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首页> 外文期刊>Macromolecules >Temperature-controlled behavior of self-assembly gene delivery vectors based on complexes of DNA with poly(L-lysine)-graft-poly(N-isopropylacrylamide)
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Temperature-controlled behavior of self-assembly gene delivery vectors based on complexes of DNA with poly(L-lysine)-graft-poly(N-isopropylacrylamide)

机译:基于DNA与聚(L-赖氨酸)-接枝-聚(N-异丙基丙烯酰胺)的复合物的自组装基因传递载体的温度控制行为

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摘要

Synthetic gene delivery vectors based on polyelectrolyte complexes of nucleic acids and polycations are widely studied as safe substitutes of viral vectors. Here, we synthesized a series of thermoresponsive graft copolymers (TRC) of poly(L-lysine) (PLL) and poly(N-isopropylacrylamide) (PNIPAM) and evaluated temperature-responsive properties of their polyelectrolyte complexes with plasmid DNA using a range of light scattering techniques. The PNIPAM-containing complexes, swollen bellow the phase transition temperature of PNIPAM grafts, exhibited a significant increase in structural density when the temperature increased above the phase transition. The changes in the structural density of the DNA complexes increased with increasing PNIPAM content and were almost independent of PNIPAM molecular weight. The expected corresponding reduction of sizes of the complexes upon increasing the temperature above the PNIPAM phase transition was observed for complexes of TRC with the highest PNIPAM content and for complexes formed at lower molar mixing ratios. In addition, the surface charge of the complexes was also modulated by temperature. The absolute values of the surface charge (xi potential) increased as the PNIPAM grafts collapsed above their phase transition temperature. The presence of PNIPAM in the complexes resulted in a higher susceptibility toward polyelectrolyte exchange reactions with heparin when compared with parent PLL. In addition, the ability of heparin to liberate DNA from the complexes declined with increasing the time between the formation of the complexes and the addition of heparin. A time-dependent conversion of the supercoiled form of plasmid DNA into the relaxed form when present in the polyelectrolyte complexes was also observed. [References: 41]
机译:作为核酸载体的安全替代品,广泛研究了基于核酸和聚阳离子的聚电解质复合物的合成基因传递载体。在这里,我们合成了一系列聚(L-赖氨酸)(PLL)和聚(N-异丙基丙烯酰胺)(PNIPAM)的热响应接枝共聚物(TRC),并使用以下范围评估了它们与质粒DNA的聚电解质复合物的温度响应特性。光散射技术。当温度升高到相变以上时,PNIPAM接枝的相变温度以下的含PNIPAM配合物膨胀,结构密度显着增加。 DNA复合物的结构密度变化随PNIPAM含量的增加而增加,并且几乎与PNIPAM分子量无关。对于PNPNAM含量最高的TRC配合物和较低摩尔混合比形成的配合物,观察到将温度提高到PNIPAM相变以上时,配合物尺寸预期会相应减小。另外,配合物的表面电荷也受温度调节。当PNIPAM接枝塌陷到其相变温度以上时,表面电荷(xi电位)的绝对值增加。与母体PLL相比,复合物中PNIPAM的存在对肝素与聚电解质交换反应的敏感性更高。另外,随着复合物形成与加入肝素之间时间的增加,肝素从复合物中释放DNA的能力下降。当存在于聚电解质复合物中时,也观察到质粒DNA的超螺旋形式向松弛形式的时间依赖性转化。 [参考:41]

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