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Synthesis and characterization of a novel cationic polymer gene delivery vector

机译:新型阳离子聚合物基因传递载体的合成与表征

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摘要

Non-viral vectors have been widely used in gene transfection. However, its drawbacks limit its applications. In this study, a novel cationic polymer was developed as a DNA condensing agent for systemic gene delivery. Its transfection efficiency, cytotoxicity, and biocompatibility were also evaluated. Sofast, novel cationic polymer of branched polyethlenimine, was constructed by chemical methods. Its diameter, potential, nucleic acid binding ability, and anti-nuclease ability were detected by electron microscopy and gel electrophoresis. In vitro, the efficiency of transfection was measured by comparing it with other gene vectors in different cell lines. MTT assay was performed to determine cytotoxicity. The compatibility of Sofast gene vector in the serum and its stability were investigated. Mouse, guinea pig and rabbit were used to process the toxic, allergenic, and pyrogenic properties of the vector in vivo. The in vivo expression was performed in the guinea pig. The results from an in vitro assay proved that the Sofast gene vector had a higher transfection efficiency than other gene vectors in a variety of primary cell cultures and transformed cell lines. The cytotoxicity assay showed a lower cytotoxicity and the cellular survival rate was >90%. The Sofast gene vector possessed compatibility with the serum and was fit to be transported at normal temperature. The results from in vivo tests indicated that the Sofast gene vector had greatly lower cytotoxicity, better biocompatibility, and higher transfection efficiency compared with other gene vectors. Because the Sofast gene vector had higher transfection efficiency, lower cytotoxicity and better compatibility than other gene vectors, it could be used for gene transfection both in vitro and in vivo.
机译:非病毒载体已广泛用于基因转染。但是,其缺点限制了其应用。在这项研究中,开发了一种新型阳离子聚合物作为全身性基因传递的DNA浓缩剂。还评估了其转染效率,细胞毒性和生物相容性。 Sofast,新型支链聚乙烯亚胺阳离子聚合物,是通过化学方法构建的。通过电子显微镜和凝胶电泳检测其直径,电位,核酸结合能力和抗核酸酶能力。在体外,通过将其与不同细胞系中的其他基因载体进行比较来测量转染效率。进行MTT测定以确定细胞毒性。研究了Sofast基因载体在血清中的相容性及其稳定性。小鼠,豚鼠和兔子用于体内处理载体的毒性,变应原性和热原性。在豚鼠中进行体内表达。体外测定的结果证明,在多种原代细胞培养和转化的细胞系中,Sofast基因载体的转染效率高于其他基因载体。细胞毒性试验显示较低的细胞毒性,细胞存活率> 90%。 Sofast基因载体与血清具有相容性,适合在常温下运输。体内试验的结果表明,与其他基因载体相比,Sofast基因载体具有更低的细胞毒性,更好的生物相容性和更高的转染效率。由于Sofast基因载体比其他基因载体具有更高的转染效率,更低的细胞毒性和更好的相容性,因此可用于体内外基因转染。

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