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Evaluation of chemical modification effects on DNA plasmid transfection efficiency of single-walled carbon nanotube–succinate– polyethylenimine conjugates as non-viral gene carriers

机译:评价化学修饰对单壁碳纳米管-琥珀酸盐-聚乙烯亚胺偶联物作为非病毒基因载体的DNA质粒转染效率的影响

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摘要

Polyethylenimine (PEI) is a widely used non-viral vector for DNA delivery. One major obstacle of higher molecular weight PEIs is the increased cytotoxicity despite the improved transfection efficiency and numerous chemical modifications that have been reported to overcome this problem. Carbon nanotubes (CNT) are carbon nanomaterials capable of penetrating into cell membranes with no cytotoxic effects. Covalent and noncovalent functionalization methods have been used to improve their solubility in aqueous media. The idea of conjugating PEIs and CNT through different chemical bonds and linkers seems promising as it may result in highly effective carriers due to combination of the transfection ability of PEI with cell internalization of CNT. In this study, six different water-soluble PEI conjugates of single-walled carbon nanotubes (SWNTs) were prepared by grafting PEI with one of three molecular weights (1.8, 10 and 25 kDa) through succinate as a linker which refers to “an organic moiety through which a SWNT is conjugated to PEI.” The succinate linker was introduced to the surface of SWNTs through two different chemical strategies: a) ester and b) acyl linkages. The resulting SWNT–PEI vectors were characterized by IR spectroscopy, thermogravimetric analysis (TGA) and SEM imaging. All synthesized carriers were evaluated and compared for their cytotoxicity and transfection efficiency in murine neuroblastoma cells as polyplexes with plasmid DNA for luciferase and green fluorescent protein (GFP). The most efficient carriers were prepared by attaching PEI with the lowest molecular weight (1.8 kDa) through acyl linkage, which gave a transfection efficiency 190-fold greater than that of the corresponding free PEI. Transfection efficiency was the highest in polyplexes prepared with acyl-linked conjugates in all the plasmid/vector ratios studied.
机译:聚乙烯亚胺(PEI)是用于DNA传递的一种广泛使用的非病毒载体。较高分子量PEI的一个主要障碍是尽管已经提高了转染效率和许多化学修饰方法克服了这一问题,但细胞毒性却增加了。碳纳米管(CNT)是能够穿透细胞膜而无细胞毒性作用的碳纳米材料。共价和非共价官能化方法已用于改善其在水性介质中的溶解度。通过不同的化学键和连接子缀合PEI和CNT的想法似乎很有希望,因为由于PEI的转染能力与CNT细胞内在化的结合,它可能产生高效的载体。在这项研究中,通过将琥珀酸作为连接剂接枝具有三种分子量(1.8、10和25 kDa)之一的PEI,制备了六种不同的单壁碳纳米管(SWNT)水溶性PEI共轭物。 SWNT通过其与PEI结合的部分。”通过两种不同的化学策略将琥珀酸酯连接基引入SWNT的表面:a)酯和b)酰基键。所得的SWNT-PEI载体通过红外光谱,热重分析(TGA)和SEM成像进行了表征。对所有合成的载体进行了评估,并比较了它们在鼠神经母细胞瘤细胞中与荧光素酶和绿色荧光蛋白(GFP)质粒DNA的复合体在细胞毒性和转染效率方面的作用。通过酰基键连接分子量最低(1.8 kDa)的PEI,可以制备效率最高的载体,其转染效率是相应游离PEI的190倍。在所有研究的质粒/载体比率中,用酰基连接的缀合物制备的复合物的转染效率最高。

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