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用于测定过氧化物酶样纳米酶催化活性和动力学的标准化分析方法。

Standardized assays for determining the catalytic activity and kinetics of peroxidase-like nanozymes.

机构信息

Key Laboratory of Protein and Peptide Pharmaceuticals, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.

School of Medicine, Yangzhou University, Yangzhou, China.

出版信息

Nat Protoc. 2018 Jul;13(7):1506-1520. doi: 10.1038/s41596-018-0001-1.

Abstract

Nanozymes are nanomaterials exhibiting intrinsic enzyme-like characteristics that have increasingly attracted attention, owing to their high catalytic activity, low cost and high stability. This combination of properties has enabled a broad spectrum of applications, ranging from biological detection assays to disease diagnosis and biomedicine development. Since the intrinsic peroxidase activity of FeO nanoparticles (NPs) was first reported in 2007, >40 types of nanozymes have been reported that possess peroxidase-, oxidase-, haloperoxidase- or superoxide dismutase-like catalytic activities. Given the complex interdependence of the physicochemical properties and catalytic characteristics of nanozymes, it is important to establish a standard by which the catalytic activities and kinetics of various nanozymes can be quantitatively compared and that will benefit the development of nanozyme-based detection and diagnostic technologies. Here, we first present a protocol for measuring and defining the catalytic activity units and kinetics for peroxidase nanozymes, the most widely used type of nanozyme. In addition, we describe the detailed experimental procedures for a typical nanozyme strip-based biological detection test and demonstrate that nanozyme-based detection is repeatable and reliable when guided by the presented nanozyme catalytic standard. The catalytic activity and kinetics assays for a nanozyme can be performed within 4 h.

摘要

纳米酶是具有内在酶样特性的纳米材料,由于其高催化活性、低成本和高稳定性,越来越受到关注。这种特性的结合使纳米酶具有广泛的应用,从生物检测到疾病诊断和生物医学发展。自 2007 年首次报道 FeO 纳米颗粒(NPs)的固有过氧化物酶活性以来,已经报道了超过 40 种具有过氧化物酶、氧化酶、卤过氧化物酶或超氧化物歧化酶样催化活性的纳米酶。鉴于纳米酶的物理化学性质和催化特性之间的复杂相互依存关系,建立一个标准来定量比较各种纳米酶的催化活性和动力学是很重要的,这将有利于基于纳米酶的检测和诊断技术的发展。在这里,我们首先提出了一种测量和定义过氧化物酶纳米酶的催化活性单位和动力学的方案,这是最广泛使用的纳米酶类型。此外,我们还描述了一种典型的基于纳米酶条带的生物检测试验的详细实验步骤,并证明了在提出的纳米酶催化标准的指导下,纳米酶检测是可重复和可靠的。纳米酶的催化活性和动力学测定可以在 4 小时内完成。

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