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首页> 外文期刊>Bioconjugate Chemistry >Biofunctionaiized Gadolinium-Containing Prussian Blue Nanoparticles as Multimodal Molecular Imaging Agents
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Biofunctionaiized Gadolinium-Containing Prussian Blue Nanoparticles as Multimodal Molecular Imaging Agents

机译:生物功能化的含rus普鲁士蓝纳米粒子作为多峰分子成像剂。

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摘要

Molecular imaging agents enable the visualization of phenomena with cellular and subcellular level resolutions and therefore have enormous potential in improving disease diagnosis and therapy assessment. In this article, we describe the synthesis, characterization, and demonstration of core-shell, biofunctionaiized, gadolinium-containing Prussian blue nanoparticles as multimodal molecular imaging agents. Our multimodal nanoparticles combine the advantages of MRI and fluorescence. The core of our nanoparticles consists of a Prussian blue lattice with gadolinium ions located within the lattice interstices that confer high relaxivity to the nanoparticles providing MRI contrast. The relaxivities of our nanoparticles are nearly nine times those observed for the clinically used Magnevist. The nanoparticle MRI core is biofunctionaiized with a layer of fluorescently labeled avidin that enables fluorescence imaging. Biotinylated antibodies are attached to the surface avidin and confer molecular specificity to the nanoparticles by targeting cell-specific biomarkers. We demonstrate our nanoparticles as multimodal molecular imaging agents in an in vitro model consisting of a mixture of eosinophilic cells and squamous epithelial cells. Our nanoparticles specifically detect eosinophilic cells and not squamous epithelial cells, via both fluorescence imaging and MRI in vitro. These results suggest the potential of our biofunctionaiized Prussian blue nanoparticles as multimodal molecular imaging agents in vivo.
机译:分子成像剂使细胞和亚细胞水平分辨率的现象可视化,因此在改善疾病诊断和治疗评估方面具有巨大潜力。在本文中,我们描述了核壳,生物功能化的含-普鲁士蓝纳米颗粒作为多峰分子成像剂的合成,表征和演示。我们的多峰纳米颗粒结合了MRI和荧光的优势。我们的纳米颗粒的核心由普鲁士蓝晶格组成,the离子位于晶格间隙内,赋予纳米颗粒以高的弛豫性,从而提供MRI对比。我们的纳米颗粒的弛豫率几乎是临床使用的Magnevist观察到的弛豫率的九倍。纳米颗粒MRI核心通过一层荧光标记的亲和素进行生物功能化,从而可以进行荧光成像。生物素化抗体附着在表面亲和素上,并通过靶向细胞特异性生物标记物赋予纳米颗粒分子特异性。我们在由嗜酸性细胞和鳞状上皮细胞的混合物组成的体外模型中证明了作为多峰分子成像剂的纳米颗粒。我们的纳米颗粒通过荧光成像和MRI体外特异性检测嗜酸性细胞而非鳞状上皮细胞。这些结果表明我们的生物功能化的普鲁士蓝纳米粒子作为体内多峰分子成像剂的潜力。

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