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Original Article

Cytotoxicity and intracellular dissolution of nickel nanowires

, , , , , , , , & show all
Pages 871-880 | Received 09 Sep 2014, Accepted 02 Dec 2015, Published online: 05 Feb 2016

References

  • Albanese A, Chan WCW. 2011. Effect of gold nanoparticle aggregation on cell uptake and toxicity. ACS Nano 5:5478–89
  • Byrne F, Prina-Mello A, Whelan A, Mohamed BM, Davies A, Gun’Ko YK, et al. 2009. High content analysis of the biocompatibility of nickel nanowires. J Magn Magn Mater 321:1341–5
  • Choi DS, Hopkins X, Kringel R, Park J, Jeon IT, Kim YK. 2012. Magnetically driven spinning nanowires as effective materials for eradicating living cells. J Appl Phys 111:07B3291–3
  • Choi DS, Park J, Kim S, Gracias DH, Cho MK, Kim YK, et al. 2008. Hyperthermia with magnetic nanowires for inactivating living cells. J Nanosci Nanotechnol 8:2323–27
  • Contreras MF, Sougrat R, Zaher A, Ravasi T, Kosel J. 2015. Non-chemotoxic induction of cancer cell death using magnetic nanowires. Int J Nanomed 10:2141–53
  • Gaihre B, Khil MS, Lee DR, Kim HY. 2009. Gelatin-coated magnetic iron oxide nanoparticles as carrier system: drug loading and in vitro drug release study. Int J Pharm 365:180–9
  • Gao N, Wang H, Yang E-H. 2010. An experimental study on ferromagnetic nickel nanowires functionalized with antibodies for cell separation. Nanotechnology 21:105107
  • Gonzales-Weimuller M, Zeisberger M, Krishnan KM. 2009. Size-dependant heating rates of iron oxide nanoparticles for magnetic fluid hyperthermia. J Magn Magn Mater 321:1947–50
  • Gooneratne CP, Giouroudi I, Kosel J. 2013. Microdevice with half-ring shaped GMR sensors for magnetic bead manipulation and detection. In: Mukhopadhyay SC, Jayasundera KP, Fuchs A, eds. Advancement in Sensing Technology. Berlin: Springer, 121–38
  • Hossain MZ, Kleve MG. 2011. Nickel nanowires induced and reactive oxygen species mediated apoptosis in human pancreatic adenocarcinoma cells. Int J Nanomed 6:1475–85
  • Hultgren A, Tanase M, Chen CS, Meyer GJ, Reich DH. 2003. Cell manipulation using magnetic nanowires. J Appl Phys 93:7554–56
  • Hultgren A, Tanase M, Chen CS, Reich DH. 2004. High-yield cell separations using magnetic nanowires. IEEE Trans Magn 40:2988–90
  • Hultgren A, Tanase M, Felton EJ, Bhadriraju K, Salem AK, Chen CS, et al. 2005. Optimization of yield in magnetic cell separations using nickel nanowires of different lengths. Biotechnol Prog 21:509–15
  • Julien DC, Richardson CC, Beaux MF, II, Mcilroy DN, Hill RA. 2010. In vitro proliferating cell models to study cytotoxicity of silica nanowires. Nanomed Nanotechnol Biol Med 6:84–92
  • Kasprzak KS, Sunderman FW Jr., Salnikow K. 2003. Nickel carcinogenesis. Mutat Res 533:67–97
  • Kokubo T. 1991. Bioactive glass ceramics: properties and applications. Biomaterials 12:155–63
  • Kong B, Seog JH, Graham LM, Lee SB. 2011. Experimental considerations on the cytotoxicity of nanoparticles. Nanomedicine 6:929–41
  • Kuo SW, Lin HI, Ho JHC, Shih YRV, Chen HF, Yen TJ, et al. 2012. Regulation of the fate of human mesenchymal stem cells by mechanical and stereo-topographical cues provided by silicon nanowires. Biomaterials 33:5013–22
  • Ma C, Song M, Zhang Y, Yan M, Zhang M, Bi H. 2014. Nickel nanowires induce cell cycle arrest and apoptosis by generation of reactive oxygen species in HeLa cells. Toxicol Rep 1:114–21
