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首页> 外文期刊>ACS Omega >Optimizing Mannose “Click” Conjugation to Polymeric Nanoparticles for Targeted siRNA Delivery to Human and Murine Macrophages
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Optimizing Mannose “Click” Conjugation to Polymeric Nanoparticles for Targeted siRNA Delivery to Human and Murine Macrophages

机译:优化甘露糖“点击”缀合到聚合物纳米粒子,用于靶向siRNA递送给人和鼠巨噬细胞

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摘要

“Smart”, dual pH-responsive, and endosomolytic polymeric nanoparticles have demonstrated great potential for localized drug delivery, especially for siRNA delivery to the cytoplasm of cells. However, targeted delivery to a specific cell phenotype requires an additional level of functionality. Copper-catalyzed azide–alkyne cycloaddition (CuAAC) is a highly selective bioconjugation reaction that can be performed in conjunction with other polymerization techniques without adversely affecting reaction kinetics, but there exists some concern for residual copper causing cytotoxicity. To alleviate these concerns, we evaluated conjugation efficiency, residual copper content, and cell viability in relation to copper catalyst concentration. Our results demonstrated an optimal range for minimizing cytotoxicity while maintaining high levels of conjugation efficiency, and these conditions produced polymers with increased targeting to M2-polarized macrophages, as well as successful delivery of therapeutic siRNA that reprogrammed the macrophages to a proinflammatory phenotype.
机译:“智能”,双pH响应和胚乳聚合物纳米颗粒已经表现出局部药物递送的巨大潜力,特别是对于递送给细胞的细胞质的siRNA。然而,针对特定细胞表型的靶向递送需要额外的功能水平。铜催化的叠氮化物 - 炔环加油(CUAAC)是一种高度选择性的生物缀合物反应,可以与其他聚合技术结合进行,而不会产生反应动力学的不利影响,但存在一些担心导致细胞毒性的残余铜。为了缓解这些问题,我们评估了与铜催化剂浓度有关的共轭效率,残留铜含量和细胞活力。我们的结果证明了最佳的范围,以使细胞毒性最小化,同时保持高水平的共轭效率,并且这些条件产生了与M2-偏振巨噬细胞的靶向增加的聚合物,以及将巨噬细胞重编程的治疗siRNA的成功递送到促释性表型。

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