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首页> 外文期刊>Biomacromolecules >Layer-by-Layer Assembly of Amine-Reactive Multilayers Using an Azlactone-Functionalized Polymer and Small-Molecule Diamine Linkers
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Layer-by-Layer Assembly of Amine-Reactive Multilayers Using an Azlactone-Functionalized Polymer and Small-Molecule Diamine Linkers

机译:使用阿兹内酯官能化聚合物和小分子二胺接头逐层组装胺反应性多层

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We report the reactive layer-by-layer assembly of amine-reactive polymer multilayers using an azlactonefunctionalized polymer and small-molecule diamine linkers. This approach yields cross-linked polymer/linker-type films that can be further functionalized, after fabrication, by treatment with functional primary amines, and provides opportunities to incorporate other useful functionality that can be difficult to introduce using other polyamine building blocks. Films fabricated using poly(2-vinyl-4,4-dimethylazlactone) (PVDMA) and three model nondegradable aliphatic diamine linkers yielded reactive thin films that were stable upon incubation in physiologically relevant media. By contrast, films fabricated using PVDMA and varying amounts of the model disulfide-containing diamine linker cystamine were stable in normal physiological media, but were unstable and eroded rapidly upon exposure to chemical reducing agents. We demonstrate that this approach can be used to fabricate functionalized polymer microcapsule's that degrade in reducing environments, and that rates of erosion, extents of capsule swelling, and capsule degradation can be tuned by control over the relative concentration of cystamine linker used during fabrication. The polymer/ linker approach used here expands the range of properties and functions that can be designed into reactive PVDMA-based coatings, including functionality that can degrade, erode, and undergo triggered destruction in aqueous environments. We therefore anticipate that these approaches will be useful for the functionalization, patterning, and customization of coatings, membranes, capsules, and interfaces of potential utility in biotechnical or biomedical contexts and other areas where degradation and transience are desired. The proof of concept strategies reported here are likely to be general; and should prove useful for the design of amine-reactive coatings containing other functional structures by judicious control of the structures of the linkers used during assembly.
机译:我们报道了使用氮内酯官能化聚合物和小分子二胺连接剂的胺反应性聚合物多层的反应性逐层组装。这种方法产生交联聚合物/接头型薄膜,在制造后,可以通过用功能性伯胺处理来进一步功能化,并提供了结合其他有用功能的机会,这些功能可能难以使用其他多胺构建单元引入。使用聚(2-乙烯基-4,4-二甲基氮杂乳酮)(PVDMA)和三种模型不可降解的脂肪族二胺接头制备的薄膜产生了反应性薄膜,这些薄膜在生理相关培养基中孵育时是稳定的。相比之下,使用PVDMA和不同量的模型二硫化物连接体胱胺制备的薄膜在正常生理介质中是稳定的,但在暴露于化学还原剂时不稳定并迅速侵蚀。我们证明,这种方法可用于制造在还原环境中降解的功能化聚合物微胶囊,并且可以通过控制制造过程中使用的胱胺接头的相对浓度来调整侵蚀速率、胶囊膨胀程度和胶囊降解。这里使用的聚合物/接头方法扩展了可以设计成反应性PVDMA涂层的性能和功能范围,包括在水环境中可以降解、侵蚀和触发破坏的功能。因此,我们预计这些方法将有助于在生物技术或生物医学环境中以及其他需要降解和短暂性的领域中具有潜在实用性的涂层、膜、胶囊和界面的功能化、图案化和定制。这里报告的概念验证策略可能是一般性的;并且应该通过明智地控制组装过程中使用的连接剂的结构来设计含有其他功能结构的胺反应性涂层。

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