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MIP-based solid phase extraction cartridges combined with MIP-based sensors for the detection of microcystin-LR

机译:基于MIP的固相萃取柱与基于MIP的传感器结合使用,可检测微囊藻毒素-LR

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摘要

Microsystin-LR is one of the most widespread and dangerous toxins produced by the freshwater Cyanobacteria. The contamination of water supplies with microcystin-LR has been reported in several areas around the world and the development of an easy-to-use, rapid, robust and inexpensive sensor for this toxin is urgently required. In this work an artificial receptor for microcystin-LR was synthesised using the technique of molecular imprinting. The composition of the molecularly imprinted polymer (MIP) was optimised using computer modelling. The synthesised polymer was used both as a material for solid-phase extraction (SPE) and as a sensing element in a piezoelectric sensor. Using the combination of SPE followed by detection with a piezoelectric sensor the minimum detectable amount of toxin was 0.35 nM. The use of MIP-SPE provided up to 1000 fold preconcentration, which was more than sufficient for achieving the required detection limit for microcystin-LR in drinking water (I nM). This work is the first example where the same MIP receptor has been used successfully for both SPE and the corresponding sensor. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 32]
机译:Microsystin-LR是淡水蓝细菌产生的最广泛和最危险的毒素之一。微囊藻毒素-LR污染了水的供应,在世界各地都有报道,因此迫切需要开发一种易于使用,快速,耐用且价格便宜的毒素传感器。在这项工作中,使用分子印迹技术合成了微囊藻毒素-LR的人工受体。使用计算机建模优化了分子印迹聚合物(MIP)的组成。合成的聚合物既用作固相萃取(SPE)的材料,又用作压电传感器中的传感元件。使用SPE的组合,然后使用压电传感器进行检测,毒素的最小可检测量为0.35 nM。 MIP-SPE的使用可提供高达1000倍的预浓缩,足以满足饮用水中微囊藻毒素LR的检测限(I nM)。这项工作是第一个实例,其中相同的MIP受体已成功用于SPE和相应的传感器。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:32]

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