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β-cyclodextrin-based polycationic amphiphilic >click> clusters: Effect of structural modifications in their DNA complexing and delivery properties

机译:基于β-环糊精的聚阳离子两亲性>点击>簇:结构修饰对其DNA络合和传递特性的影响

摘要

Monodisperse facial amphiphiles consisting of a β-cyclodextrin (βCD) platform exposing a multivalent display of cationic groups at the primary rim and bearing hydrophobic chains at the secondary oxygens have been prepared by implementing two very robust >click> methodologies, namely cuprous cation-catalyzed azide-alkyne cycloaddition (CuAAC) and thiourea-forming reaction. Most interestingly, the use of solid-supported Cu(I) catalysts was found to be very well suited for multiple CuAAC while facilitating purification of the C7-symmetric macromolecular triazole adducts. The strategy is compatible with molecular diversity-oriented approaches, which has been exploited to generate a small library of click polycationic amphiphilic CDs (paCDs) for assessing the influence of structural modifications in the ability to complex, compact, and protect pDNA and the efficiency of the resulting paCD:pDNA nanocomplexes (CDplexes) to deliver DNA into cells and promote transfection. The results indicate that fine-tuning the hydrophilic/hydrophobic balance is critical to achieve optimal self-assembling properties and stability of the resulting CDplexes in saline- and serum-containing media. Triazole-type paCDs were, in general, less efficient in promoting gene transfection than thiourea-type derivatives. Nevertheless, the current body of results support that the >dual click> approach implying sequential CuAAC and thiourea-forming reactions represents a versatile strategy to optimize the gene delivery capabilities of cyclodextrin-based facial amphiphiles. © 2011 American Chemical Society.
机译:通过实施两种非常稳健的>单击>方法,即由亚铜阳离子催化制备了由β-环糊精(βCD)平台组成的单分散面部两亲物,该平台在初级边缘暴露阳离子基团的多价展示,在次级氧气处带有疏水链。叠氮化物-炔烃环加成(CuAAC)与硫脲的形成反应。最有趣的是,发现使用固相负载的Cu(I)催化剂非常适用于多种CuAAC,同时促进了C7对称大分子三唑加合物的纯化。该策略与面向分子多样性的方法兼容,该方法已被利用来生成点击聚阳离子两亲CD(paCD)的小型文库,用于评估结构修饰对pDNA的复合,紧实和保护能力以及DNA效率的影响。产生的paCD:pDNA纳米复合物(CDplex)将DNA传递到细胞中并促进转染。结果表明,微调亲水/疏水平衡对于在含盐和含血清的介质中获得最佳的自组装性能和所得CDplex的稳定性至关重要。一般而言,三唑型paCD与硫脲型衍生物相比,在促进基因转染方面效率较低。尽管如此,目前的结果支持>双击>暗示顺序发生CuAAC和硫脲形成反应的方法代表了一种通用策略,可以优化基于环糊精的面部两亲物的基因传递能力。 ©2011美国化学学会。

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