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Complete Physicochemical Characterization of DNA/Chitosan Complexes by Multiple Detection Using Asymmetrical Flow Field-Flow Fractionation

机译:通过使用不对称流场流分馏的多次检测对DNA /壳聚糖复合物进行完整的理化表征

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Asymmetrical flow field-flow fractionation (AF4) coupled with UV-vis spectrophotometry, multiangle light scattering (MALS), and dynamic light scattering (DLS) detection was used to analyze dispersions of DNA/rhodamine B labeled chitosan (Ch-rho) complexes frequently used as gene delivery vectors. The method yielded, in a single experiment, important characteristics of the complexes, such as their hydrodynamic radius, size distribution, conformation, composition, and the amount of free Ch-rho in the dispersions. Samples for analysis were obtained by varying experimental parameters known to influence the transfection efficiency of DNA/chitosan complexes, including the DNA concentration at mixing (82-164 (mu)g/mL), the ratio of chitosan amino groups to DNA phosphate groups (3 <= N/P ratio <= 15), the chitosan molecular weight (10-76 kDa), and its degree of deacetylation. In all preparations, DNA/Ch-rho complexes had hydrodynamic radii ranging from 15 to 160 nm. Both the DNA concentration and the Ch-rho molecular weight influence the size distribution of the complexes: a greater fraction of large particles was detected in dispersions prepared with the most concentrated DNA solution or the Ch-rho of highest molar mass. All dispersions contained free Ch-rho in solution. The free Ch-rho content ranged from 53 to 92percent of the total Ch-rho concentration in dispersions prepared with N/P ratios from 3 to 15, respectively, implying that the N/P ratio of the complexes ranged from 1.3 to 1.6 in all samples. The accuracy of the free Ch-rho determination by AF4/UV-vis/MALS+DLS was confirmed by an independent method involving (1) ultracentrifugation of the dispersions prepared with unlabeled chitosan and (2) analysis of the supernatant by the Orange II dye depletion method. This study demonstrates the ability of AF4/UV-vis/MALS+DLS to provide a complete physicochemical characterization of DNA/polycation complexes used in nonviral gene delivery.
机译:非对称流场流分级分离(AF4)结合紫外可见分光光度法,多角度光散射(MALS)和动态光散射(DLS)检测用于频繁分析DNA /若丹明B标记的壳聚糖(Ch-rho)复合物的分散体用作基因传递载体。该方法在单个实验中获得了配合物的重要特征,例如其流体动力学半径,尺寸分布,构象,组成和分散液中游离Ch-rho的量。通过改变已知会影响DNA /壳聚糖复合物转染效率的实验参数获得分析样品,包括混合时的DNA浓度(82-164μg/ mL),壳聚糖氨基与DNA磷酸基团的比率( 3 <= N / P比<= 15),壳聚糖分子量(10-76 kDa)及其脱乙酰度。在所有制剂中,DNA / Ch-rho复合物的流体力学半径范围为15至160 nm。 DNA浓度和Ch-rho分子量均会影响复合物的尺寸分布:在使用最浓缩的DNA溶液或最高摩尔质量的Ch-rho制备的分散液中检测到较大比例的大颗粒。所有分散液在溶液中都含有游离的Ch-rho。以3/15的N / P比制备的分散液中游离Ch-rho含量占总Ch-rho浓度的53%至92%,这意味着络合物的N / P比在所有范围中均在1.3-1.6之间样品。通过AF4 / UV-vis / MALS + DLS测定游离Ch-rho的准确性是通过一种独立的方法来确认的,该方法包括(1)将未标记的壳聚糖制备的分散液超速离心,以及(2)Orange II染料对上清液的分析耗尽方法。这项研究证明了AF4 / UV-vis / MALS + DLS能够提供用于非病毒基因递送的DNA /聚阳离子复合物的完整理化特性。

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