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Size-Dependent Transmembrane Transport of Gold Nanocages

机译:金纳米型尺寸依赖跨膜运输

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Gold nanocages (Au NCs), as drug carriers, have been widely applied for cancer diagnosis and photothermal therapy (PTT). Transmembrane transporting efficacy of Au NCs is the fundamental and important issue for their use in PTT. Herein, we used a force tracing technique based on atomic force microscopy to track the dynamic transmembrane process of Au NCs at the single-particle level in real time. Meanwhile, we measured and compared the dynamic parameters of Au NCs with sizes of 50 and 100 nm usually used as nanodrug carriers of PTT. It is concluded that the 50 nm Au NC transmembrane transporting needs smaller force and shorter duration with a much faster speed. However, both the 50 and 100 nm Au NC transmembrane transporting depends on the caveolin-mediated endocytosis, clathrin-mediated endocytosis, and macropinocytosis, which was also confirmed by confocal fluorescence imaging. This report will provide a potential technique for screening nanodrug carriers from the perspective of transmembrane transporting efficacy.
机译:作为药物载体的金纳米病毒(AU NCS)已被广泛应用于癌症诊断和光热疗(PTT)。 AU NCS的跨膜输送疗效是它们在PTT中使用的基本和重要问题。这里,我们使用了基于原子力显微镜的力跟踪技术,实时地跟踪单粒子水平的AU NCS的动态跨膜过程。同时,我们测量并与通常用作PTT的纳米载体的纳米树载体的尺寸为50和100nm的Au ncs的动态参数。得出结论,50nm Au nc跨膜运输需要较小的力,速度更快。然而,50和100nm Au NC跨膜传输均取决于Caveolin介导的内吞作用,克拉仑介导的内吞作用和大毒细胞症,其也通过共聚焦荧光成像证实。本报告将提供一种潜在的技术,用于从跨膜输送功效的角度来筛选纳米载体载体。

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