1. Synthesis and characterization of biofunctional quaternized xylan-Fe2O3 core/shell nanocomposites and modification with polylysine and folic acid.
- Author
-
Ma J, Li D, Zhong L, Du F, Tan J, Yang J, and Peng X
- Subjects
- Ferric Compounds chemical synthesis, Magnetic Phenomena, Nanoparticles chemistry, Particle Size, Xylans chemical synthesis, Ferric Compounds chemistry, Folic Acid chemistry, Nanocomposites chemistry, Polylysine chemistry, Xylans chemistry
- Abstract
The aims of this study are to prepare quaternized xylan-Fe
2 O3 (QX-Fe2 O3 ) core/shell nanocomposites and explore their potential application in the biomedical fields. γ-Fe2 O3 nanoparticles synthesized by a facile solvothermal process are coated with QX via reverse microemulsion method and further modified by polylysine (PLL) and folic acid (FA) to prepare PLL-QX-Fe2 O3 and FA-QX-Fe2 O3 nanoparticles. An obvious strong absorption of γ-Fe2 O3 at 580 cm-1 in the spectra of QX-Fe2 O3 is observed, the Fe element content of QX-Fe2 O3 is 30-75 μg/mL and the saturation magnetization of QX-Fe2 O3 nanoparticles is 1.49 emu/g. The γ-Fe2 O3 and QX-Fe2 O3 nanoparticles are of regular sphericity with diameter of 50-100 nm and 60-150 nm, respectively. The highest zeta potential of QX-Fe2 O3 nanoparticles is -41 mV, and the PLL-QX-Fe2 O3 nanoparticles have a positive potential with a maximum value of 45.2 mV. In addition, FA-QX-Fe2 O3 showed excellent performance in T2 -weighted Magnetic Resonance (MR) imaging with an r2 value of 190 mM-1 S-1 . Each nanocomposite has its own inherent properties, which contributes to its versatile utilization and application potential., (Copyright © 2018. Published by Elsevier Ltd.)- Published
- 2018
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