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One-Step Analysis of DNA/Chitosan Complexes by Field-Flow Fractionation Reveals Particle Size and Free Chitosan Content

机译:通过场流分馏对DNA /壳聚糖复合物进行一步分析可揭示粒径和游离壳聚糖含量

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摘要

The composition of samples obtained upon complexation of DNA with chitosan was analyzed by asymmetrical flow field flow fractionation (AF4) with online UV—visible, multiangle light scattering (MALS), and dynamic light scattering (DLS) detectors. A chitosan labeled with rhodamine B to facilitate UV—vis detection of the polycation was complexed with DNA under conditions commonly used for transfection (chitosan glucosamine to DNA phosphate molar ratio of 5). AF4 analysis revealed that 73% of the chitosan-rhodamine remained free in the dispersion and that the DNA/chitosan complexes had a broad size distribution ranging from 20 to 160 nm in hydrodynamic radius. The accuracy of the data was assessed by comparison with data from batch-mode DLS and scanning electron microscopy. The AF4 combined with DLS allowed the characterization of small particles that were not detected by conventional batch-mode DLS. The AF4 analysis will prove to be an important tool in the field of gene therapy because it readily provides, in a single measurement, three important physicochemical parameters of the complexes: the amount of unbound polycation, the hydrodynamic size of the complexes, and their size distribution.
机译:将DNA与壳聚糖复合后获得的样品成分通过在线UV-可见光,多角度光散射(MALS)和动态光散射(DLS)检测器进行的不对称流场流动分离(AF4)进行分析。在常用于转染的条件下(壳聚糖葡糖胺与DNA磷酸盐的摩尔比为5),将用罗丹明B标记以促进UV-vis聚阳离子检测的壳聚糖与DNA复合。 AF4分析表明,分散液中有73%的壳聚糖-罗丹明保持游离状态,并且DNA /壳聚糖复合物的流体动力学半径范围从20到160 nm不等。通过与批处理DLS和扫描电子显微镜的数据比较来评估数据的准确性。 AF4与DLS结合使用可以表征常规批处理模式DLS无法检测到的小颗粒。 AF4分析将被证明是基因治疗领域的重要工具,因为它可以通过一次测量轻松地提供复合物的三个重要物理化学参数:未结合的聚阳离子的量,复合物的流体动力学尺寸及其尺寸分配。

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