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利用静态磁驱动磁泳分离和双贵金属修饰磁性纳米珠对食源细菌进行一步比色免疫传感。

One-step colorimetric immunosensing of foodborne bacteria using static magnet driven magnetophoretic separation and dual noble metal decorated magnetic nanobeads.

作者信息

Ding Ying, Yuan Jing, Jin Nana, Yang Fengzhen, Jiang Fan, Wang Lei, Li Yanbin, Lin Jianhan

机构信息

Key Laboratory of Agricultural Information Acquisition Technology, Ministry of Agriculture and Rural Affairs, China Agricultural University, Beijing, 100083, China.

Department of Biological and Agricultural Engineering, University of Arkansas, Fayetteville, AR, 72701, USA.

出版信息

Anal Chim Acta. 2025 May 1;1349:343831. doi: 10.1016/j.aca.2025.343831. Epub 2025 Feb 21.

Abstract

BACKGROUND

Immunomagnetic separation is essential for screening pathogenic bacteria to prevent food poisoning. However, free immunomagnetic nanobeads (IMNBs) coexist with IMNB-bacteria conjugates (IBCs) after traditional immunomagnetic separation resulting in the infeasibility for IMNBs on IBCs to further act as signal label in bacterial detection. Although we have demonstrated that magnetophoretic separation at a high flowrate could separate IBCs from IMNBs, partial IMNBs were still found with IBCs due to chaotic flows and resulted in inevitable interferences. Thus, this study developed a new magnetophoretic separation strategy at a low flowrate under a static ring magnetic field for separating IBCs from IMNBs more thoroughly.

RESULTS

This new magnetophoretic separation strategy was verified for precise sorting of the commercial MNBs with the original wide range of 110-330 nm to obtain the uniform MNBs with a narrow range of 143-193 nm. The decoration of Pd and Pt nanoparticles onto the MNBs was demonstrated with no impact on their capture of target bacteria because they could capture over 90 % target bacteria. Under the optimal conditions, this immunosensor could quantitatively detect Salmonella from 3.4 × 10 to 3.4 × 10 CFU/mL in 40 min with a detection limit of 34 CFU/mL. Besides, this immunosensor had shown a good specificity to Salmonella and a good practicability for detection of Salmonella in the chicken samples.

SIGNIFICANCE

This immunosensor only needed one kind of antibody, making it much easier to be extended for other bacterial detection, and only required one-step immunoreaction, making the detection time much shorter, and employed magnetic nanobeads decorated with platinum and palladium nanoparticles, making the detection sensitivity much higher.

摘要

背景

免疫磁分离对于筛选病原菌以预防食物中毒至关重要。然而,传统免疫磁分离后,游离免疫磁纳米珠(IMNBs)与IMNB - 细菌结合物(IBCs)共存,导致IMNBs在IBCs上无法进一步作为细菌检测中的信号标记。尽管我们已经证明高流速下的磁泳分离可以将IBCs与IMNBs分离,但由于紊流,仍发现部分IMNBs与IBCs在一起,从而导致不可避免的干扰。因此,本研究开发了一种在静态环形磁场下低流速的新型磁泳分离策略,以更彻底地将IBCs与IMNBs分离。

结果

这种新型磁泳分离策略经过验证,可对原始范围为110 - 330 nm的商用MNBs进行精确分选,以获得范围狭窄的143 - 193 nm的均匀MNBs。已证明在MNBs上装饰钯和铂纳米颗粒对其捕获目标细菌没有影响,因为它们可以捕获超过90%的目标细菌。在最佳条件下,这种免疫传感器可以在40分钟内定量检测3.4×10至3.4×10 CFU/mL的沙门氏菌,检测限为34 CFU/mL。此外,这种免疫传感器对沙门氏菌显示出良好的特异性,并且在检测鸡肉样品中的沙门氏菌方面具有良好的实用性。

意义

这种免疫传感器仅需要一种抗体,使其更易于扩展用于其他细菌检测,并且仅需要一步免疫反应,使检测时间大大缩短,并且使用装饰有铂和钯纳米颗粒的磁性纳米珠,使检测灵敏度大大提高。

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