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Iron-based ferritin nanocore as a contrast agent a)

机译:铁基铁蛋白纳米芯作为造影剂a)

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Self-assembling protein cages have been exploited as templates for nanoparticle synthesis. The ferritin molecule, a protein cage present in most living systems, stores excess soluble ferrous iron in the form of an insoluble ferric complex within its cavity. Magnetic nanocores formed by loading excess iron within an engineered ferritin from Archaeoglobus fulgidus (AfFtn-AA) were studied as a potential magnetic resonance (MR) imaging contrast agent. The self-assembly characteristics of the AfFtn-AA were investigated using dynamic light scattering technique and size exclusion chromatography. Homogeneous size distribution of the assembled nanoparticles was observed using transmission electron microscopy. The magnetic properties of iron-loaded AfFtn-AA were studied using vibrating sample magnetometry. Images obtained from a 3.0 T whole-body MRI scanner showed significant brightening of T1 images and signal loss of T2 images with increased concentrations of iron-loaded AfFtn-AA. The analysis of the MR image intensities showed extremely high R2 values (5300 mM?1 s?1) for the iron-loaded AfFtn-AA confirming its potential as a T2 contrast agent.
机译:自组装蛋白笼已被用作纳米颗粒合成的模板。铁蛋白分子是存在于大多数生命系统中的蛋白质笼,以不溶性铁络合物的形式在其腔内存储过量的可溶性亚铁。研究了通过将古细菌古菌(AfFtn-AA)的工程铁蛋白中的过量铁负载在其中形成的磁性纳米核,作为潜在的磁共振(MR)成像造影剂。使用动态光散射技术和尺寸排阻色谱法研究了AfFtn-AA的自组装特征。使用透射电子显微镜观察组装的纳米颗粒的均匀尺寸分布。使用振动样品磁力分析法研究了铁负载的AfFtn-AA的磁性。从3.0 T全身MRI扫描仪获得的图像显示,随着铁负载AfFtn-AA浓度的增加,T1图像明显变亮,T2图像信号丢失。 MR图像强度的分析表明,铁负载的AfFtn-AA的R2值极高(5300 mM?1 s?1),证实了其作为T2造影剂的潜力。

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