State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, PR China.
Nanoscale. 2019 Jul 14;11(26):12603-12609. doi: 10.1039/c9nr03506k. Epub 2019 Jun 24.
Although various nanomaterials have been found to exhibit intrinsic enzyme-like activity, to date, there is no general strategy for designing nanozymes, and their catalytic mechanism has not been studied in depth. To realize the desired enzymatic properties, imitating the structure of natural enzymes is a commendable way to develop effective nanozymes. Inspired by the structure of natural horseradish peroxidase (HRP), we loaded hemin onto amino-modified single-walled carbon nanotubes (SWNT-NH) to prepare an effective peroxidase-like nanozyme (SWNT-NH@hemin). The peroxidase-like activity of hemin was enhanced by SWNT through π-π interactions, and the positively charged -NH groups played a similar role to arginine in HRP and stabilized the intermediate during catalysis and facilitated the cleavage of the O-O bond. This is instructive for the development of a variety of highly efficient nanozymes by simulating the adjacent environment of the active center in natural enzymes. In addition, dual sensor platforms consisting of a colorimetric method and electrochemical method were developed based on SWNT-NH@hemin.
虽然已经发现各种纳米材料具有内在的酶样活性,但迄今为止,还没有设计纳米酶的通用策略,其催化机制也没有得到深入研究。为了实现所需的酶特性,模仿天然酶的结构是开发有效纳米酶的一种值得称赞的方法。受天然辣根过氧化物酶(HRP)结构的启发,我们将血红素加载到氨基修饰的单壁碳纳米管(SWNT-NH)上,制备了一种有效的过氧化物酶样纳米酶(SWNT-NH@hemin)。通过π-π 相互作用,SWNT 增强了血红素的过氧化物酶样活性,带正电荷的-NH 基团在 HRP 中发挥类似精氨酸的作用,稳定催化过程中的中间产物,并促进 O-O 键的断裂。这为通过模拟天然酶活性中心的邻近环境来开发各种高效纳米酶提供了启示。此外,还基于 SWNT-NH@hemin 开发了由比色法和电化学法组成的双传感器平台。