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Functionalization of magnetic nanoparticles for biomedical applications

机译:磁性纳米粒子在生物医学应用中的功能化

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摘要

Interest in utilizing magnetic nanoparticles for biomedical treatments originates from their external controllability of transportation and movement inside biological objects and magnetic heat generation. Advances in nanoparticle and nanotechnology enable us to produce magnetic nanoparticles of specific morphology and to engineer particle surfaces to manipulate their characteristics for specific applications. Intensive investigations and developments have been carried out in improving the quality of magnetic particles, regarding their size, shape, size distribution, their magnetism and their surface. The magnetic nanoparticles with appropriate surface chemistry can conjugate various bio-materials such as drugs, proteins, enzymes, antibodies, or nucleotides to be used for numerous in vivo applications including MRI contrast enhancement, immunoassay, hyperthermia, drug delivery, and cell separation. Here we review both the key technical principles of magnetic nanoparticle synthesis and the ongoing advancement of biomedical treatments using magnetic nanoparticles, specifically, the advancement in controlled drug delivery and hyperthermia.
机译:利用磁性纳米颗粒进行生物医学治疗的兴趣来自它们在生物物体内部的运输和运动以及磁热产生的外部可控性。纳米粒子和纳米技术的进步使我们能够生产出具有特定形态的磁性纳米粒子,并能够对粒子表面进行工程处理以针对特定应用操纵其特性。关于磁性颗粒的尺寸,形状,尺寸分布,磁性和表面的质量,已经进行了深入的研究和开发。具有适当表面化学性质的磁性纳米粒子可以结合各种生物材料,例如药物,蛋白质,酶,抗体或核苷酸,以用于多种体内应用,包括MRI对比增强,免疫测定,热疗,药物递送和细胞分离。在这里,我们回顾了磁性纳米粒子合成的关键技术原理以及使用磁性纳米粒子的生物医学治疗的持续进展,特别是在受控药物递送和热疗方面的进展。

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