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Comparing Gene Silencing and Physiochemical Properties in siRNA Bound Cationic Star-Polymer Complexes

机译:siRNA结合的阳离子星型聚合物复合物中基因沉默和理化性质的比较

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The translation of siRNA into clinical therapies has been significantly delayed by issues surrounding the delivery of naked siRNA to target cells. Here we investigate siRNA delivery by cationic acrylic polymers developed by Reversible Addition Fragmentation chain Transfer (RAFT) mediated free radical polymerization. We investigated cell uptake and gene silencing of a series of siRNA-star polymer complexes both in the presence and absence of a protein "corona". Using a multidisciplinary approach including quantitative nanoscale mechanical-atomic force microscopy, dynamic light scattering and nanoparticle tracking analysis we have characterized the nanoscale morphology, stiffness, and surface charge of the complexes with and without the protein corona. This is one of the first examples of a comprehensive physiochemical analysis of siRNA-polymer complexes being performed alongside in vitro biological assays, allowing us to describe a set of desirable physical features of cationic polymer complexes that promote gene silencing. Multifaceted studies such as this will improve our understanding of structure function relationships in nanotherapeutics, facilitating the rational design of polymer-mediated siRNA delivery systems for novel treatment strategies.
机译:围绕将裸siRNA传递至靶细胞的问题已大大延迟了siRNA到临床疗法的翻译。在这里,我们研究了可逆加成断裂链转移(RAFT)介导的自由基聚合反应开发的阳离子丙烯酸聚合物对siRNA的传递。我们研究了在存在和不存在蛋白质“电晕”的情况下一系列siRNA-star聚合物复合物的细胞摄取和基因沉默。使用包括定量纳米级机械原子力显微镜,动态光散射和纳米粒子跟踪分析在内的多学科方法,我们对具有和不具有蛋白质电晕的复合物的纳米级形态,刚度和表面电荷进行了表征。这是与体外生物学测定同时进行的siRNA-聚合物复合物全面理化分析的第一个例子,使我们能够描述一组促进基因沉默的阳离子聚合物复合物的理想物理特征。诸如此类的多方面研究将增进我们对纳米疗法中结构功能关系的理解,有助于为新型治疗策略合理设计聚合物介导的siRNA递送系统。

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