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利用具有抗污染探针连接体的厚度剪切模式声学适体传感器在牛奶中进行检测。

Detection in Milk Using a Thickness Shear Mode Acoustic Aptasensor with an Antifouling Probe Linker.

机构信息

Faculty of Mathematics, Physics and Informatics, Comenius University, Mlynská Dolina F1, 84248 Bratislava, Slovakia.

Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, ON M5S3H6, Canada.

出版信息

Biosensors (Basel). 2023 Jun 3;13(6):614. doi: 10.3390/bios13060614.

Abstract

Contamination of food by pathogens can pose a serious risk to health. Therefore, monitoring for the presence of pathogens is critical to identify and regulate microbiological contamination of food. In this work, an aptasensor based on a thickness shear mode acoustic method (TSM) with dissipation monitoring was developed to detect and quantify directly in whole UHT cow's milk. The frequency variation and dissipation data demonstrated the correct immobilization of the components. The analysis of viscoelastic properties suggests that DNA aptamers bind to the surface in a non-dense manner, which favors the binding with bacteria. The aptasensor demonstrated high sensitivity and was able to detect in milk with a 33 CFU/mL limit of detection. Analysis was successful in milk due to the sensor's antifouling properties, which is based on 3-dithiothreitol propanoic acid (DTT) antifouling thiol linker. Compared to bare and modified (dithiothreitol (DTT), 11-mercaptoundecanoic acid (MUA), and 1-undecanethiol (UDT)) quartz crystals, the sensitivity of the sensor's antifouling in milk improved by about 82-96%. The excellent sensitivity and ability to detect and quantify in whole UHT cow's milk demonstrates that the system is applicable for rapid and efficient analysis of milk safety.

摘要

食源性致病菌污染会对健康造成严重威胁。因此,监测致病菌的存在对于识别和控制食品微生物污染至关重要。在这项工作中,开发了一种基于厚度剪切模式声学方法(TSM)和耗散监测的适体传感器,用于直接检测和定量全超高温(UHT)牛奶中的 。频率变化和耗散数据证明了各组件的正确固定化。粘弹性分析表明,DNA 适体以非密集的方式结合到表面上,这有利于与细菌的结合。该适体传感器具有高灵敏度,能够以 33 CFU/mL 的检测限检测牛奶中的 。由于传感器具有基于 3-巯基丙磺酸(DTT)的抗污硫醇链接的抗污特性,因此该传感器能够成功用于牛奶分析。与裸石英晶体和修饰(DTT、11-巯基十一酸(MUA)和 1-十一硫醇(UDT)相比,传感器在牛奶中的抗污灵敏度提高了约 82-96%。该系统在全超高温牛奶中具有出色的检测和定量 灵敏度,证明其适用于快速高效的牛奶安全分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f7d/10296631/6776ddff949e/biosensors-13-00614-g001.jpg

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