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基于 MXene@FeO 增强的过氧化物酶模拟活性对谷胱甘肽和 HO 的灵敏比色传感

Sensitive colorimetric sensing of glutathione and HO based on enhanced peroxidase mimetic activity of MXene@FeO.

机构信息

Department of Pharmacy, The Affiliated Nanjing Drum Tower Hospital of Nanjing University Medical School, 321 Zhongshan Road, Nanjing, 210008, Jiangsu, China.

Nanjing Medical Center for Clinical Pharmacy, Nanjing, China.

出版信息

Mikrochim Acta. 2022 Nov 21;189(12):452. doi: 10.1007/s00604-022-05556-3.

DOI:10.1007/s00604-022-05556-3
PMID:36409373
Abstract

The peroxidase-like activity of MXene@FeO nanocomposites and the relevant colorimetric application have been investigated for the first time. According to a kinetic study, MXene@FeO nanocomposites displayed higher peroxidase activity than their individual components, and the catalytic process followed a ping-pong mechanism. The improved peroxidase-like activity of the MXene@FeO nanocomposites was obtained due to the synergetic impact of the FeO and MXene phases, the huge ion-accessible interface, and quick electron transfer channels in the nanocomposites. In the presence of hydrogen peroxide (HO), the MXene@FeO nanocomposites can catalyze the reaction of the colorless substrate 3, 3, 5, 5-tetramethylbenzidine (TMB) into oxidized TMB which revealed a blue color at 652 nm. After the introduction of glutathione (GSH), the blue color was gradually fading owing to the hydroxyl radical scavenging effect of glutathione. A colorimetric detection platform based on the peroxidase-like activity of the MXene@FeO nanocomposites was developed for HO and GSH with a detection limit of 0.4 μM and 0.5 μM, respectively. The calibration plot for glutathione detection is calculated by absorbance difference at 652 nm, which ranged from 0.5 to 10 μM with a detection limit of 0.2 μM. The recoveries of GSH with different concentrations ranged from 93.76 to 108.50% and the relative standard deviation from 0.30 to 5.96%. This work significantly extends the application of MXene@FeO nanocomposites in the construction of colorimetric sensors and reveals a satisfactory result in real sample analysis.

摘要

MXene@FeO 纳米复合材料的过氧化物酶样活性及其相关比色应用研究

首次进行了研究。根据动力学研究,MXene@FeO 纳米复合材料表现出比其单个组分更高的过氧化物酶活性,并且催化过程遵循乒乓机制。由于 FeO 和 MXene 相的协同影响、纳米复合材料中巨大的离子可及界面和快速的电子转移通道,MXene@FeO 纳米复合材料获得了改善的过氧化物酶样活性。在存在过氧化氢 (HO) 的情况下,MXene@FeO 纳米复合材料可以催化无色底物 3,3,5,5-四甲基联苯胺 (TMB) 的反应,生成氧化的 TMB,在 652nm 处呈现蓝色。引入谷胱甘肽 (GSH) 后,由于谷胱甘肽的羟基自由基清除作用,蓝色逐渐褪色。基于 MXene@FeO 纳米复合材料的过氧化物酶样活性,建立了用于 HO 和 GSH 的比色检测平台,检测限分别为 0.4μM 和 0.5μM。谷胱甘肽检测的校准曲线通过在 652nm 处的吸光度差计算,其范围为 0.5 至 10μM,检测限为 0.2μM。不同浓度的 GSH 的回收率范围为 93.76%至 108.50%,相对标准偏差为 0.30%至 5.96%。这项工作显著扩展了 MXene@FeO 纳米复合材料在构建比色传感器中的应用,并在实际样品分析中取得了令人满意的结果。

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