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Polymer-Coated Hydroxyapatite Nanocarrier for Double-Stranded RNA Delivery

机译:用于双链RNA递送的聚合物涂覆的羟基磷灰石纳米载体

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Conventional synthetic insecticides have limited success due to insect resistance and negative effects on off-target biota and the environment. Although RNA interference (RNAi) is a tool that is becoming more widely utilized in pest control products, naked dsRNA has limited success in most taxa. Nanocarriers have shown promising results in enhancing the efficacy of this tool. In this study, we used a layer-by-layer electrostatic assembly where we synthesized poly(acrylic acid) (PAA)-coated hydroxyapatite (HA) nanoparticles (PAA-HA NPs) as inorganic nanocarriers, which were then coated with a layer of a cationic poly(amino acid), 10 kDa poly-L-arginine (PLR10), to allow for binding of a layer of negatively charged dsRNA. Binding of PLR,PAA-HA NPs to dsRNA was found to increase as the mass ratio of NPs to dsRNA increased. In vitro studies with transgenic SF9 cells (from Spodoptera frugiperda) expressing the firefly luciferase gene showed a significant gene silencing (35% decrease) at a 5:1 NP-to-dsRNA ratio, while naked dsRNA was ineffective at gene silencing. There was a significant concentration-response relationship in knockdown; however, cytotoxicity was observed at higher concentrations. Confocal microscopy studies showed that dsRNA from PLR10-PAA-HA NPs was not localized within endosomes, while naked dsRNA appeared to be entrapped within the endosomes. Overall, polymer-functionalized HA nanocarriers enabled dsRNA to elicit gene knockdown in cells, whereas naked dsRNA was not effective in causing gene knockdown.
机译:常规的合成杀虫剂由于抗虫和对靶向生物群和环境的负面影响而取得有限。虽然RNA干扰(RNAi)是一种在害虫对照产品中越广泛使用的工具,但裸体DSRNA在大多数分类群中取得了有限。纳米载体表明有希望导致提高该工具的功效。在这项研究中,我们使用了一层逐层静电组件,其中我们合成了聚(丙烯酸)(PAA)涂覆的羟基磷灰石(HA)纳米颗粒(PAA-HA NP)作为无机纳米载体,然后用一层涂覆阳离子聚(氨基酸),10kDa聚-L-精氨酸(PLR10),以允许结合带负电荷的DSRNA层。 PLR的结合,发现PAA-HA NPS至DSRNA随着NP与DSRNA的质量比增加而增加。用转基因SF9细胞(来自Spodoptera Frugiperda)的体外研究表达萤火虫荧光素酶基因的显着基因沉默(35%降低)在5:1的NP-to-dsRNA比中,而Naked dsRNA在基因沉默中是无效的。敲低的浓度响应关系存在显着的浓度 - 反应关系;然而,在较高浓度下观察到细胞毒性。共聚焦显微镜研究表明,来自PLR10-PAA-HA NPS的DSRNA未在内体内局部局部,而裸露的DSRNA似乎被捕获在底皮物中。总体而言,聚合物官能化的HA纳米载体使DSRNA能够引发细胞中的基因敲低,而Naked DSRNA在引起基因敲低方面无效。

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