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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Delivery of messenger RNA using poly(ethylene imine)-poly(ethylene glycol)-copolymer blends for polyplex formation: Biophysical characterization and in vitro transfection properties
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Delivery of messenger RNA using poly(ethylene imine)-poly(ethylene glycol)-copolymer blends for polyplex formation: Biophysical characterization and in vitro transfection properties

机译:使用聚(乙烯亚胺)-聚(乙二醇)-共聚物共混物进行多链体形成来递送信使RNA:生物物理特性和体外转染特性

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摘要

Nucleic acid based therapies have so far mainly been focused on plasmid DNA (pDNA), small interfering RNA (siRNA), antisense and immunostimulatory oligonucleotides. Messenger RNA (mRNA) was the subject of only a few studies. The objective of this investigation was the preparation of new composite polyplexes with mRNA consisting of poly(ethylene imine) (PEI) and poly(ethylene imine)-poly(ethylene glycol)-copolymers (PEI-PEG) as blends. These complexes were designed to increase the stability of mRNA, to improve transfection efficiency and to reduce cytotoxicity. Hydrodynamic diameters of the polyplexes were measured by dynamic light scattering, polyplex stability was analyzed by gel retardation assay and transfection efficiency of luciferase (Luc) encoding mRNA was evaluated under in vitro conditions. Most of the polyplexes generated showed small particle sizes < 200 nm and positive zeta-potentials of + 20 mV to + 30 mV. Stable complexes were formed even at low nitrogen to phosphate ratios. Polyplexes with mRNA Luc and blends of low molecular weight PEI(5 kDa) and PEI(25 kDa)-PEG(20 kDa)_1-block-copolymer showed protein expression as high as polyplexes with PEI(25 kDa). Moreover, luciferase expression was significantly higher than that obtained with one of the components alone. These results suggest that delivery systems for pulmonary application of mRNA merit further investigation under in vitro and in vivo conditions.
机译:迄今为止,基于核酸的疗法主要集中在质粒DNA(pDNA),小干扰RNA(siRNA),反义和免疫刺激性寡核苷酸上。 Messenger RNA(mRNA)仅是少数研究的主题。这项研究的目的是制备新型复合高分子复合物,其mRNA由共聚的聚乙烯亚胺(PEI)和聚乙烯亚胺-聚乙二醇(PEI-PEG)组成。设计这些复合物以增加mRNA的稳定性,提高转染效率并降低细胞毒性。通过动态光散射测量多链体的流体动力学直径,通过凝胶阻滞分析法分析多链体的稳定性,并在体外条件下评估编码mRNA的荧光素酶(Luc)的转染效率。生成的大多数多链体显示小于200 nm的小粒径和+ 20 mV至+ 30 mV的正ζ电势。即使氮磷比低也能形成稳定的络合物。具有mRNA Luc的多链体以及低分子量PEI(5 kDa)和PEI(25 kDa)-PEG(20 kDa)_1-嵌段共聚物的共混物显示的蛋白质表达与带有PEI(25 kDa)的多链体一样高。此外,荧光素酶表达明显高于单独使用一种成分获得的荧光素酶表达。这些结果表明,在体外和体内条件下,用于肺部应用mRNA的递送系统值得进一步研究。

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