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Articles

Preparation, characterization and dynamical mechanical properties of dextran-coated iron oxide nanoparticles (DIONPs)

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Pages 421-431 | Received 08 Mar 2017, Accepted 31 Mar 2017, Published online: 20 Apr 2017

References

  • Zabihi O, Khodabandeh A, Ghasemlou S. Investigation of mechanical properties and cure behavior of DGEBA/nano-Fe2O3 with polyamine dendrimer. Polym Degrad Stab. 2012;97:1730–1736.
  • Goiti E, Salinas MM, Arias G, et al. Effect of magnetic nanoparticles on the thermal properties of some hydrogels. Polym Degrad Stab. 2007;92:2198–2205.
  • Laurent S, Forge D, Port M, et al. Magnetic iron oxide nanoparticles: synthesis, stabilization, vectorization, physicochemical characterizations, and biological applications. Chem Rev. 2010;4:2574–2574.
  • Jain TK, Morales MA, Sahoo SK, et al. Iron oxide nanoparticles for sustained delivery of anticancer agents. Mol Pharm. 2005;2:194–205.
  • Chourpa I, Douziech-Eyrolles L, Ngaboni-Okassa L, et al. Molecular composition of iron oxide nanoparticles, precursors for magnetic drug targeting, as characterized by confocal Raman microspectroscopy. Analyst. 2005;130:1395–1403.
  • Dzunuzovic E, Marinovic-Cincovic M, Jeremic K, et al. Influence of a-Fe2O3 nanorods on the thermal stability of poly(methyl methacrylate) synthesized by in situ bulk polymerisation of methyl methacrylate. J Polym Degrad Stab. 2008;93:77–83.
  • Modo M, Bulte JW. Cellular MR imaging. Mol Imaging. 2005;4:143–164.
  • Bursa C, Laurent S, Roc A, et al. C-MALISA (cellular magnetic-linked immunosorbent assay), a new application of cellular ELISA for MRI. J Inorg Biochem. 2005;99:1135–1144.
  • Mahdavi M, Bin Ahmad M, Haron MJ, et al. Synthesis, surface modification and characterization of biocompatible magnetic iron oxide nanoparticles for biomedical applications. Molecules. 2013;18:7533–7548.
  • Kim DK, Zhang Y, Kehr J, et al. Characterization and MRI study of surfactant-coated superparamagnetic nanoparticles administered into the rat brain. J Magn Magn Mater. 2001;225:256–261.
  • Nidhin M, Indumathy R, Sreeram KJ, et al. Synthesis of iron oxide nanoparticles of narrow size distribution on polysaccharide templates. J Bull Mater Sci. 2008;31:93–96.
  • Hong RY, Feng B, Chen LL, et al. Synthesis, characterization and MRI application of dextran-coated Fe3O4 magnetic nanoparticles. Biochem Eng J. 2008;42:290–300.
  • Li GY, Jiang Y, Huang K, et al. Preparation and properties of magnetic Fe3O4–chitosan nanoparticles. J Alloys Compd. 2008;466:451–456.
  • Mukhopadhyay A, Joshi N, Chattopadhyay K, et al. A facile synthesis of PEG-coated magnetite (Fe3O4) nanoparticles and their prevention of the reduction of cytochrome C. ACS Appl Mater Interfaces. 2012;4:142–149.
  • Molday RS, Mackenize D. Immunospecific ferromagnetic iron-dextran reagents for the labeling and magnetic separation of cells. J Immunol Methods. 1982;52:353–367.
  • Weissleder R, Bogdanov A, Neuwelt EA, et al. Long-circulating iron oxides for MR imaging. Adv Drug Del Rev. 1995;16:321–334.
  • Mukesh G, Harisinghani MG, Barentsz J, et al. Noninvasive detection of clinically occult lymph-node metastases in prostate cancer. N Engl J Med. 2003;384:2491–2499.
  • Yu H, Fu G, Zhao J, et al. Synthesis and in vitro sorption properties of PAA-grafted cellulose beads for selective binding of LDL. Artif Cells Nanomed Biotechnol. 2006;34:501–513.
  • Sehrig FZ, Majidi S, Asvadi S, et al. An update on clinical applications of magnetic nanoparticles for increasing the resolution of magnetic resonance imaging. Artif Cells Nanomed Biotechnol. 2016;44:1583–1158.
  • Josephson L, Tung CH, Moore A, et al. High-efficiency intracellular magnetic labeling with novel superparamagnetic-Tat peptide conjugates. Bioconjugate Chem. 1999;10:186–191.
  • Qu S, Yang H, Ren D, et al. Magnetite nanoparticles prepared by precipitation from partially reduced ferric chloride aqueous solutions. J Colloid Interface Sci. 1999;215:190–192.
