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首页> 外文期刊>ACS nano >A simple and widely applicable method to ~(59)Fe-radiolabel monodisperse superparamagnetic iron oxide nanoparticles for in vivo quantification studies
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A simple and widely applicable method to ~(59)Fe-radiolabel monodisperse superparamagnetic iron oxide nanoparticles for in vivo quantification studies

机译:一种简单且广泛适用的〜(59)Fe-放射性标记单分散超顺磁性氧化铁纳米颗粒体内定量研究的方法

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摘要

A simple, fast, efficient, and widely applicable method to radiolabel the cores of monodisperse superparamagnetic iron oxide nanoparticles (SPIOs) with ~(59)Fe was developed. These cores can be used as precursors for a variety of functionalized nanodevices. A quality control using filtration techniques, size-exclusion chromatography, chemical degradation methods, transmission electron microscopy, and magnetic resonance imaging showed that the nanoparticles were stably labeled with ~(59)Fe. Furthermore, the particle structure and the magnetic properties of the SPIOs were unchanged. In a second approach, monodisperse SPIOs stabilized with ~(14)C-oleic acid were synthesized, and the stability of this shell labeling was studied. In proof of principle experiments, the ~(59)Fe-SPIOs coated with different shells to make them water-soluble were used to evaluate and compare in vivo pharmacokinetic parameters such as blood half-life. It could also be shown that our radiolabeled SPIOs embedded in recombinant lipoproteins can be used to quantify physiological processes in closer detail than hitherto possible. In vitro and in vivo experiments showed that the ~(59)Fe label is stable enough to be applied in vivo, whereas the ~(14)C label is rapidly removed from the iron core and is not adequate for in vivo studies. To obtain meaningful results in in vivo experiments, only ~(59)Fe-labeled SPIOs should be used.
机译:开发了一种简便,快速,高效且广泛适用的用〜(59)Fe放射性标记单分散超顺磁性氧化铁纳米颗粒(SPIO)核的方法。这些核心可用作各种功能化纳米器件的前体。使用过滤技术,尺寸排阻色谱法,化学降解方法,透射电子显微镜和磁共振成像的质量控制显示,纳米粒子被〜(59)Fe稳定标记。此外,SPIO的颗粒结构和磁性能没有改变。在第二种方法中,合成了用〜(14)C-油酸稳定的单分散SPIO,并研究了这种壳标记的稳定性。在原理实验的证明中,将涂有不同壳的〜(59)Fe-SPIOs制成水溶性,以评估和比较体内药代动力学参数,例如血液半衰期。还可以证明,嵌入到重组脂蛋白中的放射性标记的SPIO可以用来比迄今为止更详细地量化生理过程。体外和体内实验表明,〜(59)Fe标记足够稳定,可以在体内使用,而〜(14)C标记则迅速从铁芯上去除,不足以用于体内研究。为了在体内实验中获得有意义的结果,仅应使用〜(59)Fe标记的SPIO。

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