磁铁矿
磁铁矿
磁性纳米颗粒
磁热疗
超顺磁性
材料科学
磁共振成像
纳米技术
壳体(结构)
氧化铁
磁芯
药物输送
磁性
纳米结构
磁性纳米粒子
医学
纳米颗粒
磁场
冶金
放射科
复合材料
磁化
工程类
物理
电气工程
量子力学
电磁线圈
作者
Ângela Leão Andrade,José Domingos Fabris,Rosana Zacarias Domingues,Márcio C. Pereira
标识
DOI:10.2174/1381612821666150917093543
摘要
Superparamagnetic iron oxides, as magnetite (Fe3O4) or maghemite (γ-Fe2O3), are primary materials with intrinsic properties that enable them, as single components or as special composites, to base advanced techniques in medical clinical practices, as a contrast agent in magnetic resonance imaging (MRI), as magnetically-induced hyperthermic heat generator, and as a magnetic guide to locally deliver drugs to specific sites in the human body. An interesting approach to developing nanoplatforms for those applications consists in manufacturing core@shell nanostructures, in which the precursor magnetic iron oxide (usually, magnetite) acts as a core, and an organic, or inorganic compound is used as a shell in a multifunctional composite. In this review, we report the current advances in the use of magnetite-based core@shell nanostructures, including Fe3O4@SiO2 and Fe3O4@polymers, in MRI, magnetic hyperthermia and drug delivery systems for diagnosis and therapy of tumor cells. The development of nanoplatforms for combined therapy and diagnostic (theranostic) is also addressed.
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