Department of Chemistry, University of York, Heslington Road, York, YO10 5DD, UK.
Chemistry. 2018 Aug 22;24(47):12164-12182. doi: 10.1002/chem.201800750. Epub 2018 Jun 6.
The immobilization of redox proteins or enzymes onto conductive surfaces has application in the analysis of biological processes, the fabrication of biosensors, and in the development of green technologies and biochemical synthetic approaches. This review evaluates the methods through which redox proteins can be attached to electrode surfaces in a "wired" configuration, that is, one that facilitates direct electron transfer. The feasibility of simple electroactive adsorption onto a range of electrode surfaces is illustrated, with a highlight on the recent advances that have been achieved in biotechnological device construction using carbon materials and metal oxides. The covalent crosslinking strategies commonly used for the modification and biofunctionalization of electrode surfaces are also evaluated. Recent innovations in harnessing chemical biology methods for electrically wiring redox biology to surfaces are emphasized.
将氧化还原蛋白或酶固定在导电表面上,可应用于生物过程分析、生物传感器的制造,以及绿色技术和生化合成方法的开发。本综述评估了将氧化还原蛋白以“有线”配置(即促进直接电子转移的配置)附着到电极表面的方法。简单的电活性吸附到各种电极表面的可行性得到了说明,重点介绍了使用碳材料和金属氧化物在生物技术器件构建方面取得的最新进展。还评估了用于修饰和生物功能化电极表面的常见共价交联策略。强调了利用化学生物学方法将氧化还原生物学电连接到表面的最新创新。