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PEG-Iron Oxide Core-Shell Nanoparticles: In situ Synthesis and In vitro Biocompatibility Evaluation for Potential T-2-MRI Applications

机译:PEG-氧化铁核 - 壳纳米粒子:原位合成和体外生物相容性评价潜在的T-2-MRI应用

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摘要

Several colloidal nanosystems have been developed aiming biomedical applications that include investigations related to magnetic resonance imaging (MRI) procedures. In this work, a core-shell structure consisting of iron oxide nanoparticles (IONPs) nucleus grafted with polyethylene glycol (PEG)(4000)was prepared and evaluated by physicochemical and magnetic characterization. The polymer was covalently immobilized over nanoparticles through a simple and rapid in situ chemical method. The resulting hybrid material was capable of inducing a relevant T(2)relaxation time in an average compared to marketed MRI formulations, revealing both physical characteristics and magnetic properties adequate for MRI applications. Furthermore, the in vitro biocompatibility profile was assessed by flow cytometry technique, using healthy human cell lineage (HEK-293). The results indicated good biocompatibility profile and non-anti-proliferative properties, and therefore, IONP-PEG can be considered as a new system candidate as a T(2)contrast agent for MRI applications.
机译:已经开发了几种胶体纳米系统的旨在包括与磁共振成像(MRI)程序相关的调查的生物医学应用。在这项工作中,通过物理化学和磁性表征制备由接枝的氧化乙二醇(PEG)(4000)的氧化铁纳米粒子(IONP)核(INOP)组成的核心壳结构。通过简单快速地原位化学方法将聚合物共价固定在纳米颗粒上。与市场上的MRI制剂相比,所得杂化材料能够平均诱导相关的T(2)弛豫时间,揭示用于MRI应用的物理特性和磁性。此外,通过流式细胞术技术,使用健康的人细胞谱系(HEK-293)评估体外生物相容性曲线。结果表明了良好的生物相容性曲线和非抗增殖性能,因此,IONP-PEG可以被认为是作为MRI应用的T(2)造影剂的新系统候选剂。

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