首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Biodegradable Nanoparticles of mPEG-PLGA-PLL Triblock Copolymers as Novel Non-Viral Vectors for Improving siRNA Delivery and Gene Silencing
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Biodegradable Nanoparticles of mPEG-PLGA-PLL Triblock Copolymers as Novel Non-Viral Vectors for Improving siRNA Delivery and Gene Silencing

机译:mPEG-PLGA-PLL三嵌段共聚物的可生物降解纳米粒子作为新型非病毒载体用于改善siRNA传递和基因沉默。

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摘要

Degradation of mRNA by RNA interference is one of the most powerful and specific mechanisms for gene silencing. However, insufficient cellular uptake and poor stability have limited its usefulness. Here, we report efficient delivery of siRNA via the use of biodegradable nanoparticles (NPs) made from monomethoxypoly(ethylene glycol)-poly(lactic-co-glycolic acid)-poly-l-lysine (mPEG-PLGA-PLL) triblock copolymers. Various physicochemical properties of mPEG-PLGA-PLL NPs, including morphology, size, surface charge, siRNA encapsulation efficiency, and in vitro release profile of siRNA from NPs, were characterized by scanning electron microscope, particle size and zeta potential analyzer, and high performance liquid chromatography. The levels of siRNA uptake and targeted gene inhibition were detected in human lung cancer SPC-A1-GFP cells stably expressing green fluorescent protein. Examination of the cultured SPC-A1-GFP cells with fluorescent microscope and flow cytometry showed NPs loading Cy3-labeled siRNA had much higher intracellular siRNA delivery efficiencies than siRNA alone and Lipofectamine-siRNA complexes. The gene silencing efficiency of mPEG-PLGA-PLL NPs was higher than that of commercially available transfecting agent Lipofectamine while showing no cytotoxicity. Thus, the current study demonstrates that biodegradable NPs of mPEG-PLGA-PLL triblock copolymers can be potentially applied as novel non-viral vectors for improving siRNA delivery and gene silencing.
机译:RNA干扰导致的mRNA降解是基因沉默的最强大,最具体的机制之一。但是,细胞摄取不足和稳定性差限制了其用途。在这里,我们报告通过使用由单甲氧基聚(乙二醇)-聚(乳酸-共-乙醇酸)-聚-1-赖氨酸(mPEG-PLGA-PLL)三嵌段共聚物制成的可生物降解纳米颗粒(NP),有效递送siRNA。通过扫描电子显微镜,粒度和Zeta电势分析仪表征了mPEG-PLGA-PLL NP的各种理化特性,包括形态,大小,表面电荷,siRNA包封效率以及siRNA从NPs的体外释放特性。液相色谱。在稳定表达绿色荧光蛋白的人肺癌SPC-A1-GFP细胞中检测到siRNA摄取水平和靶向基因抑制作用。用荧光显微镜和流式细胞术检查培养的SPC-A1-GFP细胞显示,NPs加载Cy3标记的siRNA比单独的siRNA和Lipofectamine-siRNA复合物具有更高的细胞内siRNA传递效率。 mPEG-PLGA-PLL NP的基因沉默效率高于市售转染剂Lipofectamine,但无细胞毒性。因此,当前的研究表明,mPEG-PLGA-PLL三嵌段共聚物的生物可降解NP可以潜在地用作新型非病毒载体,以改善siRNA的传递和基因沉默。

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