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一种包含自分类双纳米纤维网络的自适应超分子水凝胶。

An adaptive supramolecular hydrogel comprising self-sorting double nanofibre networks.

作者信息

Shigemitsu Hajime, Fujisaku Takahiro, Tanaka Wataru, Kubota Ryou, Minami Saori, Urayama Kenji, Hamachi Itaru

机构信息

Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Kyoto, Japan.

Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Osaka, Japan.

出版信息

Nat Nanotechnol. 2018 Feb;13(2):165-172. doi: 10.1038/s41565-017-0026-6. Epub 2018 Jan 8.

Abstract

Novel soft materials should comprise multiple supramolecular nanostructures whose responses (for example, assembly and disassembly) to external stimuli can be controlled independently. Such multicomponent systems are present in living cells and control the formation and break-up of a variety of supramolecular assemblies made of proteins, lipids, DNA and RNA in response to external stimuli; however, artificial counterparts are challenging to make. Here, we present a hybrid hydrogel consisting of a self-sorting double network of nanofibres in which each network responds to an applied external stimulus independent of the other. The hydrogel can be made to change its mechanical properties and rates of release of encapsulated proteins by adding NaSO or bacterial alkaline phosphatase. Notably, the properties of the gel depend on the order in which the external stimuli are applied. Multicomponent hydrogels comprising orthogonal stimulus-responsive supramolecular assemblies would be suitable for designing novel adaptive materials.

摘要

新型软材料应包含多种超分子纳米结构,其对外部刺激的响应(例如组装和拆卸)能够独立控制。此类多组分系统存在于活细胞中,并能响应外部刺激控制由蛋白质、脂质、DNA和RNA构成的各种超分子组装体的形成和分解;然而,人工合成的类似物很难制备。在此,我们展示了一种由纳米纤维自分类双网络组成的混合水凝胶,其中每个网络对施加的外部刺激的响应相互独立。通过添加NaSO或细菌碱性磷酸酶,可使水凝胶改变其力学性能以及包封蛋白质的释放速率。值得注意的是,凝胶的性质取决于施加外部刺激的顺序。包含正交刺激响应超分子组装体的多组分水凝胶将适用于设计新型自适应材料。

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