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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Regiochemical functionalization of a nanoscale cage-like structure: Robust core-shell nanostructures crafted as vessels for selective uptake and release of small and large guests
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Regiochemical functionalization of a nanoscale cage-like structure: Robust core-shell nanostructures crafted as vessels for selective uptake and release of small and large guests

机译:纳米级笼状结构的区域化学功能化:坚固耐用的核壳纳米结构,可作为容器用于选择性吸收和释放大小宾客

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摘要

As synthetic methods evolve toward the preparation of increasingly complex nanostructured materials inspired from biological nano-objects, the ability to tailor the three-dimensional architecture and the placement of functional groups at well-defined positions within those frameworks is advancing. In this report, we demonstrate the ability to functionalize selectively internal and external sites (regiochemically) within polymer nanocages, to advance their development as synthetic analogs of viral capsids. Nanocages, possessing carbonyl groups on their internal surfaces and acrylic acid residues throughout their structure were prepared and functionalized, through either Schiff-base chemistry, to attach covalently phosphatidylethanolamine-based lipids within the nanocage, or carbodiimide-mediated coupling, to attach covalently the lipids throughout the shell. The resulting nanostructures were altered by the insertion of molecules within and on the structure, including, for the Schiff base functionalized nanostructure, an enhanced response to pH and increased uptake of hydrophobic guests. Additionally, the use of phosphatidylethanolamine lipids labeled with 7-nitrobenz-2-oxa-1,3-diazole (NBD) allowed for determination of the environmental polarities of the lipid domains within the lipid-nanocage constructs. (c) 2005 Elsevier B.V. All rights reserved.
机译:随着合成方法的发展,受生物纳米物体的启发,制备越来越复杂的纳米结构材料的能力不断增强,其能够定制三维结构并将官能团放置在这些框架内明确定义的位置上的能力。在本报告中,我们证明了选择性地功能化聚合物纳米笼子内部和外部位点(区域化学地)的功能,以促进其作为病毒衣壳的合成类似物的发展。制备并在其整个内部结构中具有羰基的纳米笼,并通过席夫碱化学法将其官能化,以将基于磷脂酰乙醇胺的脂质共价连接到纳米笼中,或通过碳二亚胺介导的偶联,将脂质共价连接。整个外壳。通过在结构内和结构上插入分子来改变所得的纳米结构,对于席夫碱官能化的纳米结构而言,包括对pH的增强响应和对疏水客体的吸收增加。此外,使用标记有7-硝基苯-2-氧杂-1,3-二唑(NBD)的磷脂酰乙醇胺脂质可以确定脂质纳米结构中脂质结构域的环境极性。 (c)2005 Elsevier B.V.保留所有权利。

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