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首页> 外文期刊>Journal of Materials Research >Redox-responsive mesoporous silica nanoparticles based on fluorescence resonance energy transfer for anti-cancer drug targeting and real-time monitoring
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Redox-responsive mesoporous silica nanoparticles based on fluorescence resonance energy transfer for anti-cancer drug targeting and real-time monitoring

机译:基于荧光共振能量转移的氧化还原响应介孔二氧化硅纳米粒子抗癌药物靶向和实时监测

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摘要

Redox-responsive colloidal mesoporous silica nanoparticles (CMS) drug delivery systems based on fluorescence resonance energy transfer (FRET) was successfully designed for targeting and real-time monitoring in potential cancer therapy. FRET-CMS indicated the typical type Ⅳ isotherm with uniform distribution and wormhole arrangement of mesopores. In vitro release studies indicate the redox-sensitive drug release behaviors. Furthermore, the release of entrapped drugs in real time is monitored by the changed FRET signals of FRET-CMS, which is effectively controlled due to the eliminating FRET with the dissociation of FRET donor-acceptor pair.Fluorescent images of cellular uptake and cell viability test revealed that FRET-CMS enhanced significantly 6-MP accumulation in Hela cells with CD44 receptor over-expressed compared to MCF-7 cells due to the existence of hyaluronic acid and subsequently induced selective cytotoxicity to Hela cells. The obtained results illustrate that FRET-CMS may be a promising nanocarrier for drug delivery systems in cancer therapy.
机译:基于荧光共振能量转移(FRET)的氧化还原响应胶体介孔二氧化硅纳米颗粒(CMS)药物递送系统成功设计用于潜在癌症治疗中的靶向和实时监测。 FRET-CMS表示典型的ⅳ等温线,具有均匀分布和中孔的虫洞布置。体外释放研究表明氧化还原敏感的药物释放行为。此外,通过改变的FRET-CMS的FRET信号来监测实时捕获药物的释放,这是由于消除FRET供体 - 受体对的解离而有效地控制。孔隙摄取和细胞活力测试的荧光图像揭示FRET-CMS在HELA细胞中增强了6-MM积聚,与MCF-7细胞相比,CD44受体由于存在透明质酸和随后对HELA细胞诱导选择性细胞毒性而被呈上表达。所得结果说明了FRET-CMS可以是癌症治疗中药物递送系统的有希望的纳米载体。

著录项

  • 来源
    《Journal of Materials Research》 |2021年第9期|1883-1898|共16页
  • 作者单位

    Key Laboratory of Fermentation Engineering (Ministry of Education) Wuhan China National '111'Center for Cellular Regulation and Molecular Pharmaceutics;

    Wuhan China Hubei Key Laboratory of Industrial Microbiology Hubei University of Technology Wuhan 430068 China;

    Key Laboratory of Fermentation Engineering (Ministry of Education) Wuhan China National '111'Center for Cellular Regulation and Molecular Pharmaceutics;

    Wuhan China Hubei Key Laboratory of Industrial Microbiology Hubei University of Technology Wuhan 430068 China;

    Key Laboratory of Fermentation Engineering (Ministry of Education) Wuhan China National '111'Center for Cellular Regulation and Molecular Pharmaceutics;

    Wuhan China Hubei Key Laboratory of Industrial Microbiology Hubei University of Technology Wuhan 430068 China;

    Key Laboratory of Fermentation Engineering (Ministry of Education) Wuhan China National '111'Center for Cellular Regulation and Molecular Pharmaceutics;

    Wuhan China Hubei Key Laboratory of Industrial Microbiology Hubei University of Technology Wuhan 430068 China;

    Key Laboratory of Fermentation Engineering (Ministry of Education) Wuhan China National '111'Center for Cellular Regulation and Molecular Pharmaceutics;

    Wuhan China Hubei Key Laboratory of Industrial Microbiology Hubei University of Technology Wuhan 430068 China;

    Key Laboratory of Fermentation Engineering (Ministry of Education) Wuhan China National '111'Center for Cellular Regulation and Molecular Pharmaceutics;

    Wuhan China Hubei Key Laboratory of Industrial Microbiology Hubei University of Technology Wuhan 430068 China;

    Key Laboratory of Fermentation Engineering (Ministry of Education) Wuhan China National '111'Center for Cellular Regulation and Molecular Pharmaceutics;

    Wuhan China Hubei Key Laboratory of Industrial Microbiology Hubei University of Technology Wuhan 430068 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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