264
Views
12
CrossRef citations to date
0
Altmetric
Research Article

Photocatalytic and phototoxic properties of TiO2-based nanofilaments: ESR and AFM assays

, , , , &
Pages 813-824 | Received 23 Mar 2011, Accepted 01 Sep 2011, Published online: 13 Oct 2011

References

  • Armstrong AR, Armstrong J, Canales J, Bruce PG. 2004. TiO2-B nanowires. Angew Chem Int Ed 43:2286–2288.
  • Armstrong G, Armstrong AR, Canales J, Bruce PG. 2005. Nanotubes with the TiO2-B structures. Chem Commun 19:2454–2456.
  • Blake DM, Maness PC, Huang Z, Wolfrum EJ, Huang J. 1999. Application of the photocatalytic chemistry of titanium dioxide to disinfection and the killing of cancer cells. Sep Purif Methods 28:1–50.
  • Braydich-Stolle LK, Schaeublin NM, Murdock RC, Jiang J, Biswas P, Schlager JJ, Hussain SM. 2009. Crystal structure mediates mode of cell death in TiO2 nanotoxicity. J Nanopart Res 11:1361–1374.
  • Cai R, Hashimoto K, Itoh K, Kubota Y, Fujishima A. 1991. Photokilling of malignant cells with ultrafine titanium dioxide powder. Bull Chem Soc Jpn 64:1268–1273.
  • Chen Q, Du GG, Zhang S, Peng LM. 2002. The structure of trititanate nanotubes. Acta Crystallogr B 58:587.
  • Chen XD, Wang Z, Liao ZF, Mai YL, Zhang MQ. 2007. Roles of anatase and rutile TiO2 nanoparticles in photooxidation of polyurethane. Polymer Test 26:202–208.
  • Colton CA, Gilbert DL. 1987. Production of superoxide anions by a CNS macrophage, the microglia. FEBS Lett 223:284–288.
  • Conlon KA, Rosenquist T, Berrios M. 2002. Site-directed photochemical disruption of the actin cytoskeleton by actin-binding Rose Bengal-conjugates. J Photochem Photobiol B 68:140–146.
  • Cunningham CC. 1995. Actin polymerization and intracellular solvent flow in cell surface blebbing. J Cell Biol 129:1589–1599.
  • Cunninghan CC, Gorlin JB, Kwiatkowski DJ, Hartwig JH, Janmey PA, Byers HR, Stossel TP. 1992. Actin-binding protein requirement for cortical stability and efficient locomotion. Science 255:325–327.
  • Davies MJ. 2005. The oxidative environment and protein damage. Biochim Biophys Acta 1703:93–109.
  • De Lorenzo AJ. 1970. The olfactory neuron and the blood–brain barrier. In: Wolstenholme G, Knight J. editors. Taste and Smell in Vertebrates London: J&A Churchill. pp. 151–176.
  • Engel A, Schoenenberger CA, Müller DJ. 1997. High resolution imaging of native biological sample surfaces using scanning probe microscopy. Curr Opin Struct Biol 7:279–284.
  • Fujishima A, Honda K. 1972. Electrochemical Photolysis of water at a semiconductor electrode. Nature 238:37–38.
  • Fujishima A, Rao TN, Tryk DA. 2000. Titanium dioxide photocatalysis. J Photochem Photobiol C Photochem Rev 1:1–21.
  • Gardel ML, Nakamura F, Hartwig JH, Crocker JC, Stossel TP, Weitz DA. 2006. Prestressed F-actin networks cross-linked by hinged filamins replicate mechanical properties of cells. PNAS 103:1762–1767.
  • Gheshlaghi ZN, Gholam HR, Shahin A, Mahmoud G, Roya M. 2008. Toxicity and interaction of titanium dioxide nanoparticles with microtubule protein. Acta Biochim Biophys Sin 40(9):777–782.
  • Gogniat G, Thyssen M, Denis M, Pulgarin C, Dukan S. 2006. The bactericidal effect of TiO2 photocatalysis involves adsorption onto catalyst and the loss of membrane integrity. FEMS Microbiol Lett 258:18–24.
