计算机科学
生物系统
自愈水凝胶
还原(数学)
代表(政治)
复杂系统
纳米技术
生化工程
材料科学
化学
人工智能
数学
工程类
生物
几何学
政治
高分子化学
法学
政治学
作者
Sjoerd G. J. Postma,Ilia N. Vialshin,Casper Y. Gerritsen,Min Bao,Wilhelm T. S. Huck
标识
DOI:10.1002/anie.201610875
摘要
The creation of adaptive matter is heavily inspired by biological systems. However, it remains challenging to design complex material responses that are governed by reaction networks, which lie at the heart of cellular complexity. The main reason for this slow progress is the lack of a general strategy to integrate reaction networks with materials. Herein we use a systematic approach to preprogram the response of a hydrogel to a trigger, in this case the enzyme trypsin, which activates a reaction network embedded within the hydrogel. A full characterization of all the kinetic rate constants in the system enabled the construction of a computational model, which predicted different hydrogel responses depending on the input concentration of the trigger. The results of the simulation are in good agreement with experimental findings. Our methodology can be used to design new, adaptive materials of which the properties are governed by reaction networks of arbitrary complexity.
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