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Facile One-Pot Synthesis of Fe3O4@Au Composite Nanoparticles for Dual-Mode MR/CT Imaging Applications

机译:Fe3O4 @ Au复合纳米粒子的一锅法合成,用于双模式MR / CT成像应用

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A facile one-pot hydrothermal approach to synthesizing Fe3O4@Au composite nanoparticles (CNPs) for dual-mode magnetic resonance (MR) and computed tomography (CT) imaging applications is reported. In this work, polyethyleneimine (PEI) partially modified with poly(ethylene glycol) monomethyl ether (mPEG) was used as a stabilizer to form gold NPs (mPEG-PEI.NHrAu NPs) with the assistance of sodium borohydride reduction. The mPEG-PEI.NH2-Au NPs were then mixed with iron(II) salt in a basic aqueous solution followed by treatment under an elevated temperature and pressure. This hydrothermal process led to the formation of Fe3O4@Au-mPEG-PEI.NH2 CNPs. The remaining PEI amine groups were finally acetylated to reduce the surface positive charge of the CNPs. The formed Fe3O4@Au-mPEG-PEI.NHAc (Fe3O4@Au) CNPs were characterized via different techniques. The combined in vitro cell viability assay, cell morphology observation, flow cytometry, and hemolysis assay data show that the formed Fe3O4@Au CNPs are noncytotoxic and hemocompatible in the given concentration range. MR and CT imaging data reveal that the formed Fe3O4@Au CNPs have a relatively high r2 relaxivity (146.07 mM~(-1) s~(-1)) and good X-ray attenuation property, which enables their uses as contrast agents for MR imaging of mouse liver and CT imaging of rat liver and aorta. The Fe3O4@Au CNPs developed via the facile one-pot approach may have promising potential for the dual-mode MR/CT imaging of different biological systems.
机译:报道了一种简便的一锅水热法,用于合成Fe3O4 @ Au复合纳米颗粒(CNP),用于双模磁共振(MR)和计算机断层扫描(CT)成像应用。在这项工作中,使用聚乙二醇单甲醚(mPEG)部分改性的聚乙烯亚胺(PEI)作为稳定剂在硼氢化钠还原的帮助下形成了金纳米颗粒(mPEG-PEI.NHrAu NPs)。然后将mPEG-PEI.NH2-Au NP与铁(II)盐在碱性水溶液中混合,然后在高温高压下处理。这种水热过程导致了Fe3O4@Au-mPEG-PEI.NH2 CNP的形成。最后将剩余的PEI胺基乙酰化,以减少CNP的表面正电荷。通过不同的技术对形成的Fe3O4@Au-mPEG-PEI.NHAc(Fe3O4 @ Au)CNP进行了表征。结合的体外细胞生存力测定,细胞形态观察,流式细胞术和溶血测定数据表明,在给定的浓度范围内,形成的Fe3O4 @ Au CNP无细胞毒性并且具有血液相容性。 MR和CT成像数据表明,所形成的Fe3O4 @ Au CNP具有较高的r2弛豫度(146.07 mM〜(-1)s〜(-1))和良好的X射线衰减特性,从而使其可用作造影剂。小鼠肝脏的MR成像和大鼠肝脏和主动脉的CT成像。通过简便的一锅法开发的Fe3O4 @ Au CNP可能在不同生物系统的双模式MR / CT成像中具有广阔的应用前景。

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