  • Hirakawa T, Kominami H, Ohtani B, Nosaka Y. 2001. Mechanism of photocatalytic production of active oxygens on highly crystalline TiO2 particles by means of chemiluminescence probing and ESR spectroscopy. J Phys Chem B 105:6993–6999.
  • Huang NP, Xu MH, Yuan CW, Yu RR. 1997. The study of the photokilling effect and mechanism of ultrafine TiO2 particles on U937 cells. J Photochem Photobiol A Chem 108:229–233.
  • Janmey P, Chaponnier Ch. 1995. Medical aspects of the actin cytoskeleton. Curr Opin Cell Biol 7:111–117.
  • Janmey P. 1998. The cytoskeleton and cell signaling: component localisation and mechanical coupling. Physiol Rev 78:763–781.
  • Juhasz I, Albelda SM, Elder DE, Murphy GF, Adachi K, Herlyn D, 1993. Regulation of extracellular matrix proteins and integrin cell substratum adhesion receptors on epithelium during cutaneous human wound healing in vivo. Am J Pathol 143:528.
  • Kamat PV. 2008. Quantum Dot Solar Cells. Semiconductor Nanocrystals as Light Harvesters. J Phys Chem C 112, 18737–18753.
  • Kolmakov A, Moskovits M. 2004. Chemical Sensing and catalysis by One-dimensional metal-oxide nanostructures. Annu Rev Mater Res 34:151–180.
  • Kuang D, Brillet J, Chen P, Takata M, Uchida S, Miura H, 2008. Application of highly ordered TiO2 nanotube arrays in flexible dye-sensitized solar cells. ACS Nano 2:1113–116.
  • Kwiatkowski DJ. 1999. Function of gelsolin: motility, signaling, apoptosis, cancer. Cur Opin Cell Biol 11:103–108.
  • Lekka M, Laidler P, Gil D, Lekki J, Stachura Z, Hrynkiewicz AZ. 1999. Elasticity of normal and cancerous human bladder cells studied by scanning force microscopy. Eur Biophys J 28:312–316.
  • Lekka M, Laidler P, Ignacak J, Labedz M, Lekki J, Struszczyk H, 2001. The effect of chitosan on stiffness and glycolytic activity of human bladder cells. Biochim Biophys Acta Mol Cell Res 1540(2):127–136.
  • Liao DL, Badour CA, Liao BQ. 2008. Preparation of nanosized TiO2/ZnO composite catalyst and its photocatalytic activity for degradation of methyl orange. J Photochem Photobiol A Chem 194:11–19.
  • Limbach LK, Li Y, Grass RN, Brunner TJ, Hintermann MA, Muller M, 2005. Nanoparticle uptake in human lung fibroblasts: effects of particle size, agglomeration, and diffusion at low concentrations. Environ Sci Technol 39:9370–9376.
  • Lin H, Kumon S, Kozuka H, Yoko T. 1998. Electrical properties of sol–gel-derived transparent titania films doped with ruthenium and tantalum. Thin Solid Films 315:266–272.
  • Long TC, Saleh N, Tilton RD, Lowry G, Veronesi B. 2006. Titanium dioxide (P25) produces reactive oxygen species in immortalized brain microglia (BV2): implications for nanoparticle neurotoxicity. Environ Sci Technol 40:4346–4352.
  • Lu L, Oswald SJ, Ngu H, Yin FC-P. 2008. Mechanical properties of actin stress fibers in living cells. Biophys J 95(12):6060–6071.
  • Macak JM, Zlamal M, Krysa J, Schmuki P. 2007. Self-organized TiO2 nanotube layers as highly efficient photocatalysts. Small 3:300–304.
  • Magrez A, Horvath L, Smajda R, Salicio V, Pasquier N, Forro L, Schwaller B. 2009. Cellular toxicity of TiO2-based nanofilaments. ACS Nano 3(8):2274–2280.
  • Milligan RA, Whittaker M, Safer D. 1990. Molecular structure of F-actin and location of surface binding sites. Nature 348:217–221.
  • Mills A, Wang J. 1999a. The kinetics of semiconductor photocatalysis; light intensity effects. Z Phys Chem 213:49–58.
