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首页> 外文期刊>ACS nano >Doxorubicin-Tethered Responsive Gold Nanoparticles Facilitate Intracellular Drug Delivery for Overcoming Multidrug Resistance in Cancer Cells
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Doxorubicin-Tethered Responsive Gold Nanoparticles Facilitate Intracellular Drug Delivery for Overcoming Multidrug Resistance in Cancer Cells

机译:阿霉素拴系的响应性金纳米粒子有助于细胞内药物传递,以克服癌细胞中的多药耐药性

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Multidrug resistance (MDR) is a major impediment to the success of cancer chemotherapy. Through the development of a drug delivery system that tethers doxorubicin onto the surface of gold nanoparticles with a poly(ethylene glycol) spacer via an acid-labile linkage (DOX-Hyd@AuNPs), we have demonstrated that multidrug resistance in cancer cells can be significantly overcome by a combination of highly efficient cellular entry and a responsive intracellular release of doxorubicin from the gold nanoparticles in acidic organelles. DOX-Hyd@AuNPs achieved enhanced drug accumulation and retention in multidrug resistant MCF-7/ADR cancer cells when it was compared with free doxorubicin. It released doxorubicin in response to the pH of acidic organelles following endocytosis, opposite to the noneffective drug release from doxorubicin-tethered gold nanoparticles via the carbamate linkage (DOX-Cbm@AuNPs), which was shown by the recovered fluorescence of doxorubicin from quenching due to the nanosurface energy transfer between the doxorubicinyl groups and the gold nanoparticles. DOX-Hyd@AuNPs therefore significantly enhanced the cytotoxicity of doxorubicin and induced elevated apoptosis of MCF-7/ADR cancer cells. With a combined therapeutic potential and ability to probe drug release, DOX-Hyd@AuNPs represent a model with dual roles In overcoming MDR In cancer cells and probing the intracellular release of drug from its delivery system.
机译:多药耐药性(MDR)是癌症化学疗法成功的主要障碍。通过开发通过酸不稳定键(DOX-Hyd @ AuNPs)用聚乙二醇间隔基将阿霉素拴在金纳米颗粒表面的药物递送系统,我们证明了癌细胞中的多药耐药性高效细胞进入和阿霉素从酸性细胞器中金纳米颗粒的响应性细胞内释放的结合,大大克服了这种情况。与游离阿霉素相比,DOX-Hyd @ AuNPs在具有多重耐药性的MCF-7 / ADR癌细胞中实现了增强的药物蓄积和保留。它通过内吞作用响应酸性细胞器的pH释放阿霉素,这与通过氨基甲酸酯键(DOX-Cbm @ AuNPs)从多柔比星束缚的金纳米颗粒中无效释放药物相反,这是由由于淬灭引起的多柔比星的回收荧光显示的阿霉素基团和金纳米颗粒之间的纳米表面能量转移。因此,DOX-Hyd @ AuNPs显着增强了阿霉素的细胞毒性并诱导了MCF-7 / ADR癌细胞凋亡的增加。具有综合的治疗潜力和探测药物释放的能力,DOX-Hyd @ AuNPs代表了在克服癌细胞中的MDR和探测药物从其递送系统向细胞内释放方面双重作用的模型。

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