Literature DB >> 21315813

Novel magnetic iron oxide nanoparticles coated with poly(ethylene imine)-g-poly(ethylene glycol) for potential biomedical application: synthesis, stability, cytotoxicity and MR imaging.

Christoph Schweiger1, Clemens Pietzonka, Johannes Heverhagen, Thomas Kissel.   

Abstract

Magnetic iron oxide nanoparticles have found application as contrast agents for magnetic resonance imaging (MRI) and as switchable drug delivery vehicles. Their stabilization as colloidal carriers remains a challenge. The potential of poly(ethylene imine)-g-poly(ethylene glycol) (PEGPEI) as stabilizer for iron oxide (γ-Fe₂O₃) nanoparticles was studied in comparison to branched poly(ethylene imine) (PEI). Carrier systems consisting of γ-Fe₂O₃-PEI and γ-Fe₂O₃-PEGPEI were prepared and characterized regarding their physicochemical properties including magnetic resonance relaxometry. Colloidal stability of the formulations was tested in several media and cytotoxic effects in adenocarcinomic epithelial cells were investigated. Synthesized γ-Fe₂O₃ cores showed superparamagnetism and high degree of crystallinity. Diameters of polymer-coated nanoparticles γ-Fe₂O₃-PEI and γ-Fe₂O₃-PEGPEI were found to be 38.7 ± 1.0 nm and 40.4 ± 1.6 nm, respectively. No aggregation tendency was observable for γ-Fe₂O₃-PEGPEI over 12 h even in high ionic strength media. Furthermore, IC₅₀ values were significantly increased by more than 10-fold when compared to γ-Fe₂O₃-PEI. Formulations exhibited r₂ relaxivities of high numerical value, namely around 160 mM⁻¹ s⁻¹. In summary, novel carrier systems composed of γ-Fe₂O₃-PEGPEI meet key quality requirements rendering them promising for biomedical applications, e.g. as MRI contrast agents.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21315813     DOI: 10.1016/j.ijpharm.2010.12.046

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  13 in total

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3.  Modified wound dressing with phyto-nanostructured coating to prevent staphylococcal and pseudomonal biofilm development.

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Journal:  Nanoscale Res Lett       Date:  2012-12-31       Impact factor: 4.703

Review 4.  Application of magnetic nanoparticles to gene delivery.

Authors:  Daisuke Kami; Shogo Takeda; Yoko Itakura; Satoshi Gojo; Masatoshi Watanabe; Masashi Toyoda
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5.  In vitro evaluation of anti-pathogenic surface coating nanofluid, obtained by combining Fe3O4/C12 nanostructures and 2-((4-ethylphenoxy)methyl)-N-(substituted-phenylcarbamothioyl)-benzamides.

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6.  Optimized anti-pathogenic agents based on core/shell nanostructures and 2-((4-ethylphenoxy)ethyl)-N-(substituted-phenylcarbamothioyl)-benzamides.

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Journal:  Int J Mol Sci       Date:  2012-10-01       Impact factor: 5.923

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8.  Hybrid nanostructured coating for increased resistance of prosthetic devices to staphylococcal colonization.

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Review 9.  Modern micro and nanoparticle-based imaging techniques.

Authors:  Marketa Ryvolova; Jana Chomoucka; Jana Drbohlavova; Pavel Kopel; Petr Babula; David Hynek; Vojtech Adam; Tomas Eckschlager; Jaromir Hubalek; Marie Stiborova; Jozef Kaiser; Rene Kizek
Journal:  Sensors (Basel)       Date:  2012-11-02       Impact factor: 3.576

10.  Sustained release of prindopril erbumine from its chitosan-coated magnetic nanoparticles for biomedical applications.

Authors:  Dena Dorniani; Mohd Zobir Bin Hussein; Aminu Umar Kura; Sharida Fakurazi; Abdul Halim Shaari; Zalinah Ahmad
Journal:  Int J Mol Sci       Date:  2013-12-03       Impact factor: 5.923

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