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Theranostics and contrast agents for magnetic resonance imaging

机译:用于磁共振成像的Theranostics和造影剂

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摘要

Abstract Background Magnetic resonance imaging is one of the diagnostic tools that uses magnetic particles as contrast agents. It is noninvasive methodology which provides excellent spatial resolution. Although magnetic resonance imaging offers great temporal and spatial resolution and rapid in vivo images acquisition, it is less sensitive than other methodologies for small tissue lesions, molecular activity or cellular activities. Thus, there is a desire to develop contrast agents with higher efficiency. Contrast agents are known to shorten both T1 and T2. Gadolinium based contrast agents are examples of T1 agents and iron oxide contrast agents are examples of T2 agents. In order to develop high relaxivity agents, gadolinium or iron oxide-based contrast agents can be synthesized via conjugation with targeting ligands or functional moiety for specific interaction and achieve accumulation of contrast agents at disease sites. Main body This review discusses the principles of magnetic resonance imaging and recent efforts focused on specificity of contrast agents on specific organs such as liver, blood, lymph nodes, atherosclerotic plaque, and tumor. Furthermore, we will discuss the combination of theranostic such as contrast agent and drug, contrast agent and thermal therapy, contrast agent and photodynamic therapy, and neutron capture therapy, which can provide for cancer diagnosis and therapeutics. Conclusion These applications of magnetic resonance contrast agents demonstrate the usefulness of theranostic agents for diagnosis and treatment.
机译:摘要背景磁共振成像是使用磁性粒子作为造影剂的诊断工具之一。它是非侵入性方法,其提供出色的空间分辨率。尽管磁共振成像提供了良好的时间和空间分辨率,并且在体内图像采集中提供了较大的时间,但它比其他小型组织病变,分子活性或细胞活性的方法敏感。因此,希望具有更高效率的造影剂。已知对比剂缩短T1和T2。基于Gadolinium的造影剂是T1试剂的实例,氧化铁造影剂是T2试剂的实例。为了开发出高的松弛剂,可以通过与靶向配体或功能部分的缀合物合成钆或氧化铁的造影剂,用于特异性相互作用,并在疾病位点实现造影剂的积累。主体本综述讨论了磁共振成像的原理和最近的努力,其专注于特定器官上的造影剂特异性,如肝脏,血液,淋巴结,动脉粥样硬化斑块和肿瘤。此外,我们将讨论治疗剂如造影剂和药物,造影剂和热疗,造影剂和光动力治疗,以及中子捕获治疗的组合,可以提供癌症诊断和治疗方法。结论磁共振造影剂的应用证明了治疗剂诊断和治疗的有用性。

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