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用于食品样品中过滤富集和超灵敏检测的纳米酶催化比色微流控免疫传感器

Nanozyme-Catalyzed Colorimetric Microfluidic Immunosensor for the Filtration Enrichment and Ultrasensitive Detection of in Food Samples.

作者信息

Cheng Xiaodan, Chen Hong, Li Weijia, Tu Zhijie, Wang Yunxiang, Wei Hongjuan, Wang Shengqi, Liu Liyan, Rong Zhen

机构信息

Bioinformatics Center of AMMS, Beijing 100850, P. R. China.

State Key Laboratory of Kidney Diseases, Beijing 100853, P. R. China.

出版信息

Anal Chem. 2025 Apr 1;97(12):6454-6463. doi: 10.1021/acs.analchem.4c05607. Epub 2025 Mar 5.

Abstract

Rapid screening of foodborne pathogens is crucial to prevent food poisoning. In this study, we proposed a nanozyme-catalyzed colorimetric microfluidic immunosensor (Nano-CMI) for the filtration enrichment and ultrasensitive detection of in complex matrices. Gold-core porous platinum shell nanopompoms (Au@Pt nanopompoms) were synthesized with excellent peroxidase-like activity to oxidize 3,3',5,5'-tetramethylbenzidine with significant color change. The Au@Pt nanopompoms demonstrated a large reaction area, superior catalytic property, and good stability. The microfluidic chip used in the Nano-CMI was designed based on the size disparities among , Au@Pt nanopompoms, and the pore sizes of filters I and II. Thus, a biosensor containing pretreatment, incubation, enrichment, and detection of four-in-one functions was established and performed under the drive of a medical plastic syringe. This biosensor can accomplish ultrasensitive detection of with a limit of detection as low as 9 cfu/mL within 20 min, which makes it suitable for point-of-care testing. The proposed Nano-CMI also possessed high specificity and good repeatability (RSD < 2.1%) and can thus be applied directly to the analysis of real food samples, suggesting its great potential for practical application in the food safety field.

摘要

快速筛查食源性病原体对于预防食物中毒至关重要。在本研究中,我们提出了一种纳米酶催化比色微流控免疫传感器(Nano-CMI),用于在复杂基质中对[具体病原体未提及]进行过滤富集和超灵敏检测。合成了具有优异类过氧化物酶活性的金核多孔铂壳纳米绒球(Au@Pt纳米绒球),以氧化3,3',5,5'-四甲基联苯胺并产生显著的颜色变化。Au@Pt纳米绒球具有较大的反应面积、优异的催化性能和良好的稳定性。Nano-CMI中使用的微流控芯片是根据[具体病原体未提及]、Au@Pt纳米绒球以及过滤器I和II的孔径之间的尺寸差异设计的。因此,建立了一种具有预处理、孵育、富集和检测四合一功能的生物传感器,并在医用塑料注射器的驱动下运行。这种生物传感器能够在20分钟内完成对[具体病原体未提及]的超灵敏检测,检测限低至9 cfu/mL,使其适用于即时检测。所提出的Nano-CMI还具有高特异性和良好的重复性(相对标准偏差<2.1%),因此可以直接应用于实际食品样品的分析,表明其在食品安全领域具有巨大的实际应用潜力。

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