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Research Articles

Differential pro-inflammatory effects of metal oxide nanoparticles and their soluble ions in vitro and in vivo; zinc and copper nanoparticles, but not their ions, recruit eosinophils to the lungs

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Pages 22-35 | Received 01 Sep 2010, Accepted 05 Jan 2011, Published online: 18 Feb 2011

References

  • Aitken RJ, Chaudhry MQ, Boxall AB, Hull M. 2006. Manufacture and use of nanomaterials: current status in the UK and global trends. Occup Med (Lond) 56(5):300–306.
  • Alivisatos P. 2004. The use of nanocrystals in biological detection. Nat Biotechnol 22(1):47–52.
  • Bihari P, Vippola M, Schultes S, Praetner M, Khandoga AG, Reichel CA, Coester C, Tuomi T, Rehberg M, Krombach F. 2008. Optimized dispersion of nanoparticles for biological in vitro and in vivo studies. Part Fibre Toxicol 5:14.
  • Brown DM, Dickson C, Duncan P, Al-Attili F, Stone V. 2010. Interaction between nanoparticles and cytokine proteins: impact on protein and particle functionality. Nanotechnology 21:215104.
  • Chen LC, Lippmann M. 2009. Effects of metals within ambient air particulate matter (PM) on human health. Inhal Toxicol 21(1):1–31.
  • Cho WS, Duffin R, Poland CA, Howie SE, Macnee W, Bradley M, Megson IL, Donaldson K. 2010. Metal oxide nanoparticles induce unique inflammatory footprints in the lung; important implications for nanoparticle testing. Environ Health Perspect 118:1699–1706.
  • Gates BC. 2008. Catalysis: Individual nanoparticles in action. Nat Nanotechnol 3(10):583–584.
  • Gilmour PS, Rahman I, Donaldson K, MacNee W. 2003. Histone acetylation regulates epithelial IL-8 release mediated by oxidative stress from environmental particles. Am J Physiol Lung Cell Mol Physiol 284(3):L533–540.
  • Gojova A, Guo B, Kota RS, Rutledge JC, Kennedy IM, Barakat AI. 2007. Induction of inflammation in vascular endothelial cells by metal oxide nanoparticles: Effect of particle composition. Environ Health Perspect 115(3):403–409.
  • Haase H, Rink L. 2007. Signal transduction in monocytes: The role of zinc ions. Biometals 20(3–4):579–585.
  • Hetland RB, Refsnes M, Myran T, Johansen BV, Uthus N, Schwarze PE. 2000. Mineral and/or metal content as critical determinants of particle-induced release of IL-6 and IL-8 from A549 cells. J Toxicol Environ Health A 60(1):47–65.
  • Horie M, Nishio K, Fujita K, Endoh S, Miyauchi A, Saito Y, Iwahashi H, Yamamoto K, Nakano H, Nanashima N, 2009a. Protein adsorption of ultrafine metal oxide and its influence on cytotoxicity toward cultured cells. Chem Res Toxicol 22(3):543–553.
  • Horie M, Nishio K, Fujita K, Kato H, Nakamura A, Kinugasa S, Endoh S, Miyauchi A, Yamamoto K, Murayama H, 2009b. Ultrafine NiO particles induce cytotoxicity in vitro by cellular uptake and subsequent Ni(II) release. Chem Res Toxicol 22(8):1415–1426.
  • Jeon KI, Jeong JY, Jue DM. 2000. Thiol-reactive metal compounds inhibit NF-kappa B activation by blocking I kappa B kinase. J Immunol 164(11):5981–5989.
  • Jimenez LA, Drost EM, Gilmour PS, Rahman I, Antonicelli F, Ritchie H, 2002. PM(10)-exposed macrophages stimulate a proinflammatory response in lung epithelial cells via TNF-alpha. Am J Physiol Lung Cell Mol Physiol 282(2): L237–248.
  • Karlsson HL, Gustafsson J, Cronholm P, Moller L. 2009. Size-dependent toxicity of metal oxide particles – a comparison between nano- and micrometer size. Toxicol Lett 188(2):112–118.
