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High-performance nanostructured MR contrast probes

机译:高性能纳米结构的MR对比探针

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摘要

Magnetic resonance imaging (MRI) has become a powerful technique in biological molecular imaging and clinical diagnosis. With the rapid progress in nanoscale science and technology, nanostructure-based MR contrast agents are undergoing rapid development. This is in part due to the tuneable magnetic and cellular uptake properties, large surface area for conjugation and favourable biodistribution. In this review, we describe our recent progress in the development of high-performance nanostructured MR contrast agents. Specifically, we report on Gd-enriched nanostructured probes that exhibit T1 MR contrast and superparamagnetic Fe3O4 and CoFe2O4 nanostructures that display T2 MR contrast enhancement. The effects of nanostructure size, shape, assembly and surface modification on relaxivity are described. The potential of these contrast agents for in vitro and in vivo MR imaging with respect to colloidal stability under physiological conditions, biocompatibility, and surface functionality are also evaluated.
机译:磁共振成像(MRI)已成为生物分子成像和临床诊断的强大技术。随着纳米级科学和技术的快速发展,基于纳米结构的MR对比剂代理正在快速发展。这部分是由于可调的磁性和细胞摄取特性,用于共轭的较大表面积和有利的生物分布。在这篇综述中,我们描述了我们在高性能纳米结构的MR对比剂发展方面的最新进展。具体而言,我们报告了富含GD的纳米结构探针,这些探针表现出T1 MR对比度和超顺磁Fe3O4和COFE2O4纳米结构,这些探针显示T2 MR对比度增强。描述了纳米结构大小,形状,组装和表面修饰对弛豫性的影响。还评估了这些对比剂在生理条件,生物相容性和表面功能下相对于胶体稳定性的体外和体内MR成像的潜力。

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