  • Wang X, Zhou J, Miao C, et al. Synthesis and size control of ferric oxide nanoparticles via a hydrothermal stripping route. J Nanopart Res. 2012;14:783.
  • Bychko I, Kalishyn Y, Strizhak P. Size effect of Fe nanoparticles supported on carbon nanotubes on their activity and selectivity in the hydrogenation of crotonaldehyde. Adv Mater Phys Chem. 2012;2:17–22.
  • Prakash A, McCormick AV, Zachariah MR. Aero-sol-gel synthesis of nanoporous iron-oxide particles: a potential oxidizer for nanoenergetic materials. Chem Mater. 2004;16:1466–1471.
  • Hergt R, Dutz S, Muller R, et al. Magnetic particle hyperthermia: nanoparticle magnetism and materials development for cancer therapy. J Phys Condens Matter. 2006;18:2919–S2934.
  • Darken LS, Gurry RW. The system iron—oxygen. II. Equilibrium and thermodynamics of liquid oxide and other phases. J Am Chem Soc. 1946;68:798–816.
  • Wang SZ, Xin HW, Qian YT. Preparation of nanocrystalline Fe3O4 by γ-ray radiation. Mater Lett. 1997;33:113–116.
  • Hong RY, Pan TT, Li HZ. Microwave synthesis of magnetic Fe3O4 nanoparticles used as a precursor of nanocomposites and ferrofluids. J Magn Magn Mater. 2006;303:60–68.
  • Yu LQ, Zheng LJ, Yang JX. Study of preparation and properties on magnetization and stability for ferromagnetic fluids. Mater Chem Phys. 2000;66:6–9.
  • Willard MA, Kurihara LK, Carpenter EE, et al. Chemically prepared magnetic nanoparticles. Int Mater Rev. 2004;49:125–170.
  • Iconaru SL, Ciobanu CS, Le Coustumer P, et al. Structural characterization and magnetic properties of iron oxides biological polymers. J Supercond Nov Magn. 2013;26:851–855.
  • Mathlouthi M, Koenig JL. Vibrational spectra of carbohydrates. Adv Carbohydr Chem Biochem. 1986;44:7–89.
  • Hradil J, Pisarov A, Babic M, et al. Dextran-modified iron oxide nanoparticles. China Particuology. 2007;5:162–168.
  • Wang HR, Chen KM. Preparation and surface active properties of biodegradable dextrin derivative surfactants. Colloids Surf A Phys Eng Asp. 2006;281:190–193.
  • Predoi D. A study on iron oxide nanoparticles coated with dextrin obtained by coprecipitation. Dig J Nanomater Biostruct. 2007;2:169–173.
  • Easo SL, Mohanan PV. Dextran stabilized iron oxide nanoparticles: synthesis, characterization and in vitro studies. Carbohydr Polym. 2013;92:726–732.
  • Bautista MC, Miguel-Bomati O, Morales MP, et al. Surface characterisation of dextran-coated iron oxide nanoparticles prepared by laser pyrolysis and coprecipitation. J Magn Magn Mater. 2005;293:20–27.
  • Thunemann AF, Schutt D. Maghemite nanoparticles protectively coated with poly (ethylene imine) and poly (ethylene oxide)-b lock-poly (glutamic acid). Langmuir. 2006;22:2351–2357.
  • Taeghwan H. Chemical synthesis of magnetic nanoparticles. Chem Comm. 2003;8:927–934.
  • Chen L, Li J, Lin Y, et al. Preparation of γ-Fe2O3/ZnFe2O4 nanoparticles by enhancement of surface modification with NaOH. Chem Cent J. 2014;8:40. doi: 10.1186/1752-153X-8-40.
  • Kaplan Can H, Şahin Ö. Design, synthesis and characterization of 3,4-dihydro-2H-pyran containing copolymer/clay nanocomposites. J Macromol Sci A Pure Appl Chem. 2015;52:465–475.
  • Gao L, Liu G, Hong RY, et al. Preparation and characterization of chitosan poly(acrylic acid) magnetic microspheres. Mar Drugs. 2010;8:2212–2222.
  • Jurikova A, Csach K, Koneracka M, et al. Thermal analysis of magnetic nanoparticles modified with dextran. Acta Phys Pol A. 2012;121:1296–1298.
  • Culita DC, Budrugeac P, Feder M, et al. Thermal analysis of two types of dextran-coated magnetite. J Therm Anal Calorim. 2010;101:181–187.
  • Leslie-Pelecky DL, Rieke R. Magnetic properties of nanostructured materials. Chem Mater. 1996;8:1770–1783.
  • Majetich SA, Jin Y. Magnetization directions of individual nanoparticles. Science. 1999;284:470–473.
  • Stenekes RJH, De Semedt SC, Demeester J, et al. Pore sizes in hydrated dextran microspheres. Biomacromolecules. 2000;1:696–703.
  • Turi EA. Thermal characterization of polymeric materials. 2nd ed. Brooklyn, NY: Academic Press; 1996, p. 980.

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