1,701
Views
27
CrossRef citations to date
0
Altmetric
Original Articles

Cytotoxicity and Characterization of Particles Collected From an Indium–Tin Oxide Production Facility

, , , &
Pages 1193-1209 | Received 11 Feb 2014, Accepted 30 Apr 2014, Published online: 11 Sep 2014

REFERENCES

  • Aderem, A., and Underhill, D. M. 1999. Mechanisms of phagocytosis in macrophages. Annu. Rev. Immunol. 17: 593–623.
  • Allison, A. C., Harington, J. S., and Birbeck, M. 1966. An examination of the cytotoxic effects of silica on macrophages. J. Exp. Med. 124: 141–154.
  • Bhattacharjee, S., de Haan, L. H., Evers, N. M., Jiang, X., Marcelis, A. T., Zuilhof, H., Rietjens, I. M., and Alink, G. M. 2010. Role of surface charge and oxidative stress in cytotoxicity of organic monolayer-coated silicon nanoparticles towards macrophage NR8383 cells. Part. Fibre Toxicol. 7: 25.
  • Castranova, V. 2004. Signaling pathways controlling the production of inflammatory mediators in response to crystalline silica exposure: Role of reactive oxygen/nitrogen species. Free Radical Biol. Med. 37: 916–925.
  • Chonan, T., Taguchi, O., and Omae, K. 2007. Interstitial pulmonary disorders in indium-processing workers. Eur. Respir. J. 29: 317–324.
  • Collins, A. R., Oscoz, A. A., Brunborg, G., Gaivao, I., Giovannelli, L., Kruszewski, M., Smith, C. C., and Stetina, R. 2008. The comet assay: Topical issues. Mutagenesis 23: 143–151.
  • Cummings, K. J., Donat, W. E. Ettensohn, D. B., Roggli, V. L., Ingram, P., and Kreiss, K. 2010. Pulmonary alveolar proteinosis in workers at an indium processing facility. Am. J. Respir. Crit. Care Med. 181: 458–464.
  • Cummings, K. J., Nakano, M., Omae, K., Takeuchi, K., Chonan, T., Xiao, Y. I., Harley, R. A., Roggli, V. L., Hebisawa, A., Tallaksen, R. J., Trapnell, B. C., Day, G. A., Saito, R., Stanton, M. L.,Suarthana, E., and Kreiss, K. 2012. Indium lung disease. Chest 141: 1512–1521.
  • Cummings, K. J., Suarthana, E., Edwards, N., Liang, X., Stanton, M. L., Day, G. A., Saito, R., and Kreiss, K. 2013. Serial evaluations at an indium-tin oxide production facility. Am. J. Ind. Med. 56: 300–307.
  • De Waele, M., Renmans, W., Segers, E., Jochmans, K., and Van Camp, B. 1988. Sensitive detection of immunogold-silver staining with darkfield and epi-polarization microscopy. J. Histochem. Cytochem. 36: 679–683.
  • Diabaté, S., Mülhopt, S., Paur, H. R., Wottrich, R., and Krug, H. F. 2002. In vitro effects of incinerator fly ash on pulmonary macrophages and epithelial cells. Int. J. Hyg. Environ. Health 204: 323–326.
  • Fairbairn, D. W., Olive, P. L., and O’Neill, K. L. 1995. The comet assay: A comprehensive review. Mutat. Res. 339: 37–59.
  • Gwinn, W. M., Qu, W., Shines, C. J., Bousquet, R. W., Taylor, G. J., Waalkes, M. P., and Morgan, D. L. 2013. Macrophage solubilization and cytotoxicity of indium-containing particles in vitro. Toxicol. Sci. 135: 414–424.
  • Halliwell, B., and Gutteridge, J. M. 2007. Free radicals in biology and medicine, 4th ed. Oxford, UK: Oxford University Press.
  • Hamaguchi, T., Omae, K., Takebayashi, T., Kikuchi, Y., Yoshioka, N., Nishiwaki, Y., Tanaka, A., Hirata, M., Taguchi, O., and Chonan, T. 2008. Exposure to hardly soluble indium compounds in ITO production and recycling plants is a new risk for interstitial lung damage. Occup. Environ. Med. 65: 51–55.
