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Inorganic nanocrystals as contrast agents in MRI: synthesis, coating and introduction of multifunctionality

机译:无机纳米晶体在MRI中作为造影剂:多功能的合成,涂层和引入

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摘要

Inorganic nanocrystals have myriad applications in medicine, including their use as drug or gene delivery complexes, therapeutic hyperthermia agents, in diagnostic systems and as contrast agents in a wide range of medical imaging techniques. In MRI, nanocrystals can produce contrast themselves, with iron oxides having been the most extensively explored, or can be given a coating that generates MR contrast, for example gold nanoparticles coated with gadolinium chelates. These MR-active nanocrystals can be used for imaging of the vasculature, liver and other organs, as well as molecular imaging, cell tracking and theranostics. As a result of these exciting applications, the synthesis and rendering of these nanocrystals as water soluble and biocompatible are therefore highly desirable. We discuss aqueous phase and organic phase methods for the synthesis of inorganic nanocrystals, such as gold, iron oxides and quantum dots. The pros and cons of the various methods are highlighted. We explore various methods for making nanocrystals biocompatible, i.e. direct synthesis of nanocrystals coated with biocompatible coatings, ligand substitution, amphiphile coating and embedding in carrier matrices that can be made biocompatible. Various examples are highlighted and their applications explained. These examples signify that the synthesis of biocompatible nanocrystals with controlled properties has been achieved by numerous research groups and can be applied to a wide range of applications. Therefore, we expect to see reports of preclinical applications of ever more complex MRI-active nanoparticles and their wider exploitation, as well as in novel clinical settings
机译:无机纳米晶体在医学中有无数的应用,包括它们在多种医学成像技术中作为药物或基因传递复合物,治疗性高温治疗剂,诊断系统以及造影剂的用途。在MRI中,纳米晶体自身可以产生对比度,其中氧化铁已经被最广泛地研究,或者可以被赋予产生MR对比度的涂层,例如涂有nanoparticles螯合物的金纳米颗粒。这些MR活性纳米晶体可用于血管,肝脏和其他器官的成像,以及分子成像,细胞跟踪和治疗学。由于这些令人兴奋的应用,因此非常需要这些纳米晶体的合成和呈水溶性和生物相容性。我们讨论了用于合成无机纳米晶体(例如金,氧化铁和量子点)的水相和有机相方法。突出了各种方法的优缺点。我们探索了各种使纳米晶体具有生物相容性的方法,即直接合成涂覆有生物相容性涂层,配体取代,两亲性涂层并嵌入可生物相容的载体基质中的纳米晶体。突出显示了各种示例,并说明了它们的应用。这些实施例表明,具有可控性能的生物相容性纳米晶体的合成已由众多研究小组完成,可应用于广泛的应用领域。因此,我们希望看到有关更复杂的MRI活性纳米粒子的临床前应用及其更广泛的利用以及在新型临床环境中的报道。

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