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Multicomponent Supramolecular Polymers as a Modular Platform for Intracellular Delivery

机译:多组分超分子聚合物作为细胞内传递的模块化平台。

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摘要

Supramolecular polymers are an emerging family of nanosized structures with potential use in materials chemistry and medicine. Surprisingly, application of supramolecular polymers in the field of drug delivery has received only limited attention. Here, we explore the potential of PEGylated 1,3,5-benzenetricarboxamide (BTA) supramolecular polymers for intracellular delivery. Exploiting the unique modular approach of supramolecular chemistry, we can coassemble neutral and cationic BTAs and control the overall properties of the polymer by simple monomer mixing. Moreover, this platform offers a versatile approach toward functionalization. The core can be efficiently loaded with a hydrophobic guest molecule, while the exterior can be electrostatically complexed with siRNA. It is demonstrated that both compounds can be delivered in living cells, and that they can be combined to enable a dual delivery strategy. These results show the advantages of employing a modular system and pave the way for application of supramolecular polymers in intracellular delivery.
机译:超分子聚合物是纳米结构的新兴家族,具有潜在的材料化学和医学用途。令人惊讶地,超分子聚合物在药物递送领域中的应用仅受到有限的关注。在这里,我们探索聚乙二醇化的1,3,5-苯三甲酰胺(BTA)超分子聚合物在细胞内递送的潜力。利用超分子化学的独特模块化方法,我们可以将中性和阳离子BTA组装在一起,并通过简单的单体混合来控制聚合物的整体性能。而且,该平台为功能化提供了一种通用的方法。核心可以有效负载疏水性客体分子,而外部可以与siRNA静电复合。已经证明两种化合物都可以在活细胞中递送,并且可以将它们组合以实现双重递送策略。这些结果表明了采用模块化系统的优势,并为超分子聚合物在细胞内递送中的应用铺平了道路。

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