  • Hinds, W. C. 1999. Uniform particle motion. In Aerosol technology: Properties, behavior, and measurement of airborne particles, chap. 3. Hoboken, NJ: Wiley and Sons.
  • Hiura, T. S., Kaszubowski, M. P., Li, N., and Nel, A. E. 1999. Chemicals in diesel exhaust particles generate reactive oxygen radicals and induce apoptosis in macrophages. J. Immunol. 163: 5582–5591.
  • Homma, T., Ueno, T., Sekizawa, K., Tanaka, A., and Hirata, M. 2003. Interstitial pneumonia developed in a worker dealing with particles containing indium-tin oxide. J. Occup. Health 45: 137–139.
  • Jomova, K., and Valko, M. 2011. Advances in metal-induced oxidative stress and human disease. Toxicology 283: 65–87.
  • Kim, B.-C., Lee, J.-H., Kim, J.-J., and Ikegami, T. 2002. Rapid rate sintering of nanocrystalline indium tin oxide ceramics: Particle size effect. Mater. Lett. 52: 114–119.
  • Leonard, S. S., Chen, B. T., Stone, S. G., Schwegler-Berry, D., Kenyon, A. J., Frazer, D., and Antonini, J. M. 2010. Comparison of stainless and mild steel welding fumes in generation of reactive oxygen species. Part. Fibre Toxicol. 7: 32.
  • Leonard, S. S., Harris, G. K., and Shi, X. 2004. Metal-induced oxidative stress and signal transduction. Free Radical Biol. Med. 37: 1921–1942.
  • Leonard, S. S., Roberts, J. R., Antonini, J. M., Castranova, V., and Shi, X. 2004. PbCrO4 mediates cellular responses via reactive oxygen species. Mol Cell Biochem, 255: 171–179.
  • Leonard, S. S., Xia, C., Jiang, B. H., Stinefelt, B., Klandorf, H., Harris, G. K., and Shi, X. 2003. Resveratrol scavenges reactive oxygen species and effects radical-induced cellular responses. Biochem. Biophys. Res. Commun. 309: 1017–1026.
  • Li, N., Wang, M., Oberley, T. D., Sempf, J. M., and Nel, A. E. 2002. Comparison of the pro-oxidative and proinflammatory effects of organic diesel exhaust particle chemicals in bronchial epithelial cells and macrophages. J. Immunol. 169: 4531–4541.
  • Li, S., Wallis, L. K., Ma, H., and Diamond, S. A. 2014. Phototoxicity of TiO2 nanoparticles to a freshwater benthic amphipod: Are benthic systems at risk? Sci. Total Environ. 466–467:800–808.
  • Lison, D., Laloy, J., Corazzari, I., Muller, J., Rabolli, V., Panin, N., Huaux, F., Fenoglio, I., and Fubini, B. 2009. Sintered indium-tin-oxide (ITO) particles: A new pneumotoxic entity. Toxicol. Sci. 108: 472–481.
  • Liu, H. H., Chen, C. Y., Chen, G. I., Lee, L. H., and Chen, H. L. 2012. Relationship between indium exposure and oxidative damage in workers in indium tin oxide production plants. Int. Arch. Occup. Environ. Health 85: 447–453.
  • Lundborg, M., Dahlen, S. E., Johard, U., Gerde, P., Jarstrand, C., Camner, J., and Lastbom, L. 2006. Aggregates of ultrafine particles impair phagocytosis of microorganisms by human alveolar macrophages. Environ. Res. 100: 197–204.
  • Mercer, R. R., Russell, M. L., Roggli, V. L., and Crapo, J. D. 1994. Cell number and distribution in human and rat airways. Am. J. Respir. Cell Mol. Biol. 10: 613–624.
  • Morley, N., Rapp, A., Dittmar, H., Salter, L., Gould, D., Greulich, K. O., and Curnow, A. 2006. UVA-induced apoptosis studied by the new apo/necro-Comet-assay which distinguishes viable, apoptotic and necrotic cells. Mutagenesis 21: 105–114.
  • Msiska, Z., Pacurari, M., Mishra, A., Leonard, S. S., Castranova, V., and Vallyathan, V. 2010. DNA double-strand breaks by asbestos, silica, and titanium dioxide: Possible biomarker of carcinogenic potential? Am. J. Respir. Cell Mol. Biol. 43: 210–219.
