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利用羊毛角蛋白衍生的金属纳米酶作为一种强大的抗氧化催化剂,清除吸烟产生的活性氧。

Using Wool Keratin Derived Metallo-Nanozymes as a Robust Antioxidant Catalyst to Scavenge Reactive Oxygen Species Generated by Smoking.

机构信息

Department of Physics, Research Institute for Biomimetics and Soft Matter, Fujian Provincial Key Laboratory for Soft Functional Materials Research, Xiamen University, Xiamen, 361005, P. R. China.

Technology Center of China Tobacco Fujian Industrial Co., Ltd., Xiamen, 361021, P. R. China.

出版信息

Small. 2022 Jun;18(23):e2201205. doi: 10.1002/smll.202201205. Epub 2022 May 11.

Abstract

Self-assembled nanostructures based on biomolecules (e.g., proteins and amino acids) and metal ions have promising applications in mimicking the nanostructure, properties, and functions of natural enzymes. Herein, a metal ion-mediated self-assembly method for constructing catalytically active Cu-wool-keratin (CuWK) two-dimensional nanozymes is presented. Specifically, by introducing copper ions as abiological cofactors, WK can serve as a protein scaffold to design and create Cu catalytic sites. The optimized hybrids with Cu-WK coordination framework exhibit significant superoxide dismutases-like activity, catalase-like activity, and hydroxyl radical scavenging ability. These combined antioxidant activities make CuWK a robust nanozyme to effectively remove various reactive oxygen species (ROS). In this work, the as-prepared CuWK as a new additive can be integrated into a cigarette filter system to effectively remove the produced ROS from the burning of tobacco. More importantly, the CuWK nanozymes as a critical element can be further utilized to construct a recycling cigarette holder. Therefore, the present work shows that nanozymes with advanced catalytic capabilities can be constructed by self-assembly of metal ions and proteins, thus facilitating the rational design and discovery of this kind of artificial metalloenzymes.

摘要

基于生物分子(如蛋白质和氨基酸)和金属离子的自组装纳米结构在模拟天然酶的纳米结构、性质和功能方面具有广阔的应用前景。在此,提出了一种金属离子介导的自组装方法,用于构建催化活性的 Cu-羊毛角蛋白(CuWK)二维纳米酶。具体而言,通过引入铜离子作为非生物辅因子,WK 可以作为一种蛋白质支架,用于设计和构建 Cu 催化位点。优化后的具有 Cu-WK 配位框架的杂交体表现出显著的超氧化物歧化酶样活性、过氧化氢酶样活性和羟基自由基清除能力。这些抗氧化活性的综合作用使 CuWK 成为一种有效的纳米酶,能够有效清除各种活性氧(ROS)。在这项工作中,所制备的 CuWK 作为一种新的添加剂,可以整合到香烟过滤系统中,以有效去除烟草燃烧产生的 ROS。更重要的是,CuWK 纳米酶作为关键元素,可以进一步用于构建可回收的香烟支架。因此,本工作表明,可以通过金属离子和蛋白质的自组装构建具有先进催化能力的纳米酶,从而促进这种人工金属酶的合理设计和发现。

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