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Non-Covalent Associates of siRNAs and AuNPs Enveloped with Lipid Layer and Doped with Amphiphilic Peptide for Efficient siRNA Delivery

机译:siRNA和AuNPs的非共价缔合包裹有脂质层并掺有两亲性肽可有效递送siRNA。

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摘要

Elaboration of non-viral vehicles for delivery of therapeutic nucleic acids, in particular siRNA, into a cell is an actively growing field. Gold nanoparticles (AuNPs) occupy a noticeable place in these studies, and various nanoconstructions containing AuNPs are reported. We aimed our work to the rational design of AuNPs-based siRNA delivery vehicle with enhanced transfection efficiency. We optimized the obtaining of non-covalent siRNAs-AuNPs cores: ionic strength, temperature and reaction time were determined. Formation of cores was confirmed using gel electrophoresis. Stable associates were prepared, and then enveloped into a lipid layer composed of phosphatidylcholine, phosphatidylethanolamine and novel pH-sensitive lipidoid. The constructions were modified with [Str-(RL)4G-NH2] peptide (the resulting construction). All intermediate and resulting nanoconstructions were analyzed by dynamic light scattering (DLS) and transmission electron microscopy (TEM) to control their physico-chemical properties. To examine the biological effect of the delivery vehicle, green fluorescent protein (GFP)-expressing human embryonic kidney (HEK) Phoenix cells were incubated with the resulting construction containing anti-GFP siRNA, with the siRNA effect being studied by flow cytometry and confocal microscopy. Transfection of the cells with the resulting construction reduced the GFP fluorescence as efficiently as Lipofectamin 3000. Thus, siRNA vehicle based on non-covalently bound siRNA-AuNP core and enveloped into a lipid layer provides efficient delivery of siRNA into a cell followed by specific gene silencing.
机译:制备用于将治疗性核酸,特别是siRNA递送至细胞中的非病毒载体是一个活跃的发展领域。在这些研究中,金纳米颗粒(AuNPs)占据了显着的位置,并且报道了各种包含AuNPs的纳米结构。我们的工作旨在提高转染效率的基于AuNPs的siRNA传递载体的合理设计。我们优化了非共价siRNA-AuNPs核心的获得:确定了离子强度,温度和反应时间。使用凝胶电泳确认核的形成。制备稳定的缔合体,然后包被在由磷脂酰胆碱,磷脂酰乙醇胺和新型pH敏感脂质组成的脂质层中。用[Str-(RL)4G-NH2]肽修饰该构建体(所得的构建体)。通过动态光散射(DLS)和透射电子显微镜(TEM)分析所有中间结构和生成的纳米结构,以控制其物理化学性质。为了检查传递载体的生物学效应,将表达绿色荧光蛋白(GFP)的人胚肾(HEK)Phoenix细胞与所得的含有抗GFP siRNA的构建体一起孵育,并通过流式细胞术和共聚焦显微镜研究siRNA的作用。 。用产生的构建体转染细胞可以像Lipofectamin 3000一样有效地降低GFP荧光。因此,基于非共价结合的siRNA-AuNP核心并包裹在脂质层中的siRNA载体可有效地将siRNA传递到细胞中,然后传递特定基因沉默。

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