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Rapid detection and quantification of the marine toxic algae, Alexandrium minutum, using a super-paramagnetic immunochromatographic strip test

机译:快速检测和定量海洋毒性藻类,亚历山大腺小植物,使用超顺磁性免疫色素剥离条试验

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摘要

The dinoflagellates of Alexandrium genus are known to be producers of paralytic shellfish toxins that regularly impact the shellfish aquaculture industry and fisheries. Accurate detection of Alexandrium including A. minutum is crucial for environmental monitoring and sanitary issues. In this study, we firstly developed a quantitative lateral flow immunoassay (LFIA) using super-paramagnetic nanobeads for A. minutum whole cells. This dipstick assay relies on two distinct monoclonal antibodies used in a sandwich format and directed against surface antigens of this organism. No sample preparation is required. Either frozen or live cells can be detected and quantified. The specificity and sensitivity are assessed by using phytoplankton culture and field samples spiked with a known amount of cultured A. minutum cells. This LFIA is shown to be highly specific for A. minutum and able to detect reproducibly 105 cells/L within 30 min. The test is applied to environmental samples already characterized by light microscopy counting. No significant difference is observed between the cell densities obtained by these two methods. This handy super-paramagnetic lateral flow immnunoassay biosensor can greatly assist water quality monitoring programs as well as ecological research.
机译:已知亚历山大属属的胺氨基葡萄球菌是经常影响贝类水产养殖工业和渔业的麻痹性贝类毒素的生产者。准确地检测亚历山大山寨,包括A. minutum对环境监测和卫生问题至关重要。在这项研究中,我们首先使用针对细胞的超级顺磁纳米形式开发了定量横向流动免疫测定(LFIA)。这种Dipstick测定依赖于夹层形式使用的两种不同的单克隆抗体,并针对该生物体的表面抗原。不需要样品制备。可以检测和量化冷冻或活细胞。通过使用用已知量的培养A培养的A.小植物细胞来评估特异性和敏感性。该LFIA显示出对Na患者的高度特异性,并且能够在30分钟内检测可重复的105个细胞/ 1。测试应用于已经表征的光学显微镜计数的环境样本。通过这两种方法获得的细胞密度之间没有观察到显着差异。这款方便的超顺磁横向流动ImmnoAssay生物传感器可以极大地帮助水质监测计划以及生态研究。

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