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Nano-bio control of bacteria: A novel mechanism for antibacterial activities of magnetic nanoparticles as a temporary nanomagnets

Journal of molecular liquids, v.251, 2018년, pp.1 - 6  

Boroon, Sadjad (Department of Chemistry, Faculty of Science, Lorestan University) ,  Kakanejadifard, Ali (Department of Chemistry, Faculty of Science, Lorestan University) ,  Motamedi, Hossein (Department of Biology, Faculty of Science, Shahid Chamran University of Ahvaz)

Abstract AI-Helper 아이콘AI-Helper

Abstract The aim of this study is to investigate the role of interaction pattern between the Fe3O4 exposed by magnetic field as a temporary nanomagnets (TNMs) against bacterial interfaces, affecting antimicrobial trends of TNMs. The magnetite nano particles were prepared by the coprecipitation of F...

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참고문헌 (51)

  1. J. Am. Chem. Soc. Hu 127 12486 2005 10.1021/ja053881o Magnetically recoverable chiral catalysts immobilized on magnetite nanoparticles for asymmetric hydrogenation of aromatic ketones 

  2. Angew. Chem. Dalaigh 119 4407 2007 10.1002/ange.200605216 A magnetic-nanoparticle-supported 4-N, N-Dialkylaminopyridine catalyst: excellent reactivity combined with facile catalyst recovery and recyclability 

  3. Angew. Chem. Int. Ed. Cavallini 44 888 2005 10.1002/anie.200461554 Magnetic information storage on polymers by using patterned single-molecule magnets 

  4. Nat. Commun. Zhang 4 1866 2013 10.1038/ncomms2892 Magnetically ultraresponsive nanoscavengers for next-generation water purification systems 

  5. Anal. Chem. Wang 83 6202 2011 10.1021/ac200751s Magnetic nanoparticle-enhanced biosensor based on grating-coupled surface plasmon resonance 

  6. Biomaterials Gupta 26 3995 2005 10.1016/j.biomaterials.2004.10.012 Synthesis and surface engineering of iron oxide nanoparticles for biomedical applications 

  7. Clin. Pharmacol. Ther. Zhang 83 761 2008 10.1038/sj.clpt.6100400 Nanoparticles in medicine: therapeutic applications and developments 

  8. J. Am. Chem. Soc. Stoeva 127 15362 2005 10.1021/ja055056d Three-layer composite magnetic nanoparticle probes for DNA 

  9. Anal. Chem. Yang 76 1316 2004 10.1021/ac034920m Magnetite-containing spherical silica nanoparticles for biocatalysis and bioseparations 

  10. Sci. Rep. Zhang 3 2013 10.1038/srep03364 Chitosan coupling makes microbial biofilms susceptible to antibiotics 

  11. Sci. Rep. Arakha 5 2015 10.1038/srep14813 Antimicrobial activity of iron oxide nanoparticle upon modulation of nanoparticle-bacteria interface 

  12. Chemie-Chem. Mon. Mouradzadegun 148 367 2017 10.1007/s00706-016-1759-x Synthesis and characterization of supramolecule grafted on modified magnetic nanoparticles: new hybrid organic-inorganic phase transfer catalyst, Monatshefte fur 

  13. Chem. Mater. Yi 18 2459 2006 10.1021/cm052885p Synthesis and applications of magnetic nanocomposite catalysts 

  14. Angew. Chem. Ikeda 118 7221 2006 10.1002/ange.200602700 Ligand-free platinum nanoparticles encapsulated in a hollow porous carbon shell as a highly active heterogeneous hydrogenation catalyst 

  15. Nat. Nanotechnol. Gao 2 577 2007 10.1038/nnano.2007.260 Intrinsic peroxidase-like activity of ferromagnetic nanoparticles 

  16. Chem. Rev. Ma 109 4644 2009 10.1021/cr900077w Coordination chemistry of bacterial metal transport and sensing 

  17. Bioelectromagnetics Ramon 8 275 1987 10.1002/bem.2250080306 Low-level, magnetic-field-induced growth modification of Bacillus subtilis 

  18. Int. J. Adv. Biotechnol. Res. Haghi 3 777 2012 Effect of static magnetic field on E. coli growth 

  19. Angew. Chem. Tsang 116 5763 2004 10.1002/ange.200460552 Magnetically separable, carbon-supported nanocatalysts for the manufacture of fine chemicals 

  20. Org. Lett. Stevens 7 2085 2005 10.1021/ol050218w Superparamagnetic nanoparticle-supported catalysis of Suzuki cross-coupling reactions 

  21. New J. Chem. Yoon 27 227 2003 10.1039/b209391j Magnetic nanoparticles as a catalyst vehicle for simple and easy recycling 

  22. Angew. Chem. Int. Ed. Babii 53 3392 2014 10.1002/anie.201310019 Controlling biological activity with light: diarylethene-containing cyclic peptidomimetics 

  23. Nat. Neurosci. Wheeler 19 756 2016 10.1038/nn.4265 Genetically targeted magnetic control of the nervous system 

  24. J. Am. Chem. Soc. Yang 134 15221 2012 10.1021/ja306030d Visible light switching of a BF2-coordinated azo compound 

  25. Angew. Chem. Int. Ed. Berryman 50 9400 2011 10.1002/anie.201105374 Switchable catalysis with a light-responsive Cavitand 

