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Co、N 共掺杂多孔碳基纳米酶作为氧化酶模拟物用于荧光和比色法检测丁酰胆碱酯酶活性。

Co, N co-doped porous carbon-based nanozyme as an oxidase mimic for fluorescence and colorimetric biosensing of butyrylcholinesterase activity.

机构信息

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

出版信息

Mikrochim Acta. 2022 Sep;189(9):363. doi: 10.1007/s00604-022-05446-8. Epub 2022 Aug 31.

DOI:10.1007/s00604-022-05446-8
PMID:36044087
Abstract

A Co, N co-doped porous carbon-based nanozyme (Co-N-C nanozyme) has been fabricated. Taking advantages of the excellent oxidase catalytic activity and significant stability of Co-N-C nanozyme, we propose a fluorescence and colorimetric system based on Co-N-C nanozyme and red-emitting carbon quantum dots (RCDs) for butyrylcholinesterase (BChE) sensing. As the chromogenic substrate 3,3',5,5'-tetramethylbenzidine (TMB) was catalyzed and oxidized by Co-N-C nanozyme, the generated oxTMB had a new absorption peak at 652 nm, which resulted in the significant quenching of the fluorescence of the carbon quantum dots at 610 nm. Under the catalysis of BChE, thiocholine was generated from the hydrolysis of S-butyrylthiocholine iodide (BTCh), and the as-generated thiocholine effectively inhibited the oxidation of TMB catalyzed by Co-N-C nanozyme, leading to a decrease of the absorption of oxTMB at 652 nm and effective fluorescence recovery of RCDs. By measuring the absorbance of produced oxTMB at 652 nm and the fluorescence of RCDs at 610 nm, the fluorescence and colorimetric system both exhibited an outstanding linear response to the activity of BChE in the range 0.5 to 40 U L, with a detection limit of 0.16 U L and 0.21 U L, respectively. Furthermore, this established dual-channel biosensing strategy has been successfully applied to the determination of BChE in human serum samples. The present work has effectively expanded the development and application of nanozyme in biosensing.

摘要

已制备出 Co、N 共掺杂多孔碳基纳米酶(Co-N-C 纳米酶)。利用 Co-N-C 纳米酶优异的过氧化物酶催化活性和显著的稳定性,我们提出了一种基于 Co-N-C 纳米酶和红色发射碳量子点(RCDs)的荧光和比色系统,用于检测丁酰胆碱酯酶(BChE)。作为显色底物 3,3',5,5'-四甲基联苯胺(TMB)被 Co-N-C 纳米酶催化和氧化,生成的 oxTMB 在 652nm 处具有新的吸收峰,导致碳量子点在 610nm 处的荧光显著猝灭。在 BChE 的催化下,硫代胆碱从 S-丁酰硫代胆碱碘化物(BTCh)的水解中生成,生成的硫代胆碱有效地抑制了 Co-N-C 纳米酶催化的 TMB 氧化,导致 oxTMB 在 652nm 处的吸收减少和 RCDs 的荧光有效恢复。通过测量生成的 oxTMB 在 652nm 处的吸光度和 RCDs 在 610nm 处的荧光,可以看出荧光和比色系统对 BChE 的活性在 0.5 至 40U/L 的范围内均表现出出色的线性响应,检测限分别为 0.16U/L 和 0.21U/L。此外,该双通道生物传感策略已成功应用于人血清样品中 BChE 的测定。本工作有效地拓展了纳米酶在生物传感中的开发和应用。

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