Department of Chemical Engineering, Groupe de Recherche en Sciences et Technologies Biomédicales, École Polytechnique de Montréal , P.O. Box 6079, succ. Centre-Ville, Montréal Quebec, Canada H3C 3A7.
Biomacromolecules. 2014 Mar 10;15(3):940-7. doi: 10.1021/bm4018148. Epub 2014 Feb 26.
Analytical ultracentrifugation (AUC) and dynamic light scattering (DLS) were combined to characterize polyplexes formed with 10 kDa chitosan or 10 kDa PEI and oligodeoxynucleotides (ODN). Combined analysis revealed that both polyplexes were highly porous (over 80%) and that their weight average hydrodynamic diameters were of 46 and 55 nm for chitosan/ODN and PEI/ODN complexes, respectively. Transformation of the sedimentation coefficient distribution to a size and molecular weight distribution gave an average molecular weight of 19 and 29 MDa for chitosan and PEI polyplexes, respectively. Data from AUC also allowed for the calculation of the actual dn/dc and N/P ratios of each polyplex. Additional data from scanning electron microscopy and static light scattering confirmed the conclusions that were initially derived from AUC and DLS, thus validating that the combination of AUC and DLS is a powerful approach to characterize polyplexes in terms of refractive index increment, size, and molecular weight distributions, as well as porosity.
分析超速离心(AUC)和动态光散射(DLS)相结合,用于表征由 10 kDa 壳聚糖或 10 kDa PEI 和寡脱氧核苷酸(ODN)形成的聚合物。联合分析表明,两种聚合物都是高度多孔的(超过 80%),其重均流体力学直径分别为 46nm 和 55nm,对于壳聚糖/ODN 和 PEI/ODN 复合物。将沉降系数分布转化为大小和分子量分布,给出壳聚糖和 PEI 聚合物的平均分子量分别为 19 和 29MDa。AUC 数据还允许计算每个聚合物的实际 dn/dc 和 N/P 比值。来自扫描电子显微镜和静态光散射的附加数据证实了最初从 AUC 和 DLS 得出的结论,从而验证了 AUC 和 DLS 的结合是一种强大的方法,可以根据折射率增量、大小和分子量分布以及多孔性来表征聚合物。