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首页> 外文期刊>Biomacromolecules >Oxidation as a Facile Strategy To Reduce the Surface Charge and Toxicity of Polyethyleneimine Gene Carriers
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Oxidation as a Facile Strategy To Reduce the Surface Charge and Toxicity of Polyethyleneimine Gene Carriers

机译:氧化作为减少聚乙烯亚胺基因载体表面电荷和毒性的一种简便策略

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Polyethyleneimine (PEI) is widely regarded as one of the most efficient non-viral transfection agents commercially available. However, a key concern is its pronotinced cytotoxicity, ascribed mainly to its high amine content and cationic charge density. Significant past efforts to mitigate its toxicity usually involved lengthy synthetic procedures. We now propose a simple strategy using hydrogen peroxide (H2O2) to oxidize the amine groups. PEI/DNA complexes were first formed before some amine groups were removed with H2O2. This reduced surface charge while the remaining cationic charges still allowed for efficient transfection. The DNA was not damaged and remained bound after oxidation. Furthermore, H2O2 was quantitatively removed with sodium pyruvate prior to cell culture. Oxidized complexes caused no cytotoxicity even at high polymer concentrations. Compared to non-oxidized complexes used at subtoxic doses, oxidized complexes mediated significantly more GFP expression. A key strength of this approach is its simplicity as it involves only simple mixing of solutions. This strategy promises to further realize the potential of using PEI for the delivery of nucleic acids or other cargos.
机译:聚乙烯亚胺(PEI)被广泛认为是最有效的市售非病毒转染剂之一。但是,一个关键的问题是其明显的细胞毒性,这主要归因于其高胺含量和阳离子电荷密度。过去减轻其毒性的重大努力通常涉及冗长的合成程序。现在,我们提出一种使用过氧化氢(H2O2)氧化胺基的简单策略。 PEI / DNA复合物首先形成,然后用H2O2除去一些胺基。这减少了表面电荷,而剩余的阳离子电荷仍然允许有效的转染。 DNA没有被破坏并且在氧化后保持结合。此外,在细胞培养之前,用丙酮酸钠定量除去过氧化氢。氧化的复合物即使在高聚合物浓度下也不会引起细胞毒性。与以亚毒性剂量使用的非氧化复合物相比,氧化复合物介导的GFP表达明显更多。这种方法的主要优势在于它的简单性,因为它只涉及解决方案的简单混合。该策略有望进一步认识到使用PEI运送核酸或其他货物的潜力。

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