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Layer-by-Layer Self-Assembly of Polyelectrolytes on Superparamagnetic Nanoparticle Surfaces

机译:在超顺磁性纳米粒子表面上的聚电解质层层自组装

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Designing and manufacturing multifunctional nanoparticles (NPs) are of considerable interest for both academic and industrial research. Among NPs used in this field, iron oxide NPs show low toxicity compared to metallic ones and are thus of high interest for biomedical applications. In this work, superparamagnetic Fe_(3?δ)O_(4)-based core/shell NPs were successfully prepared and characterized by the combination of different techniques, and their physical properties were investigated. We demonstrate the efficiency of the layer-by-layer process to graft polyelectrolytes on the surface of iron oxide NPs. The influence of the polyelectrolyte chain configuration on the magnetic properties of the Fe_(3?δ)O_(4)/polymer core/shell NPs was enlightened. The simple and fast process described in this work is efficient for the grafting of polyelectrolytes from surfaces, and thus, derived Fe_(3?δ)O_(4) NPs display both the physical properties of the core and of the macromolecular shell. Finally, the cytotoxicity toward the human THP-1 monocytic cell line of the core/shell NPs was assessed. The results showed that the polymer-capped Fe_(3?δ)O_(4) NPs exhibited almost no toxicity after 24 h of exposure at concentrations up to 25 μg mL~(–1). Our results show that these smart superparamagnetic nanocarriers with stealth properties are promising for applications in multimodal cancer therapy, including drug delivery.
机译:设计和制造多功能纳米颗粒(NPS)对学术和工业研究具有相当大的兴趣。在该领域使用的NPS中,与金属材料相比,氧化铁NPS显示出低毒性,因此对生物医学应用具有高兴趣。在这项工作中,成功地制备了超顺磁Fe_(3?δ)O_(4)基础核/壳NPS,并通过不同技术的组合来表征,并研究其物理性质。我们展示了层逐层过程的效率在氧化铁NPS表面上的移植聚电解质。聚电解质链构型对Fe_(3→δ)/(4)/聚合物核/壳NPS的磁性的影响是在开明的。本作工作中描述的简单快速的过程是从表面接枝到聚电解质的有效,因此导出的FE_(3?Δ)O_(4)NPS显示核心和大分子壳的物理性质。最后,评估核心/壳NPS的人THP-1单核细胞系的细胞毒性。结果表明,聚合物封端的Fe_(3→δ)O_(4)NPS在浓度为高达25μg×(-1)的浓度下的24小时后几乎没有毒性。我们的研究结果表明,这些智能超顺磁性纳米载体具有隐形性能,对多模式癌症治疗中的应用是有前途的,包括药物递送。

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