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Characterizing DNA Condensation by Structurally Different Chitosans of Variable Gene Transfer Efficacy

机译:通过结构不同的壳聚糖可变基因转移功效表征DNA缩合

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摘要

Chitosan can be used as a nonviral gene delivery vector for which DNA condensation and transfection efficacy strongly depend on structural parameters. In this study, we characterized the condensation of DNA by three molecularly tailored chitosans, including linear, trisaccharide substituted-, and self-branched trisaccharide substituted chitosan oligomers. No significant differences could be detected in the hydrodynamic diameters formed by the various chitosans as analyzed by dynamic light scattering. However, atomic force microscopy revealed that self-branched chitosan formed complexes with a higher ratio of globules to rods, and the heights of both globules and rods were larger than for complexes formed by the other chitosans. Using an ammo/phosphate ratio of 10, fluorescence correlation spectroscopy measurements showed that self-branched chitosan exhibited a lower fraction (30%) of bound chitosan than the other chitosans. YOYO-1 was a superior fluorescent DNA-label compared to Cy5 and PicoGreen, since labeling with YOYO-1 had least effect on the size and structure of the complexes.
机译:壳聚糖可以用作非病毒基因递送载体,DNA缩合和转染功效强烈依赖于结构参数。在这项研究中,我们表征了三种分子定制的壳聚糖(包括线性,三糖取代的和自支化的三糖取代的壳聚糖低聚物)对DNA的缩合。通过动态光散射分析,在各种壳聚糖形成的流体动力学直径上没有发现显着差异。然而,原子力显微镜显示自支链壳聚糖形成的复合物的小球与棒的比例更高,小球和棒的高度均大于其他壳聚糖形成的复合物。使用10的氨/磷酸盐比率,荧光相关光谱测量表明,自支化壳聚糖的结合壳聚糖的比例(30%)低于其他壳聚糖。与Cy5和PicoGreen相比,YOYO-1是一种优异的荧光DNA标记,因为用YOYO-1进行标记对复合物的大小和结构影响最小。

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