Wang Chen, Fischer Amit, Ehrlich Avner, Nahmias Yaakov, Willner Itamar
Institute of Chemistry, The Minerva Center for Bio-hybrid Complex Systems, The Hebrew University of Jerusalem Jerusalem 91904 Israel
Grass Center for Bioengineering, Benin School of Computer Science and Engineering, The Hebrew University of Jerusalem 91904 Israel.
Chem Sci. 2020 Apr 14;11(17):4516-4524. doi: 10.1039/d0sc01319f.
The enzymes glucose oxidase (GOx), acetylcholine esterase (AchE) and urease that drive biocatalytic transformations to alter pH, are integrated into pH-responsive DNA-based hydrogels. A two-enzyme-loaded hydrogel composed of GOx/urease or AchE/urease and a three-enzyme-loaded hydrogel composed of GOx/AchE/urease are presented. The biocatalytic transformations within the hydrogels lead to the dictated reconfiguration of nucleic acid bridges and the switchable control over the stiffness of the respective hydrogels. The switchable stiffness features are used to develop biocatalytically guided shape-memory and self-healing matrices. In addition, loading of GOx/insulin in a pH-responsive DNA-based hydrogel yields a glucose-triggered matrix for the controlled release of insulin, acting as an artificial pancreas. The release of insulin is controlled by the concentrations of glucose, hence, the biocatalytic insulin-loaded hydrogel provides an interesting sense-and-treat carrier for controlling diabetes.
可驱动生物催化转化以改变pH值的葡萄糖氧化酶(GOx)、乙酰胆碱酯酶(AchE)和脲酶被整合到基于pH响应的DNA水凝胶中。本文展示了一种由GOx/脲酶或AchE/脲酶组成的双酶负载水凝胶以及一种由GOx/AchE/脲酶组成的三酶负载水凝胶。水凝胶内的生物催化转化导致核酸桥的特定重新配置以及对相应水凝胶刚度的可切换控制。可切换的刚度特性被用于开发生物催化引导的形状记忆和自愈基质。此外,在基于pH响应的DNA水凝胶中负载GOx/胰岛素可产生一种用于控制胰岛素释放的葡萄糖触发基质,起到人工胰腺的作用。胰岛素的释放由葡萄糖浓度控制,因此,负载生物催化胰岛素的水凝胶为控制糖尿病提供了一种有趣的传感与治疗载体。