 2013. Milano summer particulate matter (PM10) triggers lung inflammation and extra pulmonary adverse events in mice. PLOS One 8:e56636
  • Fujita K, Morimoto Y, Ogami A, Myojo T, Tanaka I, Shimada M, et al. 2009. Gene expression profiles in rat lung after inhalation exposure to C60 fullerene particles. Toxicology 258:47–55
  • Ho CC, Chang H, Tsai HT, Tsai MH, Yang CS, Ling YC, Lin P. 2013. Quantum dot 705, a cadmium-based nanoparticle, induces persistent inflammation and granuloma formation in the mouse lung. Nanotoxicology 7:105–15
  • IARC Monographs on the Evaluation of Carcinogenic Risks to Humans. 2010. Carbon Black, Titanium Dioxide, and Talc. IARC Monographs (93). Lyon: IARC Press
  • ISO. 2008. Nanotechnologies – Terminology and Definitions for Nanoparticles. ISO-TS 27687. International Organization for Standarization
  • Jeong J, Kim J, Seok SH, Cho WS. 2015. Indium oxide (In2O3) nanoparticles induce progressive lung injury distinct from lung injuries by copper oxide (CuO) and nickel oxide (NiO) nanoparticles. Arch Toxicol. in press
  • Kajiwara T, Ogami A, Yamato H, Oyabu T, Morimoto Y, Tanaka I. 2007. Effect of particle size of intratracheally instilled crystalline silica on pulmonary inflammation. J Occup Health 49:88–94
  • Kobayashi N, Naya M, Endoh S, Maru J, Yamamoto K, Nakanishi J. 2009. Comparative pulmonary toxicity study of nano-TiO(2) particles of different sizes and agglomerations in rats: different short- and long-term post-instillation results. Toxicology 264:110–18
  • Krug HF. 2014. Nanosafety research – are we on the right track? Angew Chem Int Ed Engl 53:12304–19
  • Kubo M, Nakaoka A, Morimoto K, Shimada M, Horie M, Morimoto Y, Sasaki T. 2014. Aerosol generation by a spray-drying technique under coulomb explosion and rapid evaporation for the preparation of aerosol particles for inhalation tests. Aerosol Sci Technol 48:698–705
  • Lu S, Duffin R, Poland C, Daly P, Murphy F, Drost E, et al. 2009. Efficacy of simple short-term in vitro assays for predicting the potential of metal oxide nanoparticles to cause pulmonary inflammation. Environ Health Perspect 117:241–7
  • Ma-Hock L, Treumann S, Strauss V, Brill S, Luizi F, Mertler M, et al. 2009. Inhalation toxicity of multiwall carbon nanotubes in rats exposed for 3 months. Toxicol Sci 112:468–81
  • Morimoto Y, Hirohashi M, Horie M, Ogami A, Oyabu T, Myojo T, et al. 2014. Expression of cytokine-induced neutrophil chemoattractant in rat lungs following an intratracheal instillation of micron-sized nickel oxide nanoparticle agglomerates. Toxicol Ind Health 30:851–60
  • Morimoto Y, Hirohashi M, Ogami A, Oyabu T, Myojo T, Nishi K, et al. 2010b. Inflammogenic effect of well-characterized fullerenes in inhalation and intratracheal instillation studies. Part Fibre Toxicol 7:4
  • Morimoto Y, Horie M, Kobayashi N, Shimada M. 2013a. Inhalation toxicity assessment of carbon-based nanoparticles. Acc Chem Res 46:770–81
  • Morimoto Y, Ogami A, Todoroki M, Yamamoto M, Murakami M, Hirohashi M, et al. 2010a. Expression of inflammation-related cytokines following intratracheal instillation of nickel oxide nanoparticles. Nanotoxicol 4:161–76
  • Morimoto Y, Oyabu T, Horie M, Kambara T, Izumi H, Kuroda E, et al. 2013b. Pulmonary toxicity of printer toner following inhalation and intratracheal instillation. Inhal Toxicol 25:679–90
  • Nishi K, Morimoto Y, Ogami A, Murakami M, Myojo T, Oyabu T, et al. 2009. Expression of cytokine-induced neutrophil chemoattractant in rat lungs by intratracheal instillation of nickel oxide nanoparticles. Inhal Toxicol 21:1030–9
  • Oyabu T, Morimoto Y, Hirohashi M, Horie M, Kambara T, Lee BW, et al. 2013. Dose-dependent pulmonary response of well-dispersed titanium dioxide nanoparticles following intratracheal instillation. J Nanopart Res 15:1600
  • Pauluhn J. 2010. Subchronic 13-week inhalation exposure of rats to multiwalled carbon nanotubes: toxic effects are determined by density of agglomerate structures, not fibrillar structures. Toxicol Sci 113:226–42
  • Pauluhn J. 2011. Poorly soluble particulates: searching for a unifying denominator of nanoparticles and fine particles for DNEL estimation. Toxicology 279:176–88
  • Porter DW, Hubbs AF, Chen BT, McKinney W, Mercer RR, Wolfarth MG, et al. 2013. Acute pulmonary dose–responses to inhaled multi-walled carbon nanotubes. Nanotoxicology 7:1179–94
  • Quinlan TR, Berube KA, Marsh JP, Janssen YM, Taishi P, Leslie KO, et al. 1995. Patterns of inflammation, cell proliferation, and related gene expression in lung after inhalation of chrysotile asbestos. Am J Pathol 147:728–39
  • Sato T, Takeno M, Honma K, Yamauchi H, Saito Y, Sasaki T, et al. 2006. Heme oxygenase-1, a potential biomarker of chronic silicosis, attenuates silica-induced lung injury. Am J Respir Crit Care Med 174:906–14
  • Shacter E, Weitzman SA. 2002. Chronic inflammation and cancer. Oncology 16:217–32
  • Shimada M, Wang WN, Okuyama K, Myojo T, Oyabu T, Morimoto Y, et al. 2009. Development and evaluation of an aerosol generation and supplying system for inhalation experiments of manufactured nanoparticles. Environ Sci Technol 43:5529–34
  • Silva RM, Doudrick K, Franzi LM, TeeSy C, Anderson DS, Wu Z, et al. 2014. Instillation versus inhalation of multiwalled carbon nanotubes: exposure-related health effects, clearance, and the role of particle characteristics. ACS Nano 8:8911–31
  • Shvedova AA, Kisin E, Murray AR, Johnson VJ, Gorelik O, Arepalli S, et al. 2008. Inhalation vs. aspiration of single-walled carbon nanotubes in C57BL/6 mice: inflammation, fibrosis, oxidative stress, and mutagenesis. Am J Physiol Lung Cell Mol Physiol 295:L552–65
  • Warheit DB, Bruck WJ, Lee KP, Webb TR, Reed KL. 2005. Comparative pulmonary toxicity inhalation and instillation studies with different TiO2 particle formulations: impact of surface treatments on particle toxicity. Toxicol Sci 88:514–24
  • Warheit DB, Webb TR, Reed KL, Frerichs S, Sayes CM. 2007. Pulmonary toxicity study in rats with three forms of ultrafine-TiO2 particles: differential responses related to surface properties. Toxicology 230:90–104
  • Yoshiura Y, Izumi H, Oyabu T, Hashiba M, Kambara T, Mizuguchi Y, et al. 2015. Pulmonary toxicity of well-dispersed titanium dioxide nanoparticles following intratracheal instillation. J Nanopart Res 17:241

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