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Nanoparticle-Based Paramagnetic Contrast Agents for Magnetic Resonance Imaging

机译:基于纳米粒子的磁共振成像剂

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摘要

Magnetic resonance imaging (MRI) is a noninvasive medical imaging modality that is routinely used in clinics, providing anatomical information with micron resolution, soft tissue contrast, and deep penetration. Exogenous contrast agents increase image contrast by shortening longitudinal (T1) and transversal (T2) relaxation times. Most of the T1 agents used in clinical MRI are based on paramagnetic lanthanide complexes (largely Gd-based). In moving to translatable formats of reduced toxicity, greater chemical stability, longer circulation times, higher contrast, more controlled functionalisation and additional imaging modalities, considerable effort has been applied to the development of nanoparticles bearing paramagnetic ions. This review summarises the most relevant examples in the synthesis and biomedical applications of paramagnetic nanoparticles as contrast agents for MRI and multimodal imaging. It includes the most recent developments in the field of production of agents with high relaxivities, which are key for effective contrast enhancement, exemplified through clinically relevant examples.
机译:磁共振成像(MRI)是临床上常规使用的一种非侵入性医学成像方式,可提供具有微米分辨率,软组织对比度和深层穿透力的解剖信息。外源性造影剂通过缩短纵向(T1)和横向(T2)弛豫时间来提高图像对比度。临床MRI中使用的大多数T1药物都是基于顺磁性镧系元素络合物(主要是基于Gd)。在转向降低毒性,更大的化学稳定性,更长的循环时间,更高的对比度,更可控的功能化以及其他成像方式的可翻译形式时,已为开发带有顺磁性离子的纳米粒子付出了巨大的努力。这篇综述总结了顺磁性纳米粒子作为MRI和多峰成像造影剂的合成和生物医学应用中最相关的例子。它包括高松弛度药物生产领域的最新进展,这是有效增强对比度的关键,并通过临床相关实例进行了举例说明。

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