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Interaction of nanostructured polyelectrolyte complexes with cells

机译:纳米结构聚电解质复合物与细胞的相互作用

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Gene therapy is a technique in which nucleic acids are introduced into cells with the purpose to alter the course of a medical condition or disease. Due to its negative charge and its large hydrodynamic volume, free DNA is not taken up in cells very efficiently. To overcome this problem, the DNA can be combined with a vector. One of the topics our research groups is focussing on is the synthesis and evaluation of cationic polymers that can be used as a gene delivery system. Starting from a series of cationic amine containing polymers, we observed large differences in transfection efficiency. To further study these findings, we carried out interaction studies of polymer-DNA complexes and GAG. Complexes showing a lower stability towards GAG, also possess a low transfection efficiency. These findings were also confirmed by cell uptake studies, showing that complexes showing high levels of transfection are taken up in cells efficiently.
机译:基因疗法是一种将核酸引入细胞中以改变医学状况或疾病进程的技术。由于其负电荷和较大的流体动力学体积,游离DNA无法非常有效地吸收到细胞中。为了克服这个问题,可以将DNA与载体结合。我们研究小组关注的主题之一是可用作基因传递系统的阳离子聚合物的合成和评估。从一系列包含阳离子胺的聚合物开始,我们观察到了转染效率的巨大差异。为了进一步研究这些发现,我们进行了聚合物-DNA复合物与GAG的相互作用研究。对GAG表现出较低稳定性的复合物,其转染效率也较低。细胞摄取研究也证实了这些发现,表明显示高转染水平的复合物可有效地被细胞摄取。

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