  • Mills A, Wang J. 1999b. Photobleaching of methylene Blue sensitised by TiO2: an ambiguous system? Photochem Photobiol A Chem 127:123–134.
  • Mitsuyasu W, Mitsushi O, Yuichiro K, Yoko T, Masato N, Toshihiko S, Yoshiharu A. 2002. Differences in the effects of fibrous and particulate titanium dioxide on alveolar macrophages of fischer 344 rat. J Toxicol Environ Health Part A 65:1047–1060.
  • Mor GK, Carvalho MA, Varghese OK, Pishko MV, Grimes CA. 2004. A room-temperature TiO2-nanotube hydrogen sensor able to self-clean photoactively from environmental contamination. J Mater Res 19:628–634.
  • Oberdörster G, Ferin J, Gelein R, Soderholm SC, Finkelstein J. 1992. Role of the alveolar macrophage in lung injury: studies with ultrafine particles. Environ Health Perspect 97:193–199.
  • Oberdörster G, Sharp Z, Atudorei V, Elder A, Gelein R, Kreyling W, Cox C. 2004. Translocation of inhaled ultrafine particles to the brain. Inhal Toxicol 16:437–445.
  • Park J, Bauer S, von der Mark K, Schmuki P. 2007. Nanosize and vitality: TiO2 nanotube diameter directs cell fate. Nano Lett 7:16860–1691.
  • Pelling AE, Veraitch FS, Pui-Kei Chu C, Mason Ch, Horton MA. 2009. Mechanical dynamics of single cells during early apoptosis. Cell Motil Cytoskeleton 66:409–422.
  • Redmond RW, Kochevar IE. 2006. Spatially resolved cellular responses to singlet oxygen. Photochem Photobiol B 82:1178–1186.
  • Rengifo-Herrera JA, Pierzchała K, Sienkiewicz A, Forró L, Kiwi J, Moser JE, Pulgarin C. 2010. Synthesis, characterization, and photocatalytic activities of nanoparticulate N, S-Codoped TiO2 having different Surface-to-Volume Ratios. J Phys Chem C 114:2717–2723.
  • Robichaud CO, Uyar AE, Darby MR, Zucker LG, Wiesner MR. 2009. Estimates of upper bounds and trends in Nano-TiO2 production as a basis for exposure assessment. Environ Sci Technol 43(12):4227–4223.
  • Roy SC, Paulose M, Grimes CA. 2007. The effect of TiO2 nanotubes in the enhancement of blood clotting for the control of hemorrhage. Biomaterials 28:4667–4672.
  • Ruiz A, Arbiol J, Cirera A, Cornet A, Morante JR. 2002. Surface activation by Pt-nanoclusters on titania for gas sensing applications. Mater Sci Eng C 19:105–109.
  • Saito T, Iwase T, Horie J, Morioka T. 1992. Mode of photocatalytic bactericidal action of powdered semiconductor TiO2 on mutans streptococci. J Photochem Photobiol B 14:369–379.
  • Sakai H, Ito E, Cai RX, Yoshioka T, Kubota Y, Hashimoto K, Fujishima A. 1994. Intracellular Ca2+ concentration change of T24 cell under irradiation in the presence of TiO2 ultrafine particles. Biochim Biophys Acta 1201:259–265.
  • Sayes CM, Wahi R, Kurian PA, Liu Y, West JL, Ausman KD, 2006. Correlating nanoscale titania structure with toxicity: a cytotoxicity and inflammatory response study with human dermal fibroblasts and human lung epithelial cells. Toxicol Sci 92:174–185.
  • Singh S, Shi T, Duffin R, Albrecht C, van Berlo D, Hohr D, 2007. Endocytosis, oxidative stress and IL-8 expression in human lung epithelial cells upon treatment with fine and ultrafine TiO2: role of the specific surface area and of surface methylation of the particles. Toxicol Appl Pharmacol 222:141–151.
  • Smalley KSM, Haass NK, Brafford PA, Lioni M, Flaherty KT, Herlyn M. 2006. Multiple signaling pathways must be targeted to overcome drug resistance in cell lines derived from melanoma metastases. Mol Cancer Ther 5(5):1136–1144.
