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Supramolecular Chemistry And Self-assembly Special Feature: Partial shell-filled core-shell tecto(dendrimers): A strategyto surface differentiated nano-clefts and cusps

机译:超分子化学和自组装特征:部分充满壳的核壳构造(树状聚合物):一种策略到表面分化的纳米裂缝和尖瓣

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摘要

Poly(amidoamine) (PAMAM) dendrimer shell reagents possessing either nucleophilic (i.e., primary amines) or electrophilic (i.e., carboxymethyl esters) functional groups have been covalently assembled around appropriate electrophilic or nucleophilic dendrimer core reagents to produce partial shell filled/core-shell tecto(dendrimers). Partial shell-filled products with saturation levels ranging from 28% to 66% were obtained. These metastable, remarkably monodispersed assemblies possess functionally differentiated nano-cusps and clefts that exhibit “autoreactive” behavior. Pacification of these autoreactive products with appropriate alkanolamine reagents produced robust, nonreactive, “hydroxy-amine-differentiated” surfaces that exhibit very active self-assembly properties. Based on the monodispersity, dimensional scaling, and electrophoretic similarities of PAMAM dendrimers to globular proteins, these assemblies may be viewed as crude biomimetics of classical core shell-type protein aggregates. These dimensionally larger, but analogous PAMAM core-shell tecto(dendrimer) architecturesextend and complete a similar pattern of autoreactivity andpacification that was observed earlier for traditional mono PAMAMdendrimer core-shell modules possessing unsaturated shell levels.
机译:具有亲核(即伯胺)或亲电(即羧甲基酯)官能团的聚(酰胺基胺)(PAMAM)树状壳试剂已在适当的亲电或亲核树状体核心试剂周围共价组装,以产生部分被壳填充/核壳tecto(树枝状聚合物)。获得了部分壳填充的产品,其饱和度为28%至66%。这些亚稳态的,明显地单分散的组件具有功能不同的纳米尖端和裂口,表现出“自反应”行为。用合适的链烷醇胺试剂对这些自反应产物进行太平洋酯化,可得到坚固,非反应性的,“羟胺-差异化”的表面,这些表面表现出非常活跃的自组装特性。基于PAMAM树状大分子与球状蛋白的单分散性,尺寸缩放和电泳相似性,这些组装可被视为经典核心壳型蛋白聚集体的粗制仿生物。这些尺寸较大但类似的PAMAM核-壳tecto(树状聚合物)体系结构扩展并完成类似的自动反应模式传统Mono PAMAM之前观察到的安抚具有不饱和壳能级的树状聚合物核-壳模块。

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