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In vitro study of the interaction of heregulin-functionalized magnetic-optical nanorods with MCF7 and MDA-MB- 231 cells

机译:调蛋白功能化的磁光纳米棒与MCF7和MDA-MB-231细胞相互作用的体外研究

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摘要

Multifunctional nanoparticles that actively target specific cells are promising tools for cancer diagnosis and therapy. In this article we review the synthesis and surface chemistry of Fe–Au nanorods and their characterization using microscopy. The diameter of the rods used in this study was selected to be 150–200 nm so that they did not enter the cells. The 80 nm-long Au tips of the nanorods were functionalized with heregulin (HRG), and the micron-long Fe portion was coated with a poly(ethylene glycol) monolayer to minimize non-specific interactions. Nanorods functionalized with HRG were found to preferentially bind to MCF7 cells that express high levels of the receptor tyrosine-protein kinase ErbB2/3. Magnetic tweezers measurements were used to characterize the kinetic properties of the bond between the HRG on the rods and ErbB2/3 on the surface of the cells. The strong magnetization of Fe–Au nanorods makes them excellent candidates for in-vitro and in-vivo imaging, and magnetic therapeutic applications targeting cancer cells in circulation.
机译:主动靶向特定细胞的多功能纳米颗粒是用于癌症诊断和治疗的有前途的工具。在本文中,我们回顾了Fe–Au纳米棒的合成和表面化学及其使用显微镜的表征。本研究中使用的棒直径选择为150–200 nm,以使它们不会进入细胞。纳米棒的80 nm长的Au尖端用调蛋白(HRG)功能化,而微米长的Fe部分则涂有聚乙二醇单层,以最大程度地减少非特异性相互作用。发现用HRG功能化的纳米棒优先与表达高水平的受体酪氨酸蛋白激酶ErbB2 / 3的MCF7细胞结合。磁镊子测量用于表征棒上HRG和细胞表面ErbB2 / 3之间键的动力学性质。 Fe–Au纳米棒的强大磁化强度使其成为体外和体内成像以及针对循环中癌细胞的磁治疗应用的极佳候选者。

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