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On-chip sample preparation and analyte quantification using a microfluidic aqueous two-phase extraction coupled with an immunoassay

机译:芯片上样品制备和分析物定量分析,采用微流体水相两相萃取和免疫分析

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Immunoassays are fast and sensitive techniques for analyte quantification, and their use in point-of-care devices for medical, environmental, and food safety applications has potential benefits of cost, portability, and multiplexing. However, immunoassays are often affected by matrix interference effects, requiring the use of complex laboratory extraction and concentration procedures in order to achieve the required sensitivity. In this paper we propose an integrated microfluidic device for the simultaneous matrix clean-up, concentration and detection. This device consists of two modules in series, the first performing an aqueous two-phase extraction (ATPE) for matrix extraction and analyte pre-concentration, and the second an immunoassay for quantification. The model analyte was the mycotoxin ochratoxin A (OTA) in a wine matrix. Using this strategy, a limit of detection (LoD) of 0.26 ng mL~(-1) was obtained for red wine spiked with OTA, well below the regulatory limit for OTA in wines of 2 ng mL~(-1) set by the European Union. Furthermore, the linear response on the logarithmic concentration scale was observed to span 3 orders of magnitude (0.1-100 ng mL~(-1)). These results are comparable to those obtained for the quantification of OTA in plain buffer without an integrated ATPE (LoD = 0.15 ng mL~(-1)). The proposed method was also found to provide similar results for markedly different matrices, such as red and white wines. This novel approach based on aqueous two-phase systems can help the development of point-of-care devices that can directly deal with real samples in complex matrices without the need for extra extraction processes and equipment.
机译:免疫分析是用于分析物定量的快速灵敏技术,它们在医疗,环境和食品安全应用的即时医疗设备中使用具有成本,便携性和多路复用等潜在优势。但是,免疫测定法通常会受到基质干扰作用的影响,需要使用复杂的实验室提取和浓缩程序才能达到所需的灵敏度。在本文中,我们提出了一种用于基质同时净化,浓缩和检测的集成微流控设备。该设备由两个串联的模块组成,第一个模块执行水相两相萃取(ATPE)用于基质萃取和分析物预浓缩,第二个模块用于定量免疫分析。模型分析物是酒基质中的霉菌毒素曲霉毒素A(OTA)。使用此策略,加标OTA的红酒的检出限(LoD)为0.26 ng mL〜(-1),远低于由OTA设定的2 ng mL〜(-1)酒中OTA的监管限值。欧洲联盟。此外,在对数浓度标度上的线性响应跨越了三个数量级(0.1-100 ng mL〜(-1))。这些结果与没有集成ATPE的普通缓冲液中OTA的定量结果相当(LoD = 0.15 ng mL〜(-1))。还发现,对于明显不同的基质(例如红葡萄酒和白葡萄酒),所提出的方法可以提供相似的结果。这种基于水相两相系统的新颖方法可以帮助开发即时点设备,这些设备可以直接处理复杂基质中的实际样品,而无需额外的提取过程和设备。

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