  • Korashy HM, El-Kadi AO. 2008. The role of redox-sensitive transcription factors NF-kappaB and AP-1 in the modulation of the Cyp1a1 gene by mercury, lead, and copper. Free Radic Biol Med 44(5):795–806.
  • Lu S, Duffin R, Poland C, Daly P, Murphy F, Drost E, MacNee W, Stone V, Donaldson K. 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(2):241–247.
  • Nohynek GJ, Lademann J, Ribaud C, Roberts MS. 2007. Grey goo on the skin? Nanotechnology, cosmetic and sunscreen safety. Crit Rev Toxicol 37(3):251–277.
  • Matczak W, Gromiec J. 2002. Evaluation of occupational exposure to toxic metals released in the process of aluminum welding. Appl Occup Environ Hyg 17(4):296–303.
  • McNeilly JD, Heal MR, Beverland IJ, Howe A, Gibson MD, Hibbs LR, MacNee W, Donaldson K. 2004. Soluble transition metals cause the pro-inflammatory effects of welding fumes in vitro. Toxicol Appl Pharmacol 196(1):95–107.
  • Moos PJ, Chung K, Woessner D, Honeggar M, Cutler NS, Veranth JM. 2010. ZnO particulate matter requires cell contact for toxicity in human colon cancer cells. Chem Res Toxicol 23:733–739.
  • Ogami A, Morimoto Y, Myojo T, Oyabu T, Murakami M, Todoroki M, Nishi K, Kadoya C, Yamamoto M, Tanaka I. 2009. Pathological features of different sizes of nickel oxide following intratracheal instillation in rats. Inhal Toxicol 21(10):812–818.
  • Ostro B, Feng WY, Broadwin R, Green S, Lipsett M. 2007. The effects of components of fine particulate air pollution on mortality in California: Results from CALFINE. Environ Health Perspect 115(1):13–19.
  • Rosenthal GJ, Germolec DR, Blazka ME, Corsini E, Simeonova P, Pollock P, Kong LY, Kwon J, Luster MI. 1994. Asbestos stimulates IL-8 production from human lung epithelial cells. J Immunol 153(7):3237–3244.
  • Sayes CM, Reed KL, Warheit DB. 2007. Assessing toxicity of fine and nanoparticles: Comparing in vitro measurements to in vivo pulmonary toxicity profiles. Toxicol Sci 97(1):163–180.
  • Schins RP, McAlinden A, MacNee W, Jimenez LA, Ross JA, Guy K, Faux SP, Donaldson K. 2000. Persistent depletion of I kappa B alpha and interleukin-8 expression in human pulmonary epithelial cells exposed to quartz particles. Toxicol Appl Pharmacol 167(2):107–117.
  • Sohaebuddin SK, Thevenot PT, Baker D, Eaton JW, Tang L. 2010. Nanomaterial cytotoxicity is composition, size, and cell type dependent. Part Fibre Toxicol 7:22.
  • Tal TL, Graves LM, Silbajoris R, Bromberg PA, Wu W, Samet JM. 2006. Inhibition of protein tyrosine phosphatase activity mediates epidermal growth factor receptor signaling in human airway epithelial cells exposed to Zn2+. Toxicol Appl Pharmacol 214(1):16–23.
  • Veranth JM, Kaser EG, Veranth MM, Koch M, Yost GS. 2007. Cytokine responses of human lung cells (BEAS-2B) treated with micron-sized and nanoparticles of metal oxides compared to soil dusts. Part Fibre Toxicol 4:2.
  • Wallenborn JG, McGee JK, Schladweiler MC, Ledbetter AD, Kodavanti UP. 2007. Systemic translocation of particulate matter-associated metals following a single intratracheal instillation in rats. Toxicol Sci 98(1):231–239.
  • Yokohira M, Kuno T, Yamakawa K, Hosokawa K, Matsuda Y, Hashimoto N, Suzuki S, Saoo K, Imaida K. 2008. Lung toxicity of 16 fine particles on intratracheal instillation in a bioassay model using F344 male rats. Toxicol Pathol 36(4):620–631.

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