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一种基于 SERS 的灵敏检测技术,可准确检测食源性病原体,无干扰。

A sensitive SERS-based assay technique for accurate detection of foodborne pathogens without interference.

机构信息

School of Pharmacy, Xinyang Agriculture and Forestry University, Xinyang 464007, P.R. China.

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, P. R. China.

出版信息

Anal Methods. 2024 Nov 21;16(45):7683-7688. doi: 10.1039/d4ay01555j.

Abstract

The accurate and sensitive detection of foodborne pathogens is critical for timely food quality supervision and human health. To address this issue, herein, we developed a simple and novel surface-enhanced Raman scattering (SERS) assay using -mercaptobenzoic acid (MBN)-modified gold nanoparticles (Au NPs) and magnetic beads for interference-free detection of (). This assay technique cleverly reduced silver ions (Ag) on the surface of (bacteria@Ag NPs), and the functionalized magnetic beads (capture probes) captured and enriched bacteria@Ag NPs, forming the structure of the capture probes-bacteria@Ag NPs. Then, the capture probes-bacteria@Ag NPs were dissolved in the acidic medium, and the Ag NPs on the surface of was converted to Ag again. Due to the special coordination between Ag and MBN-modified Au NPs (functionalized Au NPs), the SERS intensity of MBN exhibited a positive correlation with the concentration, and the SERS detection assay of was established. The signal of the functionalized Au NPs located at 2228 cm perfectly avoided the spectral overlap with coexisting materials in the Raman fingerprint region, which ensured the accuracy of the technique. The controlled aggregation of the functionalized Au NPs ensured the reproducibility and reliability of the detection system; the emergence of MBs greatly reduced the reaction time and made sure the operation was rapid, simple and portable. The limit of detection (LOD) for was as low as 10 cfu mL, and the detection assay was successfully applied for the detection of in bottled water and milk. As a sensitive and accurate analytical technique for the detection of pathogens, this SERS-based method has great potential to be applied in the field of food safety.

摘要

准确、灵敏地检测食源性病原体对于及时的食品安全监管和人类健康至关重要。针对这一问题,本研究开发了一种简单新颖的表面增强拉曼散射(SERS)分析方法,使用巯基苯甲酸(MBN)修饰的金纳米粒子(Au NPs)和磁性珠进行不受干扰的检测。该检测技术巧妙地减少了(细菌@Ag NPs)表面的银离子(Ag),功能化的磁性珠(捕获探针)捕获并富集了细菌@Ag NPs,形成了捕获探针-细菌@Ag NPs 的结构。然后,将捕获探针-细菌@Ag NPs 溶解在酸性介质中,表面的 Ag NPs 再次转化为 Ag。由于 Ag 与 MBN 修饰的 Au NPs(功能化 Au NPs)之间的特殊配位作用,MBN 的 SERS 强度与浓度呈正相关,从而建立了检测的 SERS 分析方法。位于 2228 cm 处的功能化 Au NPs 的信号与拉曼指纹区共存物质的光谱重叠完美避免,保证了技术的准确性。功能化 Au NPs 的受控聚集确保了检测系统的重现性和可靠性;MBs 的出现大大缩短了反应时间,使操作快速、简单、便携。对于的检测限(LOD)低至 10 cfu mL,并且该检测方法成功应用于瓶装水和牛奶中 的检测。作为一种用于检测病原体的灵敏且准确的分析技术,基于 SERS 的方法在食品安全领域具有很大的应用潜力。

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