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利用葡萄糖作为中间桥接信号分子,使用便携式血糖仪现场、便捷地检测大米中的赭曲霉毒素 A。

Taking glucose as intermediate bridge-signal-molecule for on-site and convenient detection of ochratoxin A in rice with portable glucose meter.

机构信息

Engineering Research Center of Bio-process, MOE, School of Food and Biological Engineering, Intelligent Manufacturing Institute, Hefei University of Technology, Hefei 230009, China; Anhui Province Institute of Product Quality Supervision & Inspection, Hefei 230051, China.

Anhui Province Institute of Product Quality Supervision & Inspection, Hefei 230051, China.

出版信息

Food Chem. 2023 Jan 30;400:134007. doi: 10.1016/j.foodchem.2022.134007. Epub 2022 Aug 24.

Abstract

On-site screening of biotoxins is of great importance for food safety. A new electrochemical-biosensing strategy was constructed for ochratoxin A (OTA) detection by direct using ready-made commercial portable-glucose-meter (PGM). Aptamer against OTA was adopted as the recognition probe and pre-immobilized onto the sensing interface. The complementary biotin-modified probe was further decorated by hybridization. Biotinylated invertase was further introduced onto the sensing system with streptavidin, which also acted as the signal amplification unit. The invertase, which was depended on the amount of OTA, produced the glucose from sucrose in the sensing solution. The glucose could be directly and conveniently measured with PGM. Quantitative analysis of OTA was achieved with a linear range from 0.5 ng/mL to 10 ng/mL and detection limit of 0.45 ng/mL. Of significance, it has been successfully applied for OTA analysis in rice with satisfied recoveries. This unique PGM-based electrochemical platform reveals prospective potential in food safety monitoring.

摘要

现场筛选生物毒素对于食品安全非常重要。本研究构建了一种新的电化学生物传感策略,用于直接使用现成的商业便携式血糖仪(PGM)检测赭曲霉毒素 A(OTA)。OTA 的适配体被用作识别探针,并预先固定在传感界面上。互补的生物素修饰探针通过杂交进一步修饰。生物素化的蔗糖酶通过链霉亲和素进一步引入传感系统,链霉亲和素也作为信号放大单元。依赖于 OTA 量的蔗糖酶从传感溶液中的蔗糖中产生葡萄糖。葡萄糖可以用 PGM 直接、方便地测量。OTA 的定量分析具有从 0.5ng/mL 到 10ng/mL 的线性范围和 0.45ng/mL 的检测限。值得注意的是,它已成功应用于大米中 OTA 的分析,回收率令人满意。这种独特的基于 PGM 的电化学平台在食品安全监测方面具有广阔的应用前景。

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