136
Views
7
CrossRef citations to date
0
Altmetric
Original Articles

Acute changes in murine hippocampus and olfactory bulb after nasal instillation of varying size cerium dioxide particles

, , , , &

References

  • Badding, M. A., A. B. Stefaniak, N. R. Fix, K. J. Cummings, and S. S. Leonard. 2014. Cytotoxicity and characterization of particles collected from an indium-tin oxide production facility. J. Toxicol. Environ. Health A 77: 1193–1209.
  • Bernardinelli, Y., P. J. Magistretti, and J. Y. Chatton. 2004. Astrocytes generate Na+-mediated metabolic waves. Proc. Natl. Acad. Sci. USA 101: 14937–14942.
  • Choi, J., H. Kim, P. Kim, E. Jo, H. M. Kim, M. Y. Lee, S. M. Jin, and K. Park. 2015. Toxicity of zinc oxide nanoparticles in rats treated by two different routes: Single intravenous injection and single oral administration. J. Toxicol. Environ. Health A 78: 226–243.
  • Di Bucchianico, S., M. R. Fabbrizi, S. K. Misra, E. Valsami-Jones, D. Berhanu, P. Reip, E. Bergamaschi, and L. Migliore. 2013. Multiple cytotoxic and genotoxic effects induced in vitro by differently shaped copper oxide nanomaterials. Mutagenesis 28: 287–299.
  • Dunnick, K. M., M. A. Badding, D. Schwegler-Berry, J. M. Patete, C. Koenigsmann, S. S. Wong, and S. S. Leonard. 2014. The effect of tungstate nanoparticles on reactive oxygen species and cytotoxicity in raw 264.7 mouse monocyte macrophage cells. J. Toxicol. Environ. Health A 77: 1251–1268.
  • Elias, J. M., M. Margiotta, and D. Gaborc. 1989. Sensitivity and detection efficiency of the peroxidase antiperoxidase (PAP), avidin–biotin peroxidase complex (ABC), and peroxidase-labeled avidin–biotin (LAB) methods. Am. J. Clin. Pathol. 92: 62–67.
  • Esch, F., S. Fabris, L. Zhou, T. Montini, C. Africh, P. Fornasiero, G. Comelli, and R. Rosei. 2005. Electron localization determines defect formation on ceria substrates. Science 309: 752–755.
  • Geraets, L., A. G. Oomen, J. D. Schroeter, V. A. Coleman, and F. R. Cassee. 2012. Tissue distribution of inhaled micro- and nano-sized cerium oxide particles in rats: results from a 28-day exposure study. Toxicol. Sci. 127: 463–473.
  • Joo, J. H., and G. M. Choi. 2009. Micro-solid oxide fuel cell using thick-film ceria. Solid State Ionics 180: 839–842.
  • Jung, H., D. B. Kittelson, and M. R. Zachariah. 2005. The influence of a cerium additive on ultrafine diesel particle emissions and kinetics of oxidation. Combust. Flame 142: 276–288.
  • Kermanizadeh, A., I. Gosens, L. MacCalman, H. Johnston, P. H. Danielsen, N. R. Jacobsen, A. G. Lenz, T. Fernandes, R. P. Schins, F. R. Cassee, H. Wallin, W. Kreyling, T. Stoeger, S. Loft, P. Moller, L. Tran, and V. Stone. 2016. A multilaboratory toxicological assessment of a panel of 10 engineered nanomaterials to human health–ENPRA project—The highlights, limitations, and current and future challenges. J. Toxicol. Environ. Health B 19: 1–28.
  • Kniesel, U., and H. Wolburg. 2000. Tight junctions of the blood–brain barrier. Cell. Mol. Neurobiol. 20: 57–76.
  • Liu, Y., Y. Gao, Y. Liu, B. Li, C. Chen, and G. Wu. 2014. Oxidative stress and acute changes in murine brain tissues after nasal instillation of copper particles with different sizes. J. Nanosci. Nanotechnol. 14: 4534–4540.
  • Liu, Y., Y. Gao, L. Zhang, T. Wang, J. Wang, F. Jiao, W. Li, Y. Liu, Y. Li, B.Li, Z. Chai, G.Wu, and C. Chen. 2009. Potential health impact on mice after nasal instillation of nano-sized copper particles and their translocation in mice. J. Nanosci. Nanotechnol. 9: 6335–6343.
