首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Polyethyleneimine-Based Core-Shell Nanogels: A Promising siRNA Carrier for Argininosuccinate Synthetase mRNA Knockdown in HeLa Cells
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Polyethyleneimine-Based Core-Shell Nanogels: A Promising siRNA Carrier for Argininosuccinate Synthetase mRNA Knockdown in HeLa Cells

机译:基于聚乙烯亚胺的核壳纳米凝胶:HeLa细胞中精氨酸琥珀酸合成酶mRNA基因敲低的有前途的siRNA载体。

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RNA interference using small interfering RNA (siRNA) is a promising biological strategy for treatment of diverse diseases; however, application of siRNA is severely hindered by its poor stability and low cellular uptake efficiency. We have recently demonstrated that polyethyleneimine (PEI)-based amphiphilic core-shell particles have several distinguishing advantages over native PEI and its derivatives. This paper presents a novel type of PEI-based nanogels with a biodegradable gelatin core. The core-shell nanogels were synthesized via a two-stage reaction: (1) preparation of highly uniform gelatin nanoparticles through appropriate treatment of gelatin solution; and (2) conjugation of branched PEI to the preformed gelatin nanoparticles, followed by repeated cycles of desolvation and drying of the gelatin-PEI nanogels in ethanol/water mixture. The resulting nanogels have a well-defined nanostructure that contains a gelatin core and a PEI shell. They have an average diameter of 200 ± 40 nm with high uniformity. The nanogel particles possess positive zeta-potential values of up to + 40 mV at neutral pH, indicating that they are highly positive and very stable in aqueous medium. The gelatin-PEI nanogels were able to completely condense siRNA at N/P ratios of as low as 5:1, and effectively protected siRNA against enzymatic degradation. Furthermore, the nanogels were four times less toxic than native PEI. Besides low toxicity, the nanogels were able to effectively deliver siRNA into HeLa cells. It was found that increasing the N/P ratio from 10 to 30 significantly increased the intracellular uptake efficiency of siRNA from 41 to 84%. Confocal laser scanning microscopic images confirmed that the nanogels were able to effectively deliver siRNA in the cytoplasm of HeLa cells. The delivered siRNA could inhibit 70% of human argininosuccinate synthetase 1 (ASS1) gene expression. This gene silencing percentage is much higher than that of the commercial Lipofectamine ~(TM) 2000. Our studies demonstrate that gelatin-PEI core-shell nanogels have promising potential to act as an effective siRNA carrier.
机译:使用小分子干扰RNA(siRNA)进行RNA干扰是治疗多种疾病的一种有前途的生物学策略。然而,由于其差的稳定性和低的细胞摄取效率,严重阻碍了siRNA的应用。我们最近已经证明,基于聚乙烯亚胺(PEI)的两亲核-壳颗粒比天然PEI及其衍生物具有几个明显的优势。本文提出了一种新型的具有可生物降解明胶芯的PEI基纳米凝胶。核-壳纳米凝胶是通过两步反应合成的:(1)通过适当处理明胶溶液制备高度均匀的明胶纳米颗粒; (2)将支链PEI缀合至预先形成的明胶纳米颗粒,然后重复进行去溶剂化和在乙醇/水混合物中干燥明胶-PEI纳米凝胶的重复循环。所得的纳米凝胶具有明确定义的纳米结构,其中包含明胶核心和PEI壳。它们的平均直径为200±40 nm,并且具有很高的均匀性。纳米凝胶颗粒在中性pH值下具有高达+ 40 mV的正zeta电位值,表明它们在水性介质中具有很高的正性和非常的稳定性。明胶-PEI纳米凝胶能够以低至5:1的N / P比率完全浓缩siRNA,并有效保护siRNA免受酶促降解。此外,纳米凝胶的毒性比天然PEI低四倍。除了低毒性外,纳米凝胶还能够有效地将siRNA输送到HeLa细胞中。发现将N / P比从10增加到30显着增加了siRNA的细胞内摄取效率从41%到84%。共聚焦激光扫描显微图像证实,纳米凝胶能够有效地将siRNA输送到HeLa细胞的细胞质中。传递的siRNA可以抑制人类精氨酸琥珀酸酯合成酶1(ASS1)基因表达的70%。该基因沉默百分比远高于商业的Lipofectamine〜(TM)2000。我们的研究表明,明胶-PEI核-壳纳米凝胶具有有望用作有效siRNA载体的潜力。

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