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Biofunctionalized Prussian Blue Nanoparticles for Multimodal Molecular Imaging Applications

机译:生物功能化的普鲁士蓝纳米颗粒用于多峰分子成像应用

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摘要

Multimodal, molecular imaging allows the visualization of biological processes at cellular, subcellular, and molecular-level resolutions using multiple, complementary imaging techniques. These imaging agents facilitate the real-time assessment of pathways and mechanisms in vivo, which enhance both diagnostic and therapeutic efficacy. This article presents the protocol for the synthesis of biofunctionalized Prussian blue nanoparticles (PB NPs) - a novel class of agents for use in multimodal, molecular imaging applications. The imaging modalities incorporated in the nanoparticles, fluorescence imaging and magnetic resonance imaging (MRI), have complementary features. The PB NPs possess a core-shell design where gadolinium and manganese ions incorporated within the interstitial spaces of the PB lattice generate MRI contrast, both in T1 and T2-weighted sequences. The PB NPs are coated with fluorescent avidin using electrostatic self-assembly, which enables fluorescence imaging. The avidin-coated nanoparticles are modified with biotinylated ligands that confer molecular targeting capabilities to the nanoparticles. The stability and toxicity of the nanoparticles are measured, as well as their MRI relaxivities. The multimodal, molecular imaging capabilities of these biofunctionalized PB NPs are then demonstrated by using them for fluorescence imaging and molecular MRI in vitro.
机译:多峰分子成像允许使用多种互补成像技术以细胞,亚细胞和分子水平的分辨率可视化生物过程。这些成像剂促进了体内途径和机制的实时评估,从而增强了诊断和治疗功效。本文介绍了用于合成生物功能化的普鲁士蓝纳米粒子(PB NP)的协议-一种用于多峰分子成像应用的新型试剂。纳入纳米颗粒的成像方式,荧光成像和磁共振成像(MRI)具有互补性。 PB NP具有核-壳设计,其中在T1和T2加权序列中,掺入PB晶格间隙中的g和锰离子可产生MRI对比度。 PB NP通过静电自组装涂有荧光抗生物素蛋白,从而可以进行荧光成像。用生物素化的配体修饰抗生物素蛋白包被的纳米颗粒,所述配体赋予纳米颗粒分子靶向能力。测量纳米颗粒的稳定性和毒性,以及其MRI弛豫性。然后,通过将这些生物功能化的PB NPs用于体外荧光成像和分子MRI,证明了它们的多峰分子成像功能。

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