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通过酶催化的荧光和比色双信号对映体识别:以氮掺杂硅量子点/银探针与β-D-葡萄糖氧化酶偶联检测葡萄糖对映体为例。

Fluorescent and Colorimetric Dual-signal Enantiomers Recognition via Enzyme Catalysis: The Case of Glucose Enantiomers Using Nitrogen-doped Silicon Quantum Dots/Silver Probe Coupled with β-D-Glucose Oxidase.

机构信息

School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang, 212013, China.

State Key Laboratory of Chemo/Biosensing and Chemometrics, Hunan University, Changsha, 410082, China.

出版信息

Anal Sci. 2021 Feb 10;37(2):275-281. doi: 10.2116/analsci.20P228. Epub 2020 Aug 28.

Abstract

Chiral enantiomer recognition is important but facing tough challenges in the direct quantitative determination for complex samples. In this work, via chosing nitrogen-doped silicon quantum dots (N-SiQD) as optical nanoprobe and constructing N-SiQD/silver (N-SiQD/Ag NPs) complex, β-D-GOx as model enzyme and glucose enantiomers as analytes, a fluorescent and colorimetric dual-signal chiral sensing strategy was proposed herein for chiral recognition based on specific enzyme-catalyzed reaction. N-SiQD can exhibit intense fluorescence, while it can be quenched by Ag NPs owing to the formation of N-SiQD/Ag NPs. In the presence of glucose isomer, D-glucose is catalytically hydrolyzed by β-D-GOx to form HO owing to the specific enzyme catalyzed reaction between D-glucose and β-D-GOx, and HO can etch Ag NPs from the N-SiQD/Ag NPs probe to change the solution color from brown to colorless and restore the N-SiQD fluorescence; while these phenomena cannot be caused by L-glucose, a dual-signal sensing method was thus constructed for recognizing glucose enantiomers. It is believed that the chiral enantiomers recognition strategy via enzyme catalysis has great application for selective and quantificational detection of enantiomers in the complex sample system.

摘要

手性对映体识别在直接定量测定复杂样品中非常重要,但面临着严峻的挑战。在这项工作中,通过选择氮掺杂硅量子点(N-SiQD)作为光学纳米探针,并构建 N-SiQD/银(N-SiQD/Ag NPs)复合物,以β-D-葡萄糖氧化酶(β-D-GOx)为模型酶和葡萄糖对映体为分析物,本文提出了一种基于特异性酶催化反应的荧光和比色双信号手性传感策略用于手性识别。N-SiQD 可以发出强烈的荧光,而由于 N-SiQD/Ag NPs 的形成,Ag NPs 可以猝灭其荧光。在葡萄糖异构酶存在的情况下,D-葡萄糖在β-D-GOx 的特异性酶催化作用下水解生成 HO,由于 D-葡萄糖和β-D-GOx 之间的特异性酶催化反应,HO 可以从 N-SiQD/Ag NPs 探针中蚀刻 Ag NPs,从而使溶液颜色从棕色变为无色,并恢复 N-SiQD 荧光;而 L-葡萄糖则不能引起这些现象,因此构建了一种双信号传感方法用于识别葡萄糖对映体。相信通过酶催化的手性对映体识别策略在手性对映体在复杂样品体系中的选择性和定量检测方面具有很大的应用前景。

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