  • Nagano, K., Nishizawa, T., Eitaki, Y., Ohnishi, M., Noguchi, T., Arito, H., and Fukushima, S. 2011. Pulmonary toxicity in mice by 2- and 13-week inhalation exposures to indium-tin oxide and indium oxide aerosols. J. Occup. Health 53: 234–239.
  • Nakano, M., Omae, K., Tanaka, A., Hirata, M., Michikawa, T., Kikuchi, Y., Yoshioka, N., Nishiwaki, Y., and Chonan, T. 2009. Causal relationship between indium compound inhalation and effects on the lungs. J. Occup. Health 51: 513–521.
  • National Institute for Occupational Safety and Health. 2012. Hazard evaluation and technical assistance report: An evaluation of preventive measures at an indium-tin oxide production facility. Morgantown, WV: U.S. Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention. HETA 2009−0214-3153.
  • National Institute for Occupational Safety and Health. 2013. Understanding and preventing indium lung disease: Interim report.
  • Oberdorster, G. 1995. Lung particle overload: Implications for occupational exposures to particles. Regul. Toxicol. Pharmacol. 21: 123–135.
  • Ostling, O., and Johanson, K. J. 1984. Microelectrophoretic study of radiation-induced DNA damages in individual mammalian cells. Biochem. Biophys. Res. Commun. 123: 291–298.
  • Pfau, J. C., Seib, T., Overocker, J., Roe, J., and Ferro, A. S. 2012. Functional expression of system xc− is upregulated by asbestos but not crystalline silica in murine macrophages. Inhal. Toxicol. 24: 476–485.
  • Schneider, C. A., Rasband, W. S., and Eliceiri, K. W. 2012. NIH Image to ImageJ: 25 Years of image analysis. Nat. Methods 9: 671–675.
  • Slee, E. A., Adrain, C., and Martin, S. J. 2001. Executioner caspase-3, -6, and -7 perform distinct, non-redundant roles during the demolition phase of apoptosis. J. Biol. Chem. 276: 7320–7326.
  • Stefaniak, A. B., Harvey, C. J., Bukowski, V. C., and Leonard, S. S. 2010. Comparison of free radical generation by pre- and post-sintered cemented carbide particles. J. Occup. Environ. Hyg. 7: 23–34.
  • Tanaka, A., Hirata, M., Homma, T., and Kiyohara, Y. 2010. Chronic pulmonary toxicity study of indium-tin oxide and indium oxide following intratracheal instillations into the lungs of hamsters. J. Occup. Health 52: 14–22.
  • Thornberry, N. A., and Lazebnik, Y. 1998. Caspases: Enemies within. Science 281: 1312–1316.
  • Udawatte, C. P., and Yanagisawa, K. 2001. Fabrication of low-porosity indium tin oxide ceramics in air from hydrothermally prepared powder. J. Am. Ceramic Soc. 84: 251–253.
  • Valko, M., Rhodes, C. J., Moncol, J., Izakovic, M., and Mazur, M. 2006. Free radicals, metals and antioxidants in oxidative stress-induced cancer. Chem. Biol. Interact. 160: 1–40.
  • Xia, T., Kovochich, M., Liong, M., Zink, J. I., and Nel, A. E. 2007. Cationic polystyrene nanosphere toxicity depends on cell-specific endocytic and mitochondrial injury pathways. ACS Nano 2: 85–96.
  • Yang, H. M., Antonini, J. M., Barger, M. W., Butterworth, L., Roberts, J. R., Ma, J. K., Castranova, V., and Ma, J. Y. 2001. Diesel exhaust particles suppress macrophage function and slow the pulmonary clearance of Listeria monocytogenes in rats. Environ. Health Perspect. 109: 515–521.
  • Ye, J., Wang, S., Leonard, S. S., Sun, Y., Butterworth, L., Antonini, J., Ding, M., Rojanasakul, Y., Vallyathan, V., Castranova, V., and Shi, X. 1999. Role of reactive oxygen species and p53 in chromium(VI)-induced apoptosis. J. Biol. Chem. 274: 34974–3480.
  • Zhou, H., and Kobzik, L. 2007. Effect of concentrated ambient particles on macrophage phagocytosis and killing of Streptococcus pneumoniae. Am. J. Respir. Cell Mol. Biol. 36: 460–465.