  • 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.
  • Sopyan I, Watanabe M, Murasawa S, Hashimoto K, Fujishima A. 1996. An efficient TiO2 thin-film photocatalyst: photocatalytic properties in gas-phase acetaldehyde degradation. J Photochem Photobiol A Chem 98:79–86.
  • Tachikawa T, Fujitsuka M, Majima TJ. 2007. Mechanistic insight into the TiO2 photocatalystic reactions: design of new photocatalysts. J Phys Chem C 111:5259–5275.
  • Thevenot P, Cho J, Wavhal D, Timmons RB, Tang L. 2008. Surface chemistry influences cancer killing effect of TiO2 nanoparticles. Nanomedicine Nanotechnol Biol Med 4:226–236.
  • Verma S, Watt GM, Mai Z, Hasan T. 2007. Strategies for enhanced photodynamic therapy effects. Photochem Photobiol 83:996–1005.
  • Vileno B, Lekka M, Sienkiewicz A, Jeney S, Stoessel G, Lekki J, 2007. AFM study of early changes in single cell stiffness induced by UV in the presence of nano-TiO2. Environ Sci Technol 41:5149–5153.
  • Vileno B, Marcoux PR, Lekka M, Sienkiewicz A, Fehér T, Forró L. 2006. Spectroscopic and photophysical properties of a highly derivatized C60 fullerol. Adv Funct Mater 16:120–128.
  • Wakatsuki T, Schwab B, Thompson NC, Elson EL. 2001. Effects of cytochalasin D and latrunculin B on mechanical properties of cells. J Cell Sci 114:1025–1036.
  • Wang J, Chen C, Liu Y, Jiao F, Li W, Lao F, 2008. Potential neurological lesion after nasal instillation of TiO2 nanoparticles in the anatase and rutile crystal phases. Toxicol Lett 18:72–80.
  • Warheit DB, Webb TR, Colvin VL, Reed KL, Sayes CM. 2007. Pulmonary bioassay studies with nanoscale and fine-quartz particles in rats: toxicity is not dependent upon particle size but surface characteristic. Toxicol Sci 95:270–280.
  • Warheit DB, Webb TR, Sayes CM, Colvin VL, Reed KL. 2006. Pulmonary instillation studies with nanoscale TiO2 rods and dots in rats: toxicity is not dependent upon particle size and surface area. Toxicol Sci 91:227–236.
  • Watson SS, Beydoun D, Scott JA, Amal R. 2003. The effect of preparation method on the photoactivity of crystalline titanium dioxide particles. Chem Eng J 95:213–220.
  • Weisenhorn AL, Khorsandi M, Kasas S, Gotzos V, Butt HJ. 1993. Deformation and height anomaly of soft surfaces studied with an AFM. Nanotechnology 4:106–113.
  • Xia T, Kovochich M, Brant J, Hotze M, Sempf J, Oberley T, 2006. Comparison of the abilities of ambient and manufactured nanoparticles to induce cellular toxicity according to an oxidative stress paradigm. Nano Lett 6(8):1794–1807.
  • Xiao-Bo L, Shun-Qing X, Zhi-Ren Z, Schluesener HJ. 2009. Apoptosis induced by titanium dioxide nanoparticles in cultured murine microglia N9 cells. Chin Sci Bull 54(20):3830–3836.
  • Zhang AP, Sun YP. 2004. Photocatalytic killing effect of TiO2 nanoparticles on LS-174-T human colon cancer cells. World J Gastroenterol 10:3191–3193.
  • Zuruzi AS, Kolmakov A, MacDonald NC, Moskovits M. 2006. Highly sensitive gas sensor based on integrated titania nanosponge arrays. Appl Phys Lett 88: 102904 p1–3.
  • Zvyagin Andrei V, Zhao X, Gierden A, Sanchez W, Ross JA, Roberts MS. 2008. Imaging of zinc oxide nanoparticle penetration in human skin in vitro and in vivo. J Biomed Opt 13(6):064031–064039.

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.