Endocytosis of titanium dioxide nanoparticles in prostate cancer PC-3M cells

Nanomedicine: Nanotechnology, Biology and Medicine - Tập 7 Số 2 - Trang 123-130 - 2011
Kenneth T. Thurn1, Hans Arora1, Tatjana Paunesku1, Aiguo Wu2, Eric Brown3, Caroline Doty1, Jeff C. Kremer1, Gayle E. Woloschak4
1Department of Radiation Oncology, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA
2Division of Functional Materials and Nanodevices, Ningbo Institute of Material Technology and Engineering, Chinese Academy of Sciences, Ningbo City, Zheijang Province, China
3Department of Biological Sciences, University of Wisconsin–Whitewater, Whitewater, Wisconsin USA
4Departments of Radiation Oncology, Radiology, and Cell and Molecular Biology, Northwestern University, Feinberg School of Medicine, Chicago, Illinois, USA

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Tài liệu tham khảo

Paunesku, 2003, Biology of TiO2-oligonucleotide nanocomposites, Nat Mater, 2, 343, 10.1038/nmat875

Zhang, 2004, Photocatalytic killing effect of TiO2 nanoparticles on Ls-174-t human colon carcinoma cells, World J Gastroenterol, 10, 3191, 10.3748/wjg.v10.i21.3191

Blake, 1999, Application of the photocatalytic chemistry of titanium dioxide to disinfection and the killing of cancer cells, Sep Purif Methods, 28, 1, 10.1080/03602549909351643

Sang, 2007, Photocatalytic inactivation of diarrheal viruses by visible-light-catalytic titanium dioxide, Clin Lab, 53, 413

Wu, 2007, Phosphate-modified TiO2 nanoparticles for selective detection of dopamine, levodopa, adrenaline, and catechol based on fluorescence quenching, Langmuir, 23, 7880, 10.1021/la700555y

Tsuang, 2008, Studies of photokilling of bacteria using titanium dioxide nanoparticles, Artif Organs, 32, 167, 10.1111/j.1525-1594.2007.00530.x

Gogniat, 2006, The bactericidal effect of TiO2 photocatalysis involves adsorption onto catalyst and the loss of membrane integrity, FEMS Microbiol Lett, 258, 18, 10.1111/j.1574-6968.2006.00190.x

Cho, 2005, Different inactivation behaviors of MS-2 phage and Escherichia coli in TiO2 photocatalytic disinfection, Appl Environ Microbiol, 71, 270, 10.1128/AEM.71.1.270-275.2005

Chen, 2008, Functional Fe3O4/TiO2 core/shell magnetic nanoparticles as photokilling agents for pathogenic bacteria, Small, 4, 485, 10.1002/smll.200701164

Garabrant, 1987, Abnormalities of pulmonary function and pleural disease among titanium metal production workers, Scand J Work Environ Health, 13, 47, 10.5271/sjweh.2087

Fayerweather, 1992, Epidemiologic study of lung cancer mortality in workers exposed to titanium tetrachloride, J Occup Med, 34, 164, 10.1097/00043764-199202000-00017

Bernard, 1990, Toxicology and carcinogenesis studies of dietary titanium dioxide-coated mica in male and female Fischer 344 rats, J Toxicol Environ Health, 29, 417, 10.1080/15287399009531402

Bestak, 1996, Sunscreens protect from UV-promoted squamous cell carcinoma in mice chronically irradiated with doses of UV radiation insufficient to cause edema, Photochem Photobiol, 64, 188, 10.1111/j.1751-1097.1996.tb02441.x

Maggos, 2007, Photocatalytic degradation of NOx gases using TiO2-containing paint: a real scale study, J Hazard Mater, 146, 668, 10.1016/j.jhazmat.2007.04.079

Thurn, 2009, Labeling TiO2 nanoparticles with dyes for optical fluorescence microscopy and determination of TiO2-DNA nanoconjugate stability, Small, 5, 1318, 10.1002/smll.200801458

Rajh, 2002, Surface restructuring of nanoparticles: an efficient route for ligand–metal oxide crosstalk, J Phys Chem B, 106, 10543, 10.1021/jp021235v

Rajh, 1999, Improving optical and charge separation properties of nanocrystalline TiO2 by surface modification with vitamin C, J Phys Chem B, 103, 3515, 10.1021/jp9901904

Johannes, 2002, Clathrin-dependent or not: is it still the question?, Traffic, 3, 443, 10.1034/j.1600-0854.2002.30701.x

