Szczegóły publikacji

Opis bibliograficzny

Stable aqueous dispersion of superparamagnetic iron oxide nanoparticles protected by charged chitosan derivatives / Agnieszka Szpak, Gabriela Kania, Tomasz Skórka, Waldemar TOKARZ, Szczepan Zapotoczny, Maria Nowakowska // Journal of Nanoparticle Research : an Interdisciplinary Forum for Nanoscale Science and Technology ; ISSN 1388-0764. — 2013 — vol. 15 iss. 1, s. 1372-1–1372-11. — Bibliogr. s. 10–11, Abstr.

Autorzy (6)

  • Szpak Agnieszka
  • Kania Gabriela
  • Skórka Tomasz
  • AGHTokarz Waldemar
  • Zapotoczny Szczepan
  • Nowakowska Maria

Słowa kluczowe

chitosanrelaxivitysuperparamagnetic nanoparticlesSPIONmagnetic resonance imaginglayer-by-layer deposition

Dane bibliometryczne

ID BaDAP72781
Data dodania do BaDAP2013-04-04
Tekst źródłowyURL
DOI10.1007/s11051-012-1372-9
Rok publikacji2013
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaJournal of Nanoparticle Research

Abstract

This article presents the synthesis and characterization of biocompatible superparamagnetic iron oxide nanoparticles (SPIONs) coated with ultrathin layer of anionic derivative of chitosan. The water-based fabrication involved a two-step procedure. In the first step, the nanoparticles were obtained by co-precipitation of ferrous and ferric aqueous salt solutions with ammonia in the presence of cationic derivative of chitosan. In the second step, such prepared materials were subjected to adsorption of oppositely charged chitosan derivative which resulted in the preparation of negatively charged SPIONs. They were found to develop highly stable dispersion in water. The core size of the nanocoated SPIONs, determined using transmission electron microscopy, was measured to be slightly above 10 nm. The coated nanoparticles form aggregates with majority of them having hydrodynamic diameter below 100 nm, asmeasured by dynamic light scattering. Their composition and properties were studied using FTIR and thermogravimetric analyses. They exhibit magnetic properties typical for superparamagnetic material with a high saturation magnetization value of 123 +/- 12 emu g(-1) Fe. Very high value of the measured r(2) relaxivity, 369 +/- 3 mM(-1) s(-1), is conducive for the potential application of the obtained SPIONs as promising contrast agents in magnetic resonance imaging.

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