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Surface modification and cellular uptake evaluation of Au-coated Ni80Fe20 nanodiscs for biomedical applications

机译:用于生物医学的Au包覆Ni80Fe20纳米圆片的表面修饰和细胞吸收评估

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摘要

A nanofabrication technique based on self-assembling of polystyrene nanospheres is used to obtain magnetic Ni80Fe20 nanoparticles with a disc shape. The free-standing nanodiscs (NDs) have diameter and thickness of about 630 nm and 30 nm, respectively. The versatility of fabrication technique allows one to cover the ND surface with a protective gold layer with a thickness of about 5 nm. Magnetization reversal has been studied by room-temperature hysteresis loop measurements in water-dispersed free-standing NDs. The reversal shows zero remanence, high susceptibility and nucleation/annihilation fields due to spin vortex formation. In order to investigate their potential use in biomedical applications, the effect of NDs coated with or without the protective gold layer on cell growth has been evaluated. A successful attempt to bind cysteine-fluorescein isothiocyanate (FITC) derivative to the gold surface of magnetic NDs has been exploited to verify the intracellular uptake of the NDs by cytofluorimetric analysis using the FITC conjugate.
机译:基于聚苯乙烯纳米球自组装的纳米加工技术用于获得具有圆盘形状的磁性Ni80Fe20纳米颗粒。独立式纳米光盘(ND)的直径和厚度分别约为630 nm和30 nm。制造技术的多功能性使得可以用厚度约为5 nm的保护金层覆盖ND表面。磁化反转已通过室温磁滞回线测量在分散于水的独立式ND中进行了研究。由于自旋涡旋的形成,反转显示了零剩磁,高磁化率和成核/ an灭场。为了研究其在生物医学应用中的潜在用途,已评估了涂有或没有保护金层的ND对细胞生长的影响。已经成功地尝试将半胱氨酸荧光素异硫氰酸酯(FITC)衍生物结合到磁性ND的金表面,以通过使用FITC缀合物的细胞荧光分析来验证ND在细胞内的吸收。

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