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血红素模拟人工酶的去局域化工程用于增强反应性氧催化。

Delocalization Engineering of Heme-Mimetic Artificial Enzymes for Augmented Reactive Oxygen Catalysis.

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, China.

Department of Mechanical Engineering, The University of Hong Kong, Hong Kong SAR, China.

出版信息

Angew Chem Int Ed Engl. 2024 Apr 8;63(15):e202400838. doi: 10.1002/anie.202400838. Epub 2024 Feb 29.

Abstract

Developing artificial enzymes based on organic molecules or polymers for reactive oxygen species (ROS)-related catalysis has broad applicability. Herein, inspired by porphyrin-based heme mimics, we report the synthesis of polyphthalocyanine-based conjugated polymers (Fe-PPc-AE) as a new porphyrin-evolving structure to serve as efficient and versatile artificial enzymes for augmented reactive oxygen catalysis. Owing to the structural advantages, such as enhanced π-conjugation networks and π-electron delocalization, promoted electron transfer, and unique Fe-N coordination centers, Fe-PPc-AE showed more efficient ROS-production activity in terms of Vmax and turnover numbers as compared with porphyrin-based conjugated polymers (Fe-PPor-AE), which also surpassed reported state-of-the-art artificial enzymes in their activity. More interestingly, by changing the reaction medium and substrates, Fe-PPc-AE also revealed significantly improved activity and environmental adaptivity in many other ROS-related biocatalytic processes, validating the potential of Fe-PPc-AE to replace conventional (poly)porphyrin-based heme mimics for ROS-related catalysis, biosensors, or biotherapeutics. It is suggested that this study will offer essential guidance for designing artificial enzymes based on organic molecules or polymers.

摘要

基于有机分子或聚合物开发用于活性氧(ROS)相关催化的人工酶具有广泛的适用性。在此,受基于卟啉的血红素模拟物的启发,我们报告了聚酞菁基共轭聚合物(Fe-PPc-AE)的合成,它是一种新的卟啉进化结构,可用作高效且多功能的人工酶,以增强活性氧催化。由于结构优势,例如增强的π-共轭网络和π-电子离域、促进的电子转移以及独特的 Fe-N 配位中心,Fe-PPc-AE 在 Vmax 和周转数方面表现出比基于卟啉的共轭聚合物(Fe-PPor-AE)更高的 ROS 产生活性,其活性也超过了已报道的最先进的人工酶。更有趣的是,通过改变反应介质和底物,Fe-PPc-AE 在许多其他 ROS 相关的生物催化过程中也显示出显著提高的活性和环境适应性,验证了 Fe-PPc-AE 替代传统(聚)卟啉基血红素模拟物用于 ROS 相关催化、生物传感器或生物治疗的潜力。该研究为基于有机分子或聚合物设计人工酶提供了重要的指导。

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