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具有增强荧光和双酶活性的铁掺杂聚合物点用于多功能生物测定

Iron-Doped Polymer Dots with Enhanced Fluorescence and Dual Enzyme Activity for Versatile Bioassays.

作者信息

Wu Donghui, Zhao Qilin, Zhang Bing, Tang Xianqing, Li Yushu, Sun Jian, Yang Xiurong

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, China.

School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei, Anhui 230026, China.

出版信息

Anal Chem. 2024 Feb 7. doi: 10.1021/acs.analchem.3c04514.

Abstract

Nanozymes with multiple functionalities endow biochemical sensing with more sensitive and efficient analytical performance by widening the sensing modes. Meanwhile, the target-oriented design of multifunctional nanozymes for certain biosensing remains challenging. Herein, a constructive strategy of doping iron into polymer dots (PDs) to achieve nanozymes with excellent oxidase-mimicking and peroxidase-mimicking activity is proposed. Compared with the Fe-free PDs prepared under the same mild condition, the Fe-doped PDs (Fe-PDs) exhibit greatly boosted fluorescence at 500 nm. While applying 3,3',5,5'-tetramethylbenzidine (TMB) as a chromogenic substrate, the fluorescence of the Fe-PDs can be further quenched by oxTMB due to the inner filter effect (IFE). Inspired by this, a simple but efficient colorimetric and fluorometric dual-mode sensing platform is developed for monitoring the reducing substances ascorbic acid (AA), α-glucosidase (α-Glu), and its inhibitors (AGIs). We believe that such multifunctional enzyme-mimic materials will provoke the exploration of multimode sensing strategy with strong practicality to serve as a versatile tool in biochemical sensing.

摘要

具有多种功能的纳米酶通过拓宽传感模式,赋予生化传感更灵敏、高效的分析性能。与此同时,针对特定生物传感的多功能纳米酶的靶向设计仍然具有挑战性。在此,提出了一种将铁掺杂到聚合物点(PDs)中以获得具有优异模拟氧化酶和模拟过氧化物酶活性的纳米酶的构建策略。与在相同温和条件下制备的无铁PDs相比,铁掺杂的PDs(Fe-PDs)在500nm处表现出大大增强的荧光。当使用3,3',5,5'-四甲基联苯胺(TMB)作为显色底物时,由于内滤效应(IFE),Fe-PDs的荧光可被氧化型TMB(oxTMB)进一步猝灭。受此启发,开发了一种简单而有效的比色和荧光双模式传感平台,用于监测还原物质抗坏血酸(AA)、α-葡萄糖苷酶(α-Glu)及其抑制剂(AGIs)。我们相信,这种多功能模拟酶材料将激发对具有强大实用性的多模式传感策略的探索,以作为生化传感中的一种通用工具。

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