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基于金属纳米酶的重金属离子传感研究进展:挑战与展望。

A review on metal nanozyme-based sensing of heavy metal ions: Challenges and future perspectives.

机构信息

Department of Bioscience and Biotechnology, National Taiwan Ocean University, Keelung 20224, Taiwan.

Department of Bioscience and Biotechnology, National Taiwan Ocean University, Keelung 20224, Taiwan; Center of Excellence for the Oceans, National Taiwan Ocean University, Keelung 20224, Taiwan; School of Pharmacy, College of Pharmacy, Kaohsiung Medical University, Kaohsiung 80708, Taiwan.

出版信息

J Hazard Mater. 2021 Jan 5;401:123397. doi: 10.1016/j.jhazmat.2020.123397. Epub 2020 Jul 7.

Abstract

Large scale mining, manufacturing industries, exploitation of underground water, depletion of groundwater level, and uncontrolled discharge of industrial wastes have caused severe heavy metal ion pollution to the environment throughout the world. Therefore, the rapid detection of such toxic metal ions is inevitable. However, conventional methods require sophisticated instruments and skilled manpower and are difficult to operate in on-field conditions. Recently, metal nanozyme-based assays have been found to have the potential as an alternative to conventional methods due to their portability, simplicity, and high sensitivity to detect metal ion concentration to as low as parts per trillion (ppt). Metal nanozyme-based systems for heavy metal ions enable rapid and cheap screening on the spot with a very simple instrument such as a UV-vis absorption spectrophotometer and therefore, are convenient for use in field operations, especially in remote parts of the world. The sensing mechanism of a nanozyme-based sensor is highly dependent on its surface properties and specific interactions with particular metal ion species. Such method often encounters selectivity issues, unlike natural enzyme-based assays. Therefore, in this review, we mainly focus our discussion on different types of target recognition and inhibition/enhancement mechanisms, and their responses toward the catalytic activity in the sensing of target metal ions, design strategies, challenges, and future perspectives.

摘要

大规模采矿、制造业、地下水资源开采、地下水位下降以及工业废物的不受控制排放,导致全世界的环境都受到了严重的重金属离子污染。因此,对这些有毒金属离子进行快速检测是必不可少的。然而,传统方法需要复杂的仪器和熟练的人力,并且难以在现场条件下操作。最近,由于其便携性、简单性和对检测金属离子浓度低至ppt(parts per trillion)的高灵敏度,基于金属纳米酶的检测方法已被发现有可能替代传统方法。基于金属纳米酶的重金属离子检测系统可以使用非常简单的仪器(如紫外-可见吸收分光光度计)进行快速、廉价的现场筛选,因此非常便于现场操作,特别是在世界偏远地区。纳米酶传感器的传感机制高度依赖于其表面特性和与特定金属离子种类的特定相互作用。与基于天然酶的检测方法不同,这种方法经常遇到选择性问题。因此,在本综述中,我们主要集中讨论不同类型的目标识别和抑制/增强机制,以及它们对目标金属离子传感中催化活性的响应、设计策略、挑战和未来展望。

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