多功能磁共振成像探头。

Philipp Biegger, Mark E Ladd, Dorde Komljenovic
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引用次数: 2

摘要

磁共振成像的特点是高空间分辨率和无与伦比的软组织识别。在过去的十年中,内在和外在磁共振(MR)成像探针的发展和特性进一步加强了MR成像在临床前和转化环境中评估癌症的关键作用。各种纳米探针的复杂化学修饰有潜力提供有价值的多功能工具,适用于人类肿瘤的诊断和/或治疗。磁共振成像的缺点是缺乏核医学成像方法所能达到的灵敏度。因此,在适合于MR成像的探针中包含附加功能/功能的优点很多,包括添加根本不同的成像信息(诊断),药物传递(治疗)或两者的组合(治疗学)。近年来,我们目睹了大量的临床前多模态或多功能成像探针主要作为原理证明研究发表,但只有少数易于应用于临床环境。本章总结了多功能磁共振成像探头发展的最新创新,并讨论了这些探头在临床转移中的适用性。
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Multifunctional Magnetic Resonance Imaging Probes.

Magnetic resonance imaging is characterized by high spatial resolution and unsurpassed soft tissue discrimination. Development and characterization of both intrinsic and extrinsic magnetic resonance (MR) imaging probes in the last decade has further strengthened the pivotal role MR imaging holds in the assessment of cancer in preclinical and translational settings. Sophisticated chemical modifications of a variety of nanoparticulate probes hold the potential to deliver valuable multifunctional tools applicable in diagnostics and/or treatment in human oncology. MR imaging suffers from a lack of sensitivity achievable by, e.g., nuclear medicine imaging methods. Advantages of including additional functionality/functionalities in a probe suitable for MR imaging are thus numerous, comprising the addition of fundamentally different imaging information (diagnostics), drug delivery (therapy), or the combination of both (theranostics). In recent years, we have witnessed a plethora of preclinical multimodal or multifunctional imaging probes being published mainly as proof-of-principle studies, yet only a handful are readily applicable in clinical settings. This chapter summarizes recent innovations in the development of multifunctional MR imaging probes and discusses the suitability of these probes for clinical transfer.

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