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Size-selected Fe3O4–Au hybrid nanoparticles for improved magnetism-based theranostics

机译:尺寸选择的Fe3O4–Au杂化纳米颗粒可改善基于磁性的理论

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摘要

Size-selected Fe3O4–Au hybrid nanoparticles with diameters of 6–44 nm (Fe3O4) and 3–11 nm (Au) were prepared by high temperature, wet chemical synthesis. High-quality Fe3O4 nanocrystals with bulk-like magnetic behavior were obtained as confirmed by the presence of the Verwey transition. The 25 nm diameter Fe3O4–Au hybrid nanomaterial sample (in aqueous and agarose phantom systems) showed the best characteristics for application as contrast agents in magnetic resonance imaging and for local heating using magnetic particle hyperthermia. Due to the octahedral shape and the large saturation magnetization of the magnetite particles, we obtained an extraordinarily high r 2-relaxivity of 495 mM−1·s−1 along with a specific loss power of 617 W·gFe −1 and 327 W·gFe −1 for hyperthermia in aqueous and agarose systems, respectively. The functional in vitro hyperthermia test for the 4T1 mouse breast cancer cell line demonstrated 80% and 100% cell death for immediate exposure and after precultivation of the cells for 6 h with 25 nm Fe3O4–Au hybrid nanomaterials, respectively. This confirms that the improved magnetic properties of the bifunctional particles present a next step in magnetic-particle-based theranostics.
机译:通过高温湿化学合成制备了尺寸选定的Fe3O4–Au杂化纳米颗粒,其直径为6–44 nm(Fe3O4)和3–11 nm(Au)。 Verwey转变的存在证实了获得具有块状磁行为的高质量Fe3O4纳米晶体。直径为25 nm的Fe3O4–Au杂化纳米材料样品(在水性和琼脂糖幻象系统中)显示出最佳特性,可用作磁共振成像中的造影剂以及使用磁性粒子高温疗法进行局部加热。由于八面体的形状和磁铁矿颗粒的饱和磁化强度大,我们获得了495 mM -1 ·s -1 的极高的r 2弛豫率。水性和琼脂糖体系热疗的比损耗功率分别为617 W·gFe -1 和327 W·gFe -1 。对4T1小鼠乳腺癌细胞系进行的功能性体外热疗试验表明,立即暴露和分别用25 nm Fe3O4-Au杂化纳米材料对细胞进行预培养6 h后,细胞死亡分别为80%和100%。这证实了双功能颗粒的改善的磁性质代表了基于磁性颗粒的治疗学的下一步。

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