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基于胆碱氧化酶-过氧化物酶酶促级联反应的电化学免疫分析

Electrochemical immunoassay based on choline oxidase-peroxidase enzymatic cascade.

作者信息

Yan Kai, Nandhakumar Ponnusamy, Bhatia Aman, Lee Nam-Sihk, Yoon Young Ho, Yang Haesik

机构信息

Department of Chemistry and Chemistry Institute for Functional Materials, Pusan National University, Busan, 46241, South Korea.

EONE Laboratories, Incheon, 22014, South Korea.

出版信息

Biosens Bioelectron. 2021 Jan 1;171:112727. doi: 10.1016/j.bios.2020.112727. Epub 2020 Oct 13.

Abstract

Horseradish peroxidase (HRP)-based electrochemical immunoassays are considered promising techniques for point-of-care clinical diagnostics, but the necessary addition of unstable HO in the enzymatic system may hinder their practical application. Although glucose oxidase (GOx) has been widely explored for in situ generation of HO in HRP-based immunoassay, the GOx-catalyzed reduction of oxidized peroxidase substrate may limit the immunosensing performance. Here, we report a sensitive electrochemical immunosensor based on a choline oxidase (ChOx)-HRP cascade reaction. In this design, ChOx catalyzes the oxidation of choline, during which HO is generated in situ and thus oxidizes acetaminophen (APAP) in the presence of HRP. The electrochemical behavior of APAP in the ChOx-HRP cascade was compared with that of the commonly used GOx-HRP cascade, which confirmed that ChOx could be a superior preceding enzyme for sensitive immunoassay based on the bienzymatic cascade. The developed ChOx-HRP cascade was also further explored for a sandwich-type electrochemical immunoassay of parathyroid hormone in artificial and clinical serum. The calculated detection limit was ~3 pg/mL, indicating that the ChOx-HRP cascade is especially promising for highly sensitive electrochemical immunoassays when APAP is used as the peroxidase substrate.

摘要

基于辣根过氧化物酶(HRP)的电化学免疫分析被认为是即时临床诊断的有前景的技术,但酶系统中不稳定的H₂O₂的必要添加可能会阻碍其实际应用。尽管葡萄糖氧化酶(GOx)已被广泛用于基于HRP的免疫分析中原位生成H₂O₂,但GOx催化的氧化过氧化物酶底物的还原可能会限制免疫传感性能。在此,我们报道了一种基于胆碱氧化酶(ChOx)-HRP级联反应的灵敏电化学免疫传感器。在该设计中,ChOx催化胆碱氧化,在此过程中原位生成H₂O₂,进而在HRP存在下氧化对乙酰氨基酚(APAP)。将ChOx-HRP级联反应中APAP的电化学行为与常用的GOx-HRP级联反应进行了比较,证实ChOx可能是基于双酶级联反应的灵敏免疫分析中更优的前序酶。所开发的ChOx-HRP级联反应还进一步用于甲状旁腺激素在人工血清和临床血清中的夹心型电化学免疫分析。计算得出的检测限约为3 pg/mL,表明当使用APAP作为过氧化物酶底物时,ChOx-HRP级联反应在高灵敏电化学免疫分析中特别有前景。

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