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线性 DNA 与聚(苯乙烯磺酸盐)与阳离子共聚物胶束的络合:聚阴离子柔性的影响。

Complexation of Linear DNA and Poly(styrenesulfonate) with Cationic Copolymer Micelles: Effect of Polyanion Flexibility.

机构信息

Department of Chemical Engineering & Materials Science, University of Minnesota , 421 Washington Ave. SE, Minneapolis, Minnesota 55455, United States.

Department of Chemistry, University of Minnesota , 207 Pleasant St. SE, Minneapolis, Minnesota 55455, United States.

出版信息

J Phys Chem B. 2017 Jul 13;121(27):6708-6720. doi: 10.1021/acs.jpcb.7b03732. Epub 2017 Jun 30.

Abstract

The complexation of linear double stranded DNA and poly(styrenesulfonate) (PSS) with cationic poly(dimethylamino ethyl methacrylate)-block-poly(n-butyl methacrylate) micelles was compared in aqueous solutions at various pH values and ionic strengths. The complexation process was monitored by turbidimetric titration, as a function of the ratio (N/P) of amine groups in the micelle corona to the number of phosphates (or sulfonates) in the polyanion. The size, structure and stability of the resulting micelleplexes were studied by dynamic light scattering (DLS) and cryogenic transmission electron microscopy (cryo-TEM). In the short chain regime, where the contour lengths of the polyanions are shorter than or comparable to the micelle corona thickness, micelleplexes with DNA oligomers show very similar behavior to complexes with short PSS chains, in terms of titration curves and structural evolution of the complexes as a function of charge ratio. However, in the long chain regime, where the contour length of the polyanion far exceeds the micelle radius, micelleplexes of linear DNA show titration curves shifted toward lower N/P ratios, reduced stability at N/P < 1, and a higher percentage of small complexes at N/P > 1 compared to complexes with long chain PSS. Furthermore, at 1 M ionic strength, the cationic micelles could still complex with long chain PSS, but not with DNA of the same total charge. These differences are attributed to the flexibility difference between the polyanion chains, and possible mechanisms are proposed. This work highlights the importance of chain flexibility in complexation of dissimilar polyelectrolyte pairs, a factor that could therefore help guide the future design of micelleplexes for various applications.

摘要

在不同 pH 值和离子强度的水溶液中,比较了线性双链 DNA 与聚(苯乙烯磺酸盐)(PSS)和阳离子聚(二甲基氨基乙基甲基丙烯酸酯)-嵌段-聚(正丁基甲基丙烯酸酯)胶束的络合作用。通过浊度滴定法监测络合过程,作为胶束冠上的胺基与多阴离子中磷酸根(或磺酸盐)数之比(N/P)的函数。通过动态光散射(DLS)和低温透射电子显微镜(cryo-TEM)研究了所得胶束复合物的大小、结构和稳定性。在短链区,多阴离子的链长短于或与胶束冠厚度相当,带 DNA 寡聚物的胶束复合物的行为与短 PSS 链的复合物非常相似,无论是在滴定曲线还是在电荷比的复合物结构演变方面。然而,在长链区,多阴离子的链长远远超过胶束半径,线性 DNA 的胶束复合物的滴定曲线向较低的 N/P 比移动,在 N/P < 1 时稳定性降低,在 N/P > 1 时小复合物的比例高于与长链 PSS 的复合物。此外,在 1 M 离子强度下,阳离子胶束仍可与长链 PSS 络合,但不能与具有相同总电荷的 DNA 络合。这些差异归因于多阴离子链的柔韧性差异,并提出了可能的机制。这项工作强调了链柔韧性在不同聚电解质对络合中的重要性,这一因素可以帮助指导未来各种应用的胶束复合物的设计。

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