  • Lopez-Moreno, M. L., G. de la Rosa, J. A. Hernandez-Viezcas, J. R. Peralta-Videa, and J. L. Gardea-Torresdey. 2010. X-ray absorption spectroscopy (XAS) corroboration of the uptake and storage of CeO(2) nanoparticles and assessment of their differential toxicity in four edible plant species. J. Agric. Food Chem. 58: 3689–3693.
  • Masui, T., T. Ozaki, K.-I. Machida, and G.-Y. Adachi. 2000. Preparation of ceria–zirconia sub-catalysts for automotive exhaust cleaning. J. Alloys Compounds 303: 49–55.
  • Medina, C., M. J. Santos-Martinez, A. Radomski, O. I. Corrigan, and M. W. Radomski. 2007. Nanoparticles: Pharmacological and toxicological significance. Br. J. Pharmacol. 150: 552–558.
  • Oberdorster, G., V. Castranova, B. Asgharian, and P. Sayre. 2015. Inhalation exposure to carbon nanotubes (CNT) and carbon nanofibers (CNF): Methodology and dosimetry. J. Toxicol. Environ. Health B 18: 121–212.
  • Oberdorster, G., Z. Sharp, V. Atudorei, A. Elder, R. Gelein, W. Kreyling, and C. Cox. 2004. Translocation of inhaled ultrafine particles to the brain. Inhal. Toxicol. 16: 437–445.
  • Park, B., K. Donaldson, R. Duffin, L. Tran, F. Kelly, I. Mudway, J. P. Morin, R. Guest, P. Jenkinson, Z. Samaras, M. Giannouli, H. Kouridis, and P. Martin. 2008. Hazard and risk assessment of a nanoparticulate cerium oxide-based diesel fuel additive—A case study. Inhal. Toxicol. 20: 547–566.
  • Pelinka, L. E., A. Kroepfl, R. Schmidhammer, M. Krenn, W. Buchinger, H. Redl, and A. Raabe. 2004. Glial fibrillary acidic protein in serum after traumatic brain injury and multiple trauma. J. Trauma 57: 1006–1012.
  • Suglia, S. F., A. Gryparis, R. O. Wright, J. Schwartz, and R. J. Wright. 2008. Association of black carbon with cognition among children in a prospective birth cohort study. Am. J. Epidemiol. 167: 280–286.
  • Wang, J., C. Chen, Y. Liu, F. Jiao, W. Li, F. Lao, Y. Li, B. Li, C. Ge, G. Zhou, Y. Gao, Y. Zhao, and Z. Chai. 2008a. Potential neurological lesion after nasal instillation of TiO(2) nanoparticles in the anatase and rutile crystal phases. Toxicol. Lett. 183: 72–80.
  • Wang, J., Y. Liu, F. Jiao, F. Lao, W. Li, Y. Gu, Y. Li, C. Ge, G. Zhou, B. Li, Y. Zhao, Z. Chai, and C. Chen. 2008b. Time-dependent translocation and potential impairment on central nervous system by intranasally instilled TiO(2) nanoparticles. Toxicology 254: 82–90.
  • Wang, J. X., C. Y. Chen, H. W. Yu, J. Sun, B. Li, Y. F. Li, Y. X. Gao, W. He, Y. Y. Huang, Z. F. Chai, Y. L. Zhao, X. Y. Deng, and H. F. Sun. 2007. Distribution of TiO2 particles in the olfactory bulb of mice after nasal inhalation using microbeam SRXRF mapping techniques. J. Radioanal. Nucl. Chem. 272: 527–531.
  • Wason, M. S., and J. Zhao. 2013. Cerium oxide nanoparticles: potential applications for cancer and other diseases. Am. J. Transl. Res. 5: 126–131.
  • Weuve, J., R. C. Puett, J. Schwartz, J. D. Yanosky, F. Laden, and F. Grodstein. 2012. Exposure to particulate air pollution and cognitive decline in older women. Arch. Internal Med. 172:219–227.
  • Yokel, R. A., T. C. Au, R. MacPhail, S. S. Hardas, D. A. Butterfield, R. Sultana, M. Goodman, M. T. Tseng, M. Dan, H. Haghnazar, J. M. Unrine, U. M. Graham, P. Wu, and E. A. Grulke. 2012. Distribution, elimination, and biopersistence to 90 days of a systemically introduced 30 nm ceria-engineered nanomaterial in rats. Toxicol. Sci. 127: 256–268.
  • Yu, T., Y. I. Park, M.-C. Kang, J. Joo, J. K. Park, and H. Y. Won. 2008. Large-scale synthesis of water dispersible ceria nanocrystals by a simple sol–gel process and their use as a chemical mechanical planarization slurry. Eur. J. Inorganic Chem. 2008: 855–858.
  • Zhao, J., and V. Castranova. 2011. Toxicology of nanomaterials used in nanomedicine. J. Toxicol. Environ. Health B Crit. Rev. 14(8): 593–632.

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.