  26. Macromolecules Westphal 43 1319 2010 10.1021/ma902460c Synthesis and optical/thermal behavior of new azo photoisomerizable discotic liquid crystals 

  27. ACS Sustain. Chem. Eng. Zhang 1 1440 2013 10.1021/sc400183t Relating electron donor and carboxylic acid anchoring substitution effects in azo dyes to dye-sensitized solar cell performance 

  28. Dyes Pigments Do Kim 89 1 2011 10.1016/j.dyepig.2010.07.008 Synthesis, application and investigation of structure-thermal stability relationships of thermally stable water-soluble azo naphthalene dyes for LCD red color filters 

  29. J. Am. Chem. Soc. Hoppmann 137 11218 2015 10.1021/jacs.5b06234 In situ formation of an azo bridge on proteins controllable by visible light 

  30. Angew. Chem. Int. Ed. Margulieux 53 14211 2014 10.1002/anie.201408725 Synthesis and ligand modification chemistry of a molybdenum dinitrogen complex: redox and chemical activity of a bis (imino) pyridine ligand 

  31. J. Am. Chem. Soc. Chou 135 14936 2013 10.1021/ja407822b Conversion of azides into diazo compounds in water 

  32. RSC Adv. Khanmohammadi 4 1032 2014 10.1039/C3RA42709A Naked-eye detection of inorganic fluoride in aqueous media using a new azo-azomethine colorimetric receptor enhanced by electron withdrawing groups 

  33. Spectrochim. Acta A Mol. Biomol. Spectrosc. Ghasemian 124 153 2014 10.1016/j.saa.2014.01.005 Spectroscopy and solvatochromism studies along with antioxidant and antibacterial activities investigation of azo-azomethine compounds 2-(2-hydroxyphenylimino) methyl)-4-phenyldiazenyl) phenol 

  34. Dyes Pigments Kakanejadifard 97 215 2013 10.1016/j.dyepig.2012.10.004 The synthesis, structural characterization and antibacterial properties of some 2-((4-amino-1, 2, 5-oxadiazol-3-ylimino) methyl)-4-(phenyldiazenyl) phenol 

  35. Spectrochim. Acta A Mol. Biomol. Spectrosc. Ghasemian 138 643 2015 10.1016/j.saa.2014.11.048 

  36. J. Chin. Chem. Soc. Heydaripour 63 847 2016 10.1002/jccs.201600159 Sensitivity and resolution development of spiropyran-based molecular photoswitches 

  37. IEEE Trans. Magn. Massart 17 1247 1981 10.1109/TMAG.1981.1061188 Preparation of aqueous magnetic liquids in alkaline and acidic media 

  38. J. Colloid Interface Sci. Stober 26 62 1968 10.1016/0021-9797(68)90272-5 Controlled growth of monodisperse silica spheres in the micron size range 

  39. Int. J. Eng. Res. Appl. Behera 3 058 2013 Synthesis of silver nanoparticles from microbial source-a green synthesis approach, and evaluation of its antimicrobial activity against Escherichia coli 

  40. Sci. Technol. Adv. Mater. Inbaraj 13 1 2012 Synthesis, characterization and antibacterial activity of superparamagnetic nanoparticles modified with glycol chitosan 

  41. J. Braz. Chem. Soc. Shan 18 1329 2007 10.1590/S0103-50532007000700006 Preparation and characterization of carboxyl-group functionalized superparamagnetic nanoparticles and the potential for bio-applications 

  42. Adv. Mater. Lett. Singh 2 313 2011 10.5185/amlett.indias.204 Biological approach of zinc oxide nanoparticles formation and its characterization 

  43. Nano Lett. Riedinger 13 2399 2013 10.1021/nl400188q Subnanometer local temperature probing and remotely controlled drug release based on azo-functionalized iron oxide nanoparticles 

  44. Angew. Chem. Int. Ed. Engl. Kessler 21 512 1982 10.1002/anie.198205121 Conformation and biological activity of cyclic peptides 

  45. J. Magn. Magn. Mater. Bacri 85 27 1990 10.1016/0304-8853(90)90010-N Ionic ferrofluids: a crossing of chemistry and physics 

  46. J. Magn. Magn. Mater. Bacri 62 36 1986 10.1016/0304-8853(86)90731-6 Magnetic colloidal properties of ionic ferrofluids 

  47. Chem. Rev. Laurent 108 2064 2008 10.1021/cr068445e Magnetic iron oxide nanoparticles: synthesis, stabilization, vectorization, physicochemical characterizations, and biological applications 

  48. Angew. Chem. Int. Ed. Lu 46 1222 2007 10.1002/anie.200602866 Magnetic nanoparticles: synthesis, protection, functionalization, and application 

  49. Sci. Rep. Arakha 5 2015 10.1038/srep09578 The effects of interfacial potential on antimicrobial propensity of ZnO nanoparticle 

  50. Microbiol. Rev. Nikaido 49 1 1985 10.1128/MMBR.49.1.1-32.1985 Molecular basis of bacterial outer membrane permeability 

  51. Mol. Microbiol. Nikaido 6 435 1992 10.1111/j.1365-2958.1992.tb01487.x Porins and specific channels of bacterial outer membranes 

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