Kirkham, 2005, Clathrin-independent endocytosis: new insights into caveolae and non-caveolar lipid raft carriers, Biochim Biophys Acta, 1746, 349, 10.1016/j.bbamcr.2005.11.005

Mosesson, 2008, Derailed endocytosis: an emerging feature of cancer, Nat Rev Cancer, 8, 835, 10.1038/nrc2521

Larkin, 1983, Depletion of intracellular potassium arrests coated pit formation and receptor-mediated endocytosis in fibroblasts, Cell, 33, 273, 10.1016/0092-8674(83)90356-2

Harush-Frenkel, 2007, Targeting of nanoparticles to the clathrin-mediated endocytic pathway, Biochem Biophys Res Commun, 353, 26, 10.1016/j.bbrc.2006.11.135

Aoki, 1999, Tyrosine phosphorylation of caveolin-1 in the endothelium, Exp Cell Res, 253, 629, 10.1006/excr.1999.4652

Merrifield, 2004, Seeing is believing: imaging actin dynamics at single sites of endocytosis, Trends Cell Biol, 14, 352, 10.1016/j.tcb.2004.05.008

Kaksonen, 2006, Harnessing actin dynamics for clathrin-mediated endocytosis, Nat Rev Mol Cell Biol, 7, 404, 10.1038/nrm1940

Ivanov, 2008, Pharmacological inhibition of endocytic pathways: is it specific enough to be useful?, Methods Mol Biol, 440, 15, 10.1007/978-1-59745-178-9_2

Lai, 2007, Privileged delivery of polymer nanoparticles to the perinuclear region of live cells via a non-clathrin, non-degradative pathway, Biomaterials, 28, 2876, 10.1016/j.biomaterials.2007.02.021

Chung, 2007, The effect of surface charge on the uptake and biological function of mesoporous silica nanoparticles in 3T3-L1 cells and human mesenchymal stem cells, Biomaterials, 28, 2959, 10.1016/j.biomaterials.2007.03.006

Gratton, 2008, The effect of particle design on cellular internalization pathways, Proc Natl Acad Sci U S A, 105, 11613, 10.1073/pnas.0801763105

Harush-Frenkel, 2008, Surface charge of nanoparticles determines their endocytic and transcytotic pathway in polarized MDCK cells, Biomacromolecules, 9, 435, 10.1021/bm700535p

Thurn, 2007, Nanoparticles for applications in cellular imaging, Nanoscale Res Lett, 2, 430, 10.1007/s11671-007-9081-5

Singh, 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, 10.1016/j.taap.2007.05.001

Wu, 2008, Titanium dioxide nanoparticles assembled by DNA molecules hybridization and loading of DNA interacting proteins, NANO, 3, 27, 10.1142/S1793292008000836

Bergan, 1996, Genistein-stimulated adherence of prostate cancer cells is associated with the binding of focal adhesion kinase to beta-1-integrin, Clin Exp Metastasis, 14, 389, 10.1007/BF00123398

Altankov, 1993, Depletion of intracellular potassium disrupts coated pits and reversibly inhibits cell polarization during fibroblast spreading, J Cell Biol, 120, 1449, 10.1083/jcb.120.6.1449

Carpentier, 1989, Potassium depletion and hypertonic medium reduce "non-coated" and clathrin-coated pit formation, as well as endocytosis through these two gates, J Cell Physiol, 138, 519, 10.1002/jcp.1041380311

Hansen, 1993, Clathrin and HA2 adaptors: effects of potassium depletion, hypertonic medium, and cytosol acidification, J Cell Biol, 121, 61, 10.1083/jcb.121.1.61

Singh, 2003, Selective caveolin-1-dependent endocytosis of glycosphingolipids, Mol Biol Cell, 14, 3254, 10.1091/mbc.e02-12-0809

Suh, 2009, Nanotechnology, nanotoxicology, and neuroscience, Progr Neurobiol, 87, 133, 10.1016/j.pneurobio.2008.09.009

Lu, 2003, Downregulation of caveolin-1 function by EGF leads to the loss of E-cadherin, increased transcriptional activity of beta-catenin, and enhanced tumor cell invasion, Cancer Cell, 4, 499, 10.1016/S1535-6108(03)00304-0

Barua, 2009, Cancer-cell-phenotype-dependent differential intracellular trafficking of unconjugated quantum dots, Small, 5, 370, 10.1002/smll.200800972

Hill, 2008, PTRF-Cavin, a conserved cytoplasmic protein required for caveola formation and function, Cell, 132, 113, 10.1016/j.cell.2007.11.042