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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Redox Interfaces for Electrochemically Controlled Protein-Surface Interactions: Bioseparations and Heterogeneous Enzyme Catalysis
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Redox Interfaces for Electrochemically Controlled Protein-Surface Interactions: Bioseparations and Heterogeneous Enzyme Catalysis

机译:用于电化学控制蛋白表面相互作用的氧化还原界面:生物分离和异质酶催化

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摘要

Redox-active materials are an attractive platform for engineering specific interactions with charged species by electrochemical control. We present nanostructured redox-electrodes, functionalized with poly(vinyl)ferrocene embedded in a carbon nanotube matrix, for modulating the adsorption and release of proteins through electrochemical potential swings. The affinity of the interface toward proteins increased dramatically following oxidation of the ferrocenes, and, due to the Faradaic nature of the organometallic centers, the electrodes were maintained at sufficiently low overpotentials to ensure the preservation of both protein structure and catalytic activity. Our system was selective for various proteins based on size and charge distribution, and exhibited fast kinetics (<120 s for a charge-discharge cycle) and high uptake capacities (>200 mg/g) under moderate overpotentials (+0.4 V vs Ag/AgCI), as well as remarkable stability for binding under ferrocene oxidation conditions. The preservation of bioactivity and protein structure at the interface indicates the potential for these redox-mediated surfaces to be used as heterogeneous supports for enzyme catalysis. This work draws on the molecular selectivity of ferrocene-functionalized materials toward organic anion groups, and demonstrates that these smart redox-active materials can be used for modulation of the macroscopic affinity of surfaces for charged biomacromolecules to enhance processes such as bioseparations, electrochemically controlled protein purification, biocatalysis, and electrochemically mediated drug release.
机译:氧化还原活性材料是通过电化学控制与带电物种的工程特异性相互作用的有吸引力的平台。我们呈现纳米结构氧化还原电极,用含有碳纳米管基质中的聚(乙烯基)二茂铁官能化,用于调节蛋白质通过电化学电位摇摆的吸附和释放。逆向蛋白质的亲和力在氧化钨烯氧化后显着增加,并且由于有机金属中心的游览性质,电极保持足够低的过电位,以确保保存蛋白质结构和催化活性。我们的系统对各种蛋白质选择性的基于尺寸和电荷分布,并在中等过电压下显示出快速动力学(<120秒)和高吸收能力(> 200mg / g)(+0.4V VS AG / AGCI),以及在二茂铁氧化条件下结合的显着稳定性。在界面处的生物活性和蛋白质结构的保存表明这些氧化还原介导的表面用作酶催化的异质支持物的可能性。这项工作借鉴了二茂铁官能化材料朝向有机环膜组的分子选择性,并证明这些智能氧化还原活性材料可用于调节带电生物致摩托的表面的宏观亲和力,以增强生物分离,电化学控制的蛋白质等过程纯化,生物催化和电化学介导的药物释放。

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