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基于纳米酶的灵敏比率荧光检测平台用于检测葡萄糖。

Nanozyme-based sensitive ratiometric fluorescence detection platform for glucose.

机构信息

Department of Analytical Chemistry, College of Chemistry, Jilin University, Changchun, 130012, PR China.

出版信息

Anal Chim Acta. 2022 Jul 11;1216:339993. doi: 10.1016/j.aca.2022.339993. Epub 2022 May 30.

Abstract

Development and application of carbon-based nanozymes are attracting wide interest in recent years. Abnormal glucose level can be threat to human health. Sensitive and accurate sensing methods for glucose are still of great urgency. In this work, we constructed a sensitive nanozyme-based ratiometric fluorescence sensing platform for glucose. The sensing system composed of copper-doped carbon-based nanozyme (CuAA) with superb peroxidase-like activity and Mg/N doped carbon quantum dots (Mg-N-CQDs) with distinguished fluorescence property. Efficient tandem catalysis of glucose oxidase (Glu Ox) and CuAA, and inner-filter effect (IFE) between 2, 3-diaminophenazine (DAP) and Mg-N-CQDs played crucial roles in this sensing system. The oxidization of glucose was catalyzed by Glu Ox firstly to produce HO. In the presence of HO, fluorescent DAP was formed from non-fluorescent substrate o-phenylenediamine (OPD) with assistance of CuAA, resulting in generation of emission at 558 nm. Meanwhile, the emission at 444 nm from Mg-N-CQDs was quenched efficiently by DAP through IFE. The ratiometric fluorescence signal I/I increased linearly with glucose concentration in the scope of 2-400 μmol L, the limit of detection (LOD) was 1.56 μmol L. It was also practicable to apply the method to the determination of glucose in human serum, satisfactory recoveries and RSDs were acquired.

摘要

近年来,基于碳的纳米酶的开发和应用引起了广泛的关注。异常的葡萄糖水平会威胁到人类健康。因此,对葡萄糖的灵敏和准确的传感方法仍然非常紧迫。在这项工作中,我们构建了一种基于纳米酶的灵敏比率荧光传感平台用于检测葡萄糖。该传感系统由具有卓越过氧化物酶样活性的铜掺杂碳基纳米酶 (CuAA) 和具有独特荧光性质的 Mg/N 掺杂碳量子点 (Mg-N-CQDs) 组成。葡萄糖氧化酶 (Glu Ox) 和 CuAA 的高效串联催化以及 2,3-二氨基吩嗪 (DAP) 和 Mg-N-CQDs 之间的内滤效应 (IFE) 在该传感系统中起着至关重要的作用。首先,葡萄糖被 Glu Ox 催化氧化生成 HO。在 HO 的存在下,非荧光底物邻苯二胺 (OPD) 在 CuAA 的协助下转化为荧光 DAP,从而在 558nm 处产生发射。同时,DAP 通过 IFE 有效地猝灭了来自 Mg-N-CQDs 的在 444nm 处的发射。比率荧光信号 I/I 与葡萄糖浓度在 2-400μmol·L 的范围内呈线性关系,检测限 (LOD) 为 1.56μmol·L。该方法还可用于测定人血清中的葡萄糖,获得了令人满意的回收率和 RSD。

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