首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Microchip electrophoresis based aptasensor for multiplexed detection of antibiotics in foods via a stir-bar assisted multi-arm junctions recycling for signal amplification
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Microchip electrophoresis based aptasensor for multiplexed detection of antibiotics in foods via a stir-bar assisted multi-arm junctions recycling for signal amplification

机译:基于微芯片电泳的Aptasensor,用于通过搅拌棒辅助多臂接合回收用于信号放大的食物中食物中的抗生素中的复用检测

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摘要

Microchip electrophoresis (MCE) was a good available method for high-throughput and rapid detecting chemical pollutants in food samples. However, many of the reported MCE assays involve complex design of microchip, laborious operation and poor universality which limited its promotion in multiple antibiotics' detection. Herein, a multiplexed aptasensor was developed based on a universal double-T type microchip to one-step and simultaneously detect several antibiotics within 3 min using chloramphenicol (CAP) and kanamycin (Kana) as representatives. Besides, a novel stir-bar assisted DNA multi-arm junctions recycling (MAJR) strategy was designed for transducing and amplifying the signal. The brief detection mechanism was as following: the added CAP and Kana can specifically react with their aptamer probes on the stir-bar and produce different single stranded DNA primer, respectively. Afterwards, the primers can trigger MAJR to form a lot of three-and four-arm DNA junctions corresponding to different targets. The DNA multi-arm junctions can be easily separated and detected by MCE for quantification. Moreover, the stir-bar can facilitate phase separation and obviously eliminate matrix interference in food. The assay was successfully applied in milk and fish samples, showing excellent selectivity and sensitivity with a detection limits of 0.52 pg mL(-1) CAP and 0.41 pg mL(-1) Kana (S/N = 3). Thus, the assay holds a great potential application for screening of antibiotics in food.
机译:微芯片电泳(MCE)是一种良好的高通量和快速检测食品中的化学污染物的良好方法。然而,许多报告的MCE测定涉及复杂的微芯片,费力,普遍性的普遍性的复杂设计,这限制了其在多种抗生素检测中的促进。这里,基于通用双T型微芯片开发多路复用的Aptasensor,以一步,并在3分钟内同时检测几种抗生素,使用氯霉素(帽)和卡那霉素(KanaMycin(Kana)作为代表。此外,设计了一种新型搅拌棒辅助DNA多臂连接回收(MAJR)策略,用于转换和放大信号。简要检测机制如下:添加的帽和卡纳可以在搅拌棒上与其适体探针具体反应,并分别产生不同的单链DNA引物。然后,引物可以触发Majr以形成与不同靶标对应的大量三和四臂DNA结。 DNA多臂连接点可以通过MCE容易地分离和检测,以进行定量。此外,搅拌棒可以促进相分离,明显消除食物中的基质干扰。该测定成功应用于牛奶和鱼类样品中,具有0.52pg ml(-1)帽的检测限和0.41pg ml(-1)kana(s / n = 3)的优异选择性和灵敏度。因此,测定占据食品中抗生素的巨大潜在应用。

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