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Stabilized Nanocarriers for Plasmids Based Upon Cross-linked Poly(ethylene imine)

机译:用于基于交联聚乙烯亚胺的质粒的稳定纳米载体

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Stabilized PEI/DNA polyplexes were generated by cross-linking PEI with biodegradable disulfide bonds.The reaction conversion of different PEIs with the amine reactive cross-linker dithiobis(succinimidyl propionate) (DSP) was investigated,and the molecular weight of the reaction products was identified.Light scattering and microelectrophoresis were employed to assess size and zeta potential of the resulting polyplexes.Polyplex morphology and mechanic stability were investigated using atomic force microscopy.Finally,albumin and erythrocyte interactions and stability against polyanions and high ionic strength were checked.Polyplexes of PEI and DNA were prepared by two different formulation methods,either using pre-cross-linked polymers or by cross-linking polyplexes after complexation.Only the latter method yielded small (100-300 nm) polyplexes with a positive zeta potential when HMW PEI was used,whereas cross-linked LMW PEI resulted in polyplexes with increased size (> 1000 nm) and zeta potentials down to -20 mV.In addition,only cross-linking after polyplex formation was able to enhance resistance against polyanion exchange and high ionic strength.AFM images revealed no changes in the morphology of cross-linked HWM PEI polyplexes,and indentation force measurements using AFM significantly increased mechanical stability of cross-linked HMW PEI polyplexes.These polyplexes also displayed significantly reduced interactions with major blood components like albumin and erythrocytes.The resulting biocompatible particles offer a means of combining enhanced polyplex stability with redox-triggered activation for in vivo application.
机译:通过将PEI与可生物降解的二硫键交联来生成稳定的PEI / DNA多链体。研究了不同PEI与胺反应性交联剂二硫代双(琥珀酸丙二酸丁二酯)(DSP)的反应转化率,得到的分子量为用光散射和微电泳法评估所得多聚体的大小和ζ电势,用原子力显微镜研究多聚体的形态和机械稳定性,最后检查白蛋白和红细胞相互作用以及对聚阴离子的稳定性和高离子强度。 PEI和DNA可以通过两种不同的配制方法制备,既可以使用预交联的聚合物,也可以通过复合后通过交联的多聚体进行制备。只有当HMW PEI为使用了交联的LMW PEI,导致多链体的尺寸(> 1000 nm)和zeta增大电位低至-20 mV。此外,只有在形成多链体后进行交联才能增强对聚阴离子交换的抵抗力和高离子强度.AFM图像显示交联的HWM PEI多链体的形态没有变化,并且压痕力测量使用AFM可以显着提高交联的HMW PEI多聚体的机械稳定性,这些多聚体还显示出与主要血液成分(如白蛋白和红细胞)的相互作用大大减少,从而获得的生物相容性颗粒提供了将增强的多聚体稳定性与氧化还原触发的活体内结合的手段应用。

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