  • Majno G, Joris I. 1995. Apoptosis, oncosis and necrosis – an overview of cell death. Am J Pathol 146:3–15
  • Muller KH, Kulkarni J, Motskin M, Goode A, Winship P, Skepper JN, et al. 2010. pH-dependent toxicity of high aspect ratio ZnO nanowires in macrophages due to intracellular dissolution. ACS Nano 4:6767–79
  • Okuda-Shimazaki J, Takaku S, Kanehira K, Sonezaki S, Taniguchi A. 2010. Effects of titanium dioxide nanoparticle aggregate size on gene expression. Int J Mol Sci 11:2383–92
  • Perez J, Contreras MF, Vilanova E, Ravasi T, Kosel J. 2013. Cytotoxicity and effects on cell viability of nickel nanowires. Proceedings of the 2013 International Conference on Biological, Medical and Chemical Engineering (MBCE201). Hong Kong: DEStech Publications, Inc., 178–84
  • Poland CA, Byrne F, Cho WS, Prina-Mello A, Murphy FA, Davies GL, et al. 2012. Length-dependent pathogenic effects of nickel nanowires in the lungs and the peritoneal cavity. Nanotoxicology 6:899–911
  • Prina-Mello A, Diao Z, Coey JMD. 2006. Internalization of ferromagnetic nanowires by different living cells. J Nanobiotechnol 4:9
  • Raphael MP, Christodoulides JA, Qadri SN, Simpkins BS, Byers JM. 2010. Magnetic moment degradation of nanowires in biological media: real-time monitoring with SQUID magnetometry. Nanotechnology 21:285101
  • Reich DH, Tanase M, Hultgren A, Bauer LA, Chen CS, Meyer GJ. 2003. Biological applications of multifunctional magnetic nanowires (invited). J Appl Phys 93:7275–80
  • Safi M, Yan M, Guedeau-Boudeville MA, Conjeaud H, Garnier-Thibaud V, Boggetto N, et al. 2011. Interactions between magnetic nanowires and living cells: uptake, toxicity, and degradation. ACS Nano 5:5354–64
  • Shi H, Hudson LG, Liu KJ. 2004. Oxidative stress and apoptosis in metal ion-induced carcinogenesis. Free Radic Biol Med 37:582–93
  • Silva MT. 2010. Secondary necrosis: the natural outcome of the complete apoptotic program. FEBS Lett 584:4491–9
  • Song MM, Song WJ, Bi H, Wang J, Wu WL, Sun J, et al. 2010. Cytotoxicity and cellular uptake of iron nanowires. Biomaterials 31:1509–17
  • Song S, Bohuslav G, Capitano A, Du J, Taniguchi K, Cai Z, et al. 2012. Experimental characterization of electrochemical synthesized Fe nanowires for biomedical applications. J Appl Phys 111:056103
  • Sun L, Hao Y, Chien CL, Searson PC. 2005. Tuning the properties of magnetic nanowires. IBM J Res Dev 49:79–102
  • Tanaka K, Kitamura N, Morita M, Inubushi T, Chujo Y. 2008. Assembly system of direct modified superparamagnetic iron oxide nanoparticles for target-specific MRI contrast agents. Bioorg Med Chem Lett 18:5463–5
  • Varadan VK, Chen L, Xie J. 2008. Nanomedicine: Design and Applications of Magnetic Nanomaterials, Nanosensors and Nanosystems. West Sussex: Wiley
  • Wilhelm C, Gazeau F. 2008. Universal cell labelling with anionic magnetic nanoparticles. Biomaterials 29:3161–74
  • Zhan Y, Cleveland JL, Stevens JL. 1997. A role for c-myc in chemically induced renal-cell death. Mol Cell Biol 17:6755–64
  • Zhang L, Petit T, Lu Y, Kratochvil BE, Peyer KE, Pei R, et al. 2010. Controlled propulsion and cargo transport of rotating nickel nanowires near a patterned solid surface. ACS Nano 4:6228–34
  • Zhang W, Tong L, Yang C. 2012. Cellular binding and internalization of functionalized silicon nanowires. Nano Lett 12:1002–6

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