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Cascaded Biocatalysis and Bioelectrocatalysis: Overview and Recent Advances
Annual Review of Physical Chemistry ( IF 14.7 ) Pub Date : 2021-04-20 , DOI: 10.1146/annurev-physchem-090519-050109
Yoo Seok Lee 1 , Koun Lim 1 , Shelley D Minteer 1
Affiliation  

Enzyme cascades are plentiful in nature, but they also have potential in artificial applications due to the possibility of using the target substrate in biofuel cells, electrosynthesis, and biosensors. Cascade reactions from enzymes or hybrid bioorganic catalyst systems exhibit extended substrate range, reaction depth, and increased overall performance. This review addresses the strategies of cascade biocatalysis and bioelectrocatalysis for (a) CO2 fixation, (b) high value-added product formation, (c) sustainable energy sources via deep oxidation, and (d) cascaded electrochemical enzymatic biosensors. These recent updates in the field provide fundamental concepts, designs of artificial electrocatalytic oxidation-reduction pathways (using a flexible setup involving organic catalysts and engineered enzymes), and advances in hybrid cascaded sensors for sensitive analyte detection.

中文翻译:


级联生物催化和生物电催化:概述和最新进展

酶级联在自然界中很丰富,但由于可以在生物燃料电池、电合成和生物传感器中使用目标底物,因此它们在人工应用中也具有潜力。酶或混合生物有机催化剂系统的级联反应表现出扩展的底物范围、反应深度和提高的整体性能。本综述讨论了级联生物催化和生物电催化的策略:(a)CO 2固定,(b)高附加值产品的形成,(c)通过深度氧化的可持续能源,以及(d))级联电化学酶生物传感器。该领域的这些最新更新提供了基本概念、人工电催化氧化还原途径的设计(使用涉及有机催化剂和工程酶的灵活设置),以及用于敏感分析物检测的混合级联传感器的进展。

更新日期:2021-04-21
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