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Iron Oxide Nanoparticles as T_1 Contrast Agents for Magnetic Resonance Imaging: Fundamentals, Challenges, Applications,and Prospectives

机译:氧化铁纳米粒子作为磁共振成像的T_1造影剂:基本原,挑战,应用和探索

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摘要

Gadolinium-based chelates are a mainstay of contrast agents for magnetic resonance imaging (MRI) in the clinic. However, their toxicity elicits severe side effects and the Food and Drug Administration has issued many warnings about their potential retention in patients' bodies, which causes safety concerns. Iron oxide nanoparticles (IONPs) are a potentially attractive alternative, because of their nontoxic and biodegradable nature. Studies in developing IONPs as T-1 contrast agents have generated promising results, but the complex, interrelated parameters influencing contrast enhancement make the development difficult, and IONPs suitable for T-1 contrast enhancement have yet to make their way to clinical use. Here, the fundamental principles of MRI contrast agents are discussed, and the current status of MRI contrast agents is reviewed with a focus on the advantages and limitations of current T-1 contrast agents and the potential of IONPs to serve as safe and improved alternative to gadolinium-based chelates. The past advances and current challenges in developing IONPs as a T-1 contrast agent from a materials science perspective are presented, and how each of the key material properties and environment variables affects the performance of IONPs is assessed. Finally, some potential approaches to develop high-performance and clinically relevant T-1 contrast agents are discussed.
机译:基于钆的螯合物是临床磁共振成像(MRI)的造影剂的主干。然而,他们的毒性引发了严重的副作用,食品和药物管理局已经发出了许多关于患者机构潜在保留的警告,这会导致安全问题。氧化铁纳米颗粒(IONP)是一种潜在有吸引力的替代品,因为它们的无毒和可生物降解性。作为T-1造影剂的培养IONP的研究产生了有希望的结果,但影响对比增强的复杂,相互关联的参数使得开发困难,并且适合于T-1对比增强的IONP尚未成为临床用途。在这里,讨论了MRI造影剂的基本原理,并审查了MRI造影剂的当前状态,重点是当前T-1造影剂的优缺点和IONPS的潜力,以安全和改进的替代方案基于钆的螯合物。提出了从材料科学透视的T-1造影剂开发IONP的过去的进步和当前挑战,以及如何评估IONP的关键材料性能和环境变量。最后,讨论了一些潜在的开发高性能和临床相关的T-1造影剂的方法。

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