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Polycationic triazine-based dendrimers: effect of peripheral groups on transfection efficiency

机译:聚阳离子三嗪基树枝状聚合物:外围基团对转染效率的影响

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摘要

A panel of eight, second generation triazine dendrimers differing in the number of amines, guanidines, hydroxyls and aliphatic groups on the periphery was synthesized and assayed for gene transfer in an attempt to correlate the effects of surface functionality on transfection efficiency. The physicochemical and biological properties of the dendrimers and dendriplexes, such as condensation of DNA, size, surface charge and morphology of dendriplexes, toxicity and ultimately transfection efficiency in Me Wo cells, were analyzed. The results from an ethidium bromide exclusion assay showed that the complexation efficiency of the dendrimers with DNA is moderately affected by surface groups. Increasing the number of surface amines, reducing the number of surface hydroxyl groups, or replacing the amine moiety with guanidines all help strengthen the complex formed. Results from dynamic light scattering and zeta potential analyses indicate that the smallest particles correlate with complexes that exhibit the highest zeta potentials. Cytotoxicity was low for all compounds, particularly for the G2-5 dendrimer containing alkyl groups on the periphery, indicating the benefit of incorporating such neutral functionality onto the surface of the triazine dendrimers. Within this panel, the highest transfection efficiency was observed for the dendrimers that formed the smallest complexes, suggesting that this physicochemical property is an accurate predictor for determining which dendrimers will show high transfection efficiency.
机译:合成了一组八种第二代三嗪树枝状大分子,它们在外围的胺,胍,羟基和脂肪族基团的数量不同,并进行了基因转移分析,以试图关联表面功能对转染效率的影响。分析了树枝状聚合物和树枝状复合物的理化和生物学特性,例如DNA的缩合,大小,表面电荷和树枝状复合物的形态,毒性以及最终在Me Wo细胞中的转染效率。溴化乙锭排除试验的结果表明,树枝状聚合物与DNA的络合效率受表面基团的影响中等。增加表面胺的数量,减少表面羟基的数量或用胍取代胺部分均有助于增强形成的络合物。动态光散射和zeta电位分析的结果表明,最小的颗粒与显示最高zeta电位的配合物相关。对于所有化合物,特别是对于在外围含有烷基的G2-5树枝状聚合物,细胞毒性均较低,表明将这种中性官能团引入三嗪树枝状聚合物表面的益处。在此面板中,观察到形成最小复合物的树状聚合物的最高转染效率,表明该理化性质是确定哪种树状聚合物显示高转染效率的准确预测指标。

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