Department of Biotechnology, Lund University, Box 124, SE-22100 Lund, Sweden.
Department of Biological Sciences and Biotechnology, Botswana International University of Science and Technology, Private Bag 16, Plot 10071, Palapye, Botswana.
Sensors (Basel). 2017 Jul 16;17(7):1639. doi: 10.3390/s17071639.
An amperometric immunoanalysis system based on monoclonal antibodies immobilized on Sepharose beads and packed into a micro-immunocolumn was developed for the quantification of microcystin-LR. Microcystin-LR (MCLR) was used as a reference microcystin variant. Inside the immunocolumn, free microcystins and microcystin-horseradish peroxidase (tracer) were sequentially captured by the immobilized antibodies, and the detection was performed electrochemically using Super AquaBlue ELISA substrate 2,2'-azinobis(3-ethylbenzothiazoline-sulfonic acid) (ABTS). The ABTS generated by enzymatic oxidation of ABTS was electrochemically determined at a carbon working electrode by applying a reduction potential set at 0.4 V versus Ag/AgCl reference electrode. The peak current intensity was inversely proportional to the amount of analyte bound to the immunocolumn. The amperometric flow-ELISA system, which was automatically controlled through the CapSenze (Lund, Sweden) computer software, enabled determination of MCLR as low as 0.01 µg/L. The assay time was very short (20 min for one assay cycle). In addition, the electrochemical signals were not significantly affected by possible interferences which could be present in the real samples. Along with the simplicity of automation, this makes the developed method a promising tool for use in water quality assessment.
建立了一种基于固定在琼脂糖珠上的单克隆抗体的微免疫柱安培免疫分析系统,用于微囊藻毒素-LR 的定量检测。微囊藻毒素-LR(MCLR)被用作参考微囊藻毒素变体。在免疫柱内,游离的微囊藻毒素和微囊藻辣根过氧化物酶(示踪剂)被固定化抗体依次捕获,并使用 Super AquaBlue ELISA 底物 2,2'-联氮双(3-乙基苯并噻唑啉-6-磺酸)(ABTS)电化学检测。ABTS 通过 ABTS 的酶促氧化生成,在工作碳电极上通过施加相对于 Ag/AgCl 参比电极设定为 0.4 V 的还原电势进行电化学测定。峰电流强度与结合到免疫柱上的分析物的量成反比。通过 CapSenze(瑞典隆德)计算机软件自动控制的安培流动 ELISA 系统,能够检测到低至 0.01 µg/L 的 MCLR。分析时间非常短(一个分析周期为 20 分钟)。此外,电化学信号不受实际样品中可能存在的干扰的显著影响。除了自动化的简单性之外,这使得所开发的方法成为水质评估中一种很有前途的工具。