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基于等离子体超表面结合金纳米颗粒的分析平台用于超灵敏定量检测小分子

A Metasurface Plasmonic Analysis Platform Combined with Gold Nanoparticles for Ultrasensitive Quantitative Detection of Small Molecules.

机构信息

Hubei Provincial Institute for Food Supervision and Test, Wuhan 430075, China.

College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Biosensors (Basel). 2023 Jun 27;13(7):681. doi: 10.3390/bios13070681.

Abstract

Food safety related to drug residues in food has become a widespread public concern. Small-molecule drug residue analysis often relies on mass spectrometry, thin-layer chromatography, or enzyme-linked immunosorbent assays (ELISA). Some of these techniques have limited sensitivity and accuracy, while others are time-consuming, costly, and rely on specialized equipment that requires skilled operation. Therefore, the development of a sensitive, fast, and easy-to-operate biosensor could provide an accessible alternative to conventional small-molecule analysis. Here, we developed a nanocup array-enhanced metasurface plasmon resonance (MetaSPR) chip coupled with gold nanoparticles (AuNPs) (MSPRAN) to detect small molecules. As sulfamethazine drug residues in poultry eggs may cause health issues, we selected this as a model to evaluate the feasibility of using MSPRAN for small-molecule detection. The MSPRAN biosensor employed competitive immunoassay technology for sulfamethazine detection. The limit of detection was calculated as 73 pg/mL, with sensitivity approximately twice that of previously reported detection methods. Additionally, the recovery rate of the biosensor, tested in egg samples, was similar to that measured using ELISA. Overall, this newly developed MSPRAN biosensor platform for small-molecule detection provides fast and reliable results, facile operation, and is relatively cost-effective for application in food safety testing, environmental monitoring, or clinical diagnostics.

摘要

食品安全与食物中的药物残留有关,这已成为广泛的公众关注。小分子药物残留分析通常依赖于质谱、薄层色谱或酶联免疫吸附测定(ELISA)。其中一些技术的灵敏度和准确性有限,而其他技术则耗时、昂贵,并且依赖于需要熟练操作的专用设备。因此,开发一种灵敏、快速且易于操作的生物传感器可能是替代传统小分子分析的可行方法。在这里,我们开发了一种纳米杯阵列增强的介面等离子体共振(MetaSPR)芯片与金纳米颗粒(AuNPs)(MSPRAN)结合,用于检测小分子。由于禽蛋中的磺胺类药物残留可能会导致健康问题,我们选择磺胺类药物残留作为模型,以评估 MSPRAN 用于小分子检测的可行性。MSPRAN 生物传感器采用竞争免疫分析技术检测磺胺类药物。检测限计算为 73 pg/mL,灵敏度约为先前报道的检测方法的两倍。此外,在鸡蛋样品中测试的生物传感器的回收率与使用 ELISA 测量的回收率相似。总的来说,这种用于小分子检测的新型 MSPRAN 生物传感器平台提供了快速可靠的结果,易于操作,并且在食品安全测试、环境监测或临床诊断方面具有相对经济高效的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d5c/10377222/f37218ad2c43/biosensors-13-00681-g001.jpg

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