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Silica Coated Iron/Iron Oxide Nanoparticles as a Nano-Platform for T2 Weighted Magnetic Resonance Imaging

机译:二氧化硅涂层的铁/氧化铁纳米粒子作为T2加权磁共振成像的纳米平台

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摘要

The growing concern over the toxicity of Gd-based contrast agents used in magnetic resonance imaging (MRI) motivates the search for less toxic and more effective alternatives. Among these alternatives, iron–iron oxide (Fe@FeOx) core-shell architectures have been long recognized as promising MRI contrast agents while limited information on their engineering is available. Here we report the synthesis of 10 nm large Fe@FeOx nanoparticles, their coating with a 11 nm thick layer of dense silica and functionalization by 5 kDa PEG chains to improve their biocompatibility. The nanomaterials obtained have been characterized by a set of complementary techniques such as infra-red and nuclear magnetic resonance spectroscopies, transmission electron microscopy, dynamic light scattering and zetametry, and magnetometry. They display hydrodynamic diameters in the 100 nm range, zetapotential values around −30 mV, and magnetization values higher than the reference contrast agent RESOVIST . They display no cytotoxicity against 1BR3G and HCT116 cell lines and no hemolytic activity against human red blood cells. Their nuclear magnetic relaxation dispersion (NMRD) profiles are typical for nanomaterials of this size and magnetization. They display high r relaxivity values and low r leading to enhanced r /r ratios in comparison with RESOVIST . All these data make them promising contrast agents to detect early stage tumors.
机译:人们越来越关注磁共振成像(MRI)中使用的基于Gd的造影剂的毒性,这促使人们寻求毒性更小,更有效的替代品。在这些替代方案中,铁-氧化铁(Fe @ FeOx)核壳结构长期以来被认为是很有前途的MRI造影剂,但有关其工程的信息有限。在这里,我们报告了10 nm大的Fe @ FeOx纳米颗粒的合成,其包覆有11 nm厚的致密二氧化硅层,并通过5 kDa PEG链进行功能化以改善其生物相容性。所获得的纳米材料已经通过一系列互补技术进行了表征,例如红外和核磁共振谱,透射电子显微镜,动态光散射和Zetametry和磁力测定。它们显示的流体力学直径在100 nm范围内,ζ电势值约为-30 mV,磁化值高于参考造影剂RESOVIST。它们对1BR3G和HCT116细胞系无细胞毒性,对人红细胞无溶血活性。这种尺寸和磁化强度的纳米材料具有典型的核磁弛豫色散(NMRD)曲线。与RESOVIST相比,它们显示出较高的r弛豫率值和较低的r导致r / r比提高。所有这些数据使它们成为检测早期肿瘤的有希望的造影剂。

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