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首页> 外文期刊>Advanced Functional Materials >Biodegradable Dextran Nanogels for RNA Interference: Focusing on Endosomal Escape and Intracellular siRNA Delivery
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Biodegradable Dextran Nanogels for RNA Interference: Focusing on Endosomal Escape and Intracellular siRNA Delivery

机译:用于RNA干扰的可生物降解的葡聚糖纳米凝胶:专注于内体逃逸和细胞内siRNA传递。

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摘要

The successful therapeutic application of small interfering RNA (siRNA) largely relies on the development of safe and effective delivery systems that are able to guide the siRNA therapeutics to the cytoplasm of the target cell. In this report, biodegradable cationic dextran nanogels are engineered by inverse emulsion photopolymerization and their potential as siRNA carriers is evaluated. The nanogels are able to entrap siRNA with a high loading capacity, based on electrostatic interaction. Confocal microscopy and flow cytometry analysis reveal that large amounts of siRNA-loaded nanogels can be internalized by HuH-7 human hepatoma cells without significant cytotoxicity. Following their cellular uptake, it is found that the nanogels are mainly trafficked towards the endolysosomes. The influence of two different strategies to enhance endosomal escape on the extent of gene silencing is investigated. It is found that both the application of photochemical internalization (PCI) and the use of an influenza-derived fusogenic peptide (dilNF-7) can significantly improve the silencing efficiency of siRNA-loaded nanogels. Furthermore, it is shown that an efficient gene silencing requires the degradation of the nanogels. As the degradation kinetics of the nanogels can easily be tailored, these particles show potential for intracellular controlled release of short interfering RNA.
机译:小干扰RNA(siRNA)的成功治疗应用很大程度上依赖于安全有效的递送系统的开发,该系统能够将siRNA治疗剂引导至靶细胞的细胞质。在这份报告中,可生物降解的阳离子右旋糖酐纳米凝胶通过反相乳液光聚合进行工程设计,并评估了其作为siRNA载体的潜力。基于静电相互作用,纳米凝胶能够以高负载能力捕获siRNA。共聚焦显微镜和流式细胞术分析表明,HuH-7人肝癌细胞可以将大量siRNA负载的纳米凝胶内在化,而没有明显的细胞毒性。发现其被细胞吸收后,纳米凝胶主要向内溶酶体运输。研究了两种不同的增强内体逃逸的策略对基因沉默程度的影响。发现光化学内在化(PCI)的应用和流感衍生的融合肽(dilNF-7)的使用都可以显着提高载有siRNA的纳米凝胶的沉默效率。此外,显示出有效的基因沉默需要纳米凝胶的降解。由于可以轻松调整纳米凝胶的降解动力学,因此这些颗粒显示出短干扰RNA在细胞内受控释放的潜力。

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  • 来源
    《Advanced Functional Materials 》 |2009年第9期| 1406-1415| 共10页
  • 作者单位

    Ghent Research Group on Nanomedicines (GRGN) Laboratory of General Biochemistry and Physical Pharmacy Faculty of Pharmaceutical Sciences Harelbekestraat 72, 9000 Ghent (Belgium);

    Ghent Research Group on Nanomedicines (GRGN) Laboratory of General Biochemistry and Physical Pharmacy Faculty of Pharmaceutical Sciences Harelbekestraat 72, 9000 Ghent (Belgium);

    Ghent Research Group on Nanomedicines (GRGN) Laboratory of General Biochemistry and Physical Pharmacy Faculty of Pharmaceutical Sciences Harelbekestraat 72, 9000 Ghent (Belgium);

    Ghent Research Group on Nanomedicines (GRGN) Laboratory of General Biochemistry and Physical Pharmacy Faculty of Pharmaceutical Sciences Harelbekestraat 72, 9000 Ghent (Belgium);

    PCI Biotech Hoffsveien 48, N-0377, Oslo (Norway);

    Ghent Research Group on Nanomedicines (GRGN) Laboratory of General Biochemistry and Physical Pharmacy Faculty of Pharmaceutical Sciences Harelbekestraat 72, 9000 Ghent (Belgium);

    Ghent Research Group on Nanomedicines (GRGN) Laboratory of General Biochemistry and Physical Pharmacy Faculty of Pharmaceutical Sciences Harelbekestraat 72, 9000 Ghent (Belgium);

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