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Dendritic Star Polymers for Efficient DNA Binding and Stimulus-Dependent DNA Release

机译:树突状明星聚合物有效的DNA结合和刺激依赖的DNA释放。

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Water-soluble core—shell star polymers consisting of a dendritic polyphenylene core and an outer shell containing a defined number of amino groups have been synthesized via atom transfer radical polymerization (ATRP). All macromolecules efficiently interacted with a diverse set of DNA fragments, and stable complexes were formed and visualized by atomic force microscopy. The observed tight binding of DNA, which was found in the sub-nanomolar range, was mainly attributed to strong electrostatic interactions. Complex stoichiometrics between the polyelectrolytes were controlled via the number of amino groups of the star polymers, and well-defined nanoscopic architectures were formed. DNA was released from the complexes after treatment with high concentrations of sodium chloride in aqueous solution. Such star polymers, which allow the binding and release of DNA, represent attractive candidates for the development of novel anion-exchange resins for DNA purification or as nonviral vector systems for gene delivery.
机译:已经通过原子转移自由基聚合(ATRP)合成了由树枝状聚亚苯基核和含有一定数量氨基基团的外壳组成的水溶性核-壳星形聚合物。所有大分子均能有效地与各种DNA片段相互作用,并形成稳定的复合物并通过原子力显微镜观察。在纳摩尔范围内发现的DNA紧密结合主要归因于强烈的静电相互作用。通过星形聚合物的氨基数量控制聚电解质之间的复杂化学计量,并形成定义明确的纳米结构。用高浓度氯化钠水溶液处理后,DNA从复合物中释放出来。这种允许DNA结合和释放的星形聚合物代表了用于开发用于DNA纯化的新型阴离子交换树脂或作为用于基因递送的非病毒载体系统的有吸引力的候选物。

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