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Self-Assembly of Linear-Dendritic and Double Dendritic Block Copolymers: From Dendromicelles to Dendrimersomes

机译:线性树枝状和双树枝状嵌段共聚物的自组装:从树枝状晶体到树枝状体

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Nanostructures formed upon self-assembly of amphiphilic block copolymers with linear and dendronized blocks are promising as nanocarriers for targeted drug and gene delivery. We propose a theoretical framework to predict how dimensions and morphologies of such nanostructures as well as the number of potentially functionalized terminal groups exposed to surrounding media can be controlled by adjusting molecular architecture parameters of dendronized blocks (i.e., number of generations and branching functionality). We demonstrate that dendronization of the soluble block stabilizes spherical micelles with a dendritic corona, whereas block copolymers with dendritic insoluble blocks give rise to cylindrical wormlike micelles or polymersomes even if homologous linear-linear block copolymers assemble into spherical micelles. Spherical micelles with a dendronized corona combine smaller hydrodynamic dimensions with a larger number of terminal groups as compared to micelles formed by homologous linear diblock copolymers. Our findings provide guidelines for design of targetable vector systems in nanomedicine.
机译:在具有线性和树枝状嵌段的两亲嵌段共聚物的自组装时形成的纳米结构与靶向药物和基因递送的纳米载体有望。我们提出了一种理论框架,以预测这种纳米结构的尺寸和形态以及暴露于周围介质的潜在功能化末端基团的数量可以通过调整树枝状块的分子结构参数来控制(即世代数量和分支功能)来控制。我们证明可溶性块的横向化稳定与树突式的树枝状电晕的球形胶束,而嵌段与树突式不溶性块的共聚物即使同源线性线性嵌段共聚物组装成球形胶束,则导致圆柱形蠕虫状胶束或聚合物。与通过同源线性二嵌段共聚物形成的胶束相比,具有较小的末端基团的球形胶束结合了较大数量的末端基团。我们的调查结果为纳米医生的纵向载体系统设计提供了指导。

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