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用于快速测定克伦特罗的集成微流控免疫分析法

Integrated microfluidic immunoassay for the rapid determination of clenbuterol.

作者信息

Kong Jing, Jiang Lei, Su Xiaoou, Qin Jianhua, Du Yuguang, Lin Bingcheng

机构信息

Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, China.

出版信息

Lab Chip. 2009 Jun 7;9(11):1541-7. doi: 10.1039/b818430e. Epub 2009 Mar 3.

Abstract

An integrated microfluidic immunoassay system was established for high throughput analysis of clenbuterol. This system consisted of an integrated microchip and a linear confocal laser induced fluorescence (LIF) scanner. The microchip was composed of three layers: a fluidic channel layer, a PDMS membrane layer and a pneumatic control layer. The multi-layer chip was integrated with 36 pneumatic micro-valves and multiple micro-pumps to realize the flexible reagent delivery, facilitating the automatic assays with less consumption of samples and reduced analysis time. The homemade LIF scanner was able to simultaneously detect multi-channels and provide the potential capability of high throughput assays. The performance of the system was demonstrated by the determination of clenbuterol, one of the most widely used beta-agonists. Under the optimal conditions, the linear range and the limit of detection of clenbuterol were 0 approximately 5.0 ng mL(-1) and 0.088 ng mL(-1), respectively. The recovery rates determined with pig urine samples of 1.0 ng mL(-1) and 2.0 ng mL(-1) were 98.74% and 102.51% (n = 3), respectively. The total detection time was less than 30 min. The system had the potential application for rapid detection of multiple beta-agonists in clinical, pharmaceutical and chemical analyses.

摘要

建立了一种用于克伦特罗高通量分析的集成微流控免疫分析系统。该系统由一个集成微芯片和一台线性共聚焦激光诱导荧光(LIF)扫描仪组成。微芯片由三层组成:流体通道层、聚二甲基硅氧烷(PDMS)膜层和气动控制层。多层芯片集成了36个气动微阀和多个微泵,以实现灵活的试剂输送,便于自动检测,减少样品消耗并缩短分析时间。自制的LIF扫描仪能够同时检测多个通道,并具备高通量检测的潜在能力。通过测定最广泛使用的β-激动剂之一克伦特罗来证明该系统的性能。在最佳条件下,克伦特罗的线性范围和检测限分别为0至5.0 ng mL(-1)和0.088 ng mL(-1)。用1.0 ng mL(-1)和2.0 ng mL(-1)的猪尿样品测定的回收率分别为98.74%和102.51%(n = 3)。总检测时间少于30分钟。该系统在临床、制药和化学分析中对多种β-激动剂的快速检测具有潜在应用价值。

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