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The role of macromolecular architecture in passively targeted polymeric carriers for drug and gene delivery.

机译:大分子结构在被动靶向聚合物载体中用于药物和基因传递的作用。

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The use of polymeric carriers for drug delivery has become increasingly popular because of the ability to easily tune the physical and biological properties of macromolecules. With the growing commercial accessibility of branched and dendritic polymers, their incorporation into polymeric carriers is being explored with increased frequency. However, while a handful of systematic studies have explored the use of branched macromolecules for drug delivery, the role of polymer architecture in optimizing the polymeric carriers is not yet fully understood. Herein, the authors summarize the effect that architecture has on the basic physical properties of polymers, and review our preliminary understanding of the architectural effects on polymer-assisted drug delivery.
机译:由于能够容易地调节大分子的物理和生物学特性,使用聚合物载体进行药物递送变得越来越普遍。随着支化和树枝状聚合物在商业上的可及性的提高,正在将它们掺入聚合物载体中的频率越来越高。然而,尽管少数系统研究已经探索了支链大分子用于药物递送的用途,但是聚合物结构在优化聚合物载体中的作用尚未完全被理解。本文中,作者总结了建筑结构对聚合物基本物理性能的影响,并回顾了我们对建筑结构对聚合物辅助药物递送的影响的初步了解。

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