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金修饰磁性纳米粒子设计用于热疗应用,并作为其表面功能化的潜在平台。

Gold-decorated magnetic nanoparticles design for hyperthermia applications and as a potential platform for their surface-functionalization.

机构信息

Laboratory of Magnetic Characterization, Instituto de Física, Universidade de Brasília, Brasília, DF, 70910-900, Brazil.

Instituto de Nanociencia de Aragón (INA), Universidad de Zaragoza, Zaragoza, 50018, Spain.

出版信息

Sci Rep. 2019 Mar 12;9(1):4185. doi: 10.1038/s41598-019-40769-2.

Abstract

The integration of noble metal and magnetic nanoparticles with controlled structures that can couple various specific effects to the different nanocomposite in multifunctional nanosystems have been found interesting in the field of medicine. In this work, we show synthesis route to prepare small Au nanoparticles of sizes  = 3.9 ± 0.2 nm attached to FeO nanoparticle cores ( = 49.2 ± 3.5 nm) in aqueous medium for potential application as a nano-heater. Remarkably, the resulted Au decorated PEI-FeO (Au@PEI-FeO) nanoparticles are able to retain bulk magnetic moment M = 82-84 Am/kg, with the Verwey transition observed at T = 98 K. In addition, the in vitro cytotoxicity analysis of the nanosystem microglial BV2 cells showed high viability (>97.5%) to concentrate up to 100 µg/mL in comparison to the control samples. In vitro heating experiments on microglial BV2 cells under an ac magnetic field (H = 23.87 kA/m; f = 571 kHz) yielded specific power absorption (SPA) values of SPA = 43 ± 3 and 49 ± 1 μW/cell for PEI-FeO and Au@PEI-FeO NPs, respectively. These similar intracellular SPA values imply that functionalization of the magnetic particles with Au did not change the heating efficiency, providing at the same time a more flexible platform for multifunctional functionalization.

摘要

在医学领域,具有可控结构的贵金属和磁性纳米粒子与不同纳米复合材料的各种特定效应相结合的多功能纳米系统已经引起了人们的兴趣。在这项工作中,我们展示了一种在水相介质中合成小尺寸 Au 纳米粒子(=3.9±0.2nm)的方法,这些 Au 纳米粒子附着在 FeO 纳米粒子核(=49.2±3.5nm)上,用于潜在的纳米加热器应用。值得注意的是,得到的 Au 修饰的 PEI-FeO(Au@PEI-FeO)纳米粒子能够保留大块磁矩 M=82-84 Am/kg,在 T=98 K 时观察到 Verwey 转变。此外,对纳米系统小神经胶质 BV2 细胞的体外细胞毒性分析表明,与对照样品相比,该纳米系统在高达 100μg/mL 的浓度下仍具有高存活率(>97.5%)。在交流磁场(H=23.87 kA/m; f=571 kHz)下对小神经胶质 BV2 细胞进行体外加热实验,PEI-FeO 和 Au@PEI-FeO NPs 的比吸收功率(SAP)值分别为 43±3 和 49±1μW/细胞。这些相似的细胞内 SAP 值表明,Au 对磁性颗粒的功能化并没有改变加热效率,同时为多功能功能化提供了一个更灵活的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2d1/6414712/ab38cbc5258f/41598_2019_40769_Fig1_HTML.jpg

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