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Capsules-in-bead scaffold: a rational architecture for spatially separated multienzyme cascade system

机译:珠粒支架:空间分离的多酶级联系统的合理架构

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摘要

A novel kind of capsules-in-bead scaffold was developed to construct a spatially separated multienzyme cascade system. More specifically, each enzyme was first encapsulated in a guest microcapsule through the synergy of biomimetic mineralization and layer-by-layer self-assembly; these guest capsules were then encapsulated into a millimeter-scale gel bead (host bead). Such structured scaffold, was validated by the production of methanol from CO2 via three dehydrogenases consisting of formate, formaldehyde, and alcohol dehydrogenases. Compared to the homogeneous multienzyme cascade system where enzymes were all co-encapsulated in a single gel bead, the capsules-in-bead scaffold substantially improved enzymatic activity, recycling and storage stability, thus higher methanol yield was achieved. Hopefully, this study will set an innovative example for the rational design of complex multienzyme cascades and multienzyme microreactor.
机译:开发了一种新型的珠粒胶囊支架,以构建空间分离的多酶级联系统。更具体地说,每种酶首先通过仿生矿化作用和逐层自组装的协同作用被封装在客体微胶囊中。然后将这些客体胶囊封装成毫米级的凝胶珠(宿主珠)。通过由甲酸,甲醛和醇脱氢酶组成的三种脱氢酶从二氧化碳中生成甲醇,验证了这种结构化支架。与均将酶共包封在单个凝胶珠中的均质多酶级联系统相比,珠中囊支架大大提高了酶活性,再循环和储存稳定性,因此获得了更高的甲醇收率。希望这项研究将为复杂的多酶级联反应和多酶微反应器的合理设计提供一个创新的例子。

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