首页> 外文期刊>Vox Sanguinis: International Journal of Blood Transfusion and Immunohaematology >The construction of a novel kind of non-viral gene delivery vector based on protein as core backbone.
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The construction of a novel kind of non-viral gene delivery vector based on protein as core backbone.

机译:以蛋白质为核心骨架的新型非病毒基因传递载体的构建。

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BACKGROUND AND OBJECTIVES: A novel kind of non-viral gene delivery vector based on transferrin (Tf) as the core component was constructed with high transfection efficiency and low toxicity. MATERIALS AND METHODS: The synthesis vector of Tf-PEI600 was confirmed by different physicochemical methods, including (1)H nuclear magnetic resonance, gel permeation chromatography, X-ray and thermogravimetric analysis. The cytotoxicity and gene delivery efficiency of the synthesized vector were verified by in vitro experiments. RESULTS: The agarose gel electrophoresis assay indicated that the novel copolymer Tf-PEI600 could efficiently condense plasmid DNA and the condensed nanoparticles exhibited a spherical shape. As the weight ratio of Tf-PEI600 to DNA reached 15.0, the particle size (about 200 nm) and the zeta potential (about 20 mV) of the nanoparticles became optimal for gene delivery. The methylthiazolyl tetrazolium (MTT) assay showed the cytotoxicity of Tf-PEI600 to be similar to that of PEI600 and much lower than that of PEI25kDa. In gene-delivery experiments with COS-7 cells and HepG2 cells, the Tf-PEI600 showed about a 30- to 53-fold higher efficiency than PEI600 and nearly equal to that of PEI25kDa. CONCLUSIONS: These data suggest that Tf-PEI600, with the advantages of low toxicity and high gene-delivery efficiency, might have great prospects in the practice of gene delivery. The core-shell structure of Tf-PEI600 also provided a novel strategy for the construction of non-viral gene delivery vectors.
机译:背景与目的:构建以转铁蛋白(Tf)为核心成分的新型非病毒基因传递载体,具有高转染效率和低毒性。材料与方法:用不同的理化方法确定了Tf-PEI600的合成载体,包括(1)H核磁共振,凝胶渗透色谱,X射线和热重分析。通过体外实验验证了合成载体的细胞毒性和基因传递效率。结果:琼脂糖凝胶电泳分析表明该新型共聚物Tf-PEI600可以有效地浓缩质粒DNA,浓缩后的纳米颗粒呈球形。当Tf-PEI600与DNA的重量比达到15.0时,纳米粒子的粒径(约200 nm)和ζ电位(约20 mV)对于基因传递而言变得最佳。甲基噻唑基四唑鎓(MTT)分析显示Tf-PEI600的细胞毒性与PEI600相似,但远低于PEI25kDa。在COS-7细胞和HepG2细胞的基因传递实验中,Tf-PEI600的效率比PEI600高约30至53倍,几乎与PEI25kDa相等。结论:这些数据表明,Tf-PEI600具有低毒性和高基因传递效率的优势,在基因传递的实践中可能具有广阔的前景。 Tf-PEI600的核-壳结构也为构建非病毒基因传递载体提供了一种新的策略。

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