Fang Chen, Zhang Miqin
Department of Materials Science and Engineering, University of Washington, Seattle, WA 98195, USA.
J Mater Chem. 2009 Jan 1;19:6258-6266. doi: 10.1039/b902182e.
Magnetic nanoparticles (MNPs) have attracted enormous research attention due to their unique magnetic properties that enable the detection by the non-invasive medical imaging modality-magnetic resonance imaging (MRI). By incorporating advanced features, such as specific targeting, multimodality, therapeutic delivery, the detectability and applicability of MNPs have been dramatically expanded. A delicate design on structure, composition and surface chemistry is essential to achieving desired properties in MNP systems, such as high imaging contrast and chemical stability, non-fouling surface, target specificity and/or multimodality. This article presents the design fundamentals on the development of MNP systems, from discussion of material selection for nanoparticle cores and coatings, strategies for chemical synthesis and surface modification and their merits and limitations, to conjugation of special biomolecules for intended functions, and reviews the recent advances in the field.
磁性纳米粒子(MNPs)因其独特的磁性而备受研究关注,这种磁性使得它们能够通过非侵入性医学成像方式——磁共振成像(MRI)进行检测。通过融入先进特性,如特异性靶向、多模态、治疗性递送,MNPs的可检测性和适用性得到了极大扩展。在MNP系统中,对结构、组成和表面化学进行精细设计对于实现所需特性至关重要,例如高成像对比度和化学稳定性、非污表面、靶向特异性和/或多模态。本文介绍了MNP系统开发的设计基础,从讨论纳米颗粒核心和涂层的材料选择、化学合成和表面改性策略及其优缺点,到用于特定功能的特殊生物分子的共轭,并综述了该领域的最新进展。