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A self-assembling polycationic nanocarrier that exhibits exceptional gene transfection efficiency

机译:自组装的聚阳离子纳米载体,具有出色的基因转染效率

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摘要

The lack of an efficient and safe carrier is a major impediment in the field of gene therapy. Although gelatin (GT), a naturally derived polymer, is widely used in drug delivery applications, it is unable to bind DNA efficiently. In this study, a novel polycationic gene carrier was prepared by conjugation of low molecular weight polyethyleneimine (LPEI) with GT through 4-bromonaphthaleic anhydride as a coupling agent to avoid self crosslinking. Self-assembly of LPEI conjugated GT (GT-LPEI) with plasmid DNA (pDNA) yielded nanoparticles with high gene complexation ability to form similar to 250 nm cylindrical nanoparticles with a zeta potential of similar to 27 mV. GT-LPEI showed exceptionally high transfection efficiency (> 90%) in various mammalian cells including primary stem cells with minimal cytotoxicity. The transfection efficiency of GT-LPEI significantly surpassed that of many commercial reagents. The high gene transfection expression was confirmed in vivo. Thus, GT-LPEI is shown to be a promising nonviral carrier for potential use in gene therapy.
机译:缺乏有效和安全的载体是基因治疗领域的主要障碍。尽管明胶(GT)是一种天然来源的聚合物,已广泛用于药物递送应用,但它无法有效结合DNA。在这项研究中,通过将低分子量聚乙烯亚胺(LPEI)与GT通过4-溴邻苯二甲酸酐作为偶联剂偶联以避免自交联,制备了一种新型的聚阳离子基因载体。 LPEI共轭GT(GT-LPEI)与质粒DNA(pDNA)的自组装产生了具有高基因复合能力的纳米颗粒,可形成类似于250 nm圆柱形纳米颗粒,其Zeta电位类似于27 mV。 GT-LPEI在各种哺乳动物细胞(包括原代干细胞)中显示出极高的转染效率(> 90%),且细胞毒性最小。 GT-LPEI的转染效率大大超过了许多商业试剂。在体内证实了高基因转染表达。因此,GT-LPEI被证明是潜在的非病毒载体,可用于基因治疗。

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