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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 >Portable sensing system based on electrochemical impedance spectroscopy for the simultaneous quantification of free and total microcystin-LR in freshwaters
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Portable sensing system based on electrochemical impedance spectroscopy for the simultaneous quantification of free and total microcystin-LR in freshwaters

机译:基于电化学阻抗光谱的便携式传感系统,用于在淡水中同时定量自由和总微囊藻-LR的

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摘要

Microcystins are the most worldwide extended and common toxins produced by cyanobacteria in freshwater. Microcystin-leucine arginine (MC-LR), associated with the most toxic incidents involving microcystins, are within the cyanobacteria (intracellular) until released into the surrounding waters (extracellular) during cell lysis. Therefore, the relationship between intracellular and extracellular cyanotoxins will allow a comprehensive risk of cyanobacteria-containing waters, preventing disease and improving human safety. In this work, we present the development of a novel portable microfluidic sensing platform for the simultaneous detection of free (extracellular) and total MC-LR (intracellular and extracellular). The integrated system contains the sample processing and detection modules capable of performing the chemical lysis, filtration, sample mixing with antibodies, and electrochemical detection of MC-LR based on an indirect strategy. The performance of the immunosensors was evaluated by electrochemical impedance spectroscopy, showing a linear dynamic range between 3.3 x 10(-4) and 10(-7) g L-1 and a limit of detection of 5.7 x 10(-7) g L-1. The results demonstrate the potential of the developed portable biosensor platform and its suitable application for the analysis of MC-LR at regulated levels for drinking water. Finally, the integrated system was able to simultaneously detect the free and total MC-LR on a Microcystis aeruginosa culture. To the best of our knowledge this is the first described system that can differentiate between intracellular and extracellular concentration of MC-LR. This novel electrochemical sensing platform avoids the multiple processing steps typically needed for standard MC-LR analysis in the laboratory and provides an early warning system for MC-LR remote monitoring in water.
机译:微囊藻毒素是淡水中的蓝藻生产的最全球延伸和常见的毒素。与涉及微囊藻毒素的最有毒事故的微囊藻苷 - 亮氨酸精氨酸(MC-LR)位于Cyanobacteria(细胞内)内,直至在细胞裂解期间释放到周围水中(细胞外)。因此,细胞内和细胞外毒素之间的关系将允许含有蓝藻的水域的综合风险,预防疾病并提高人性安全性。在这项工作中,我们展示了一种新型便携式微流体传感平台,用于同时检测自由(细胞外)和全MC-LR(细胞内和细胞外)。集成系统包含能够进行化学裂解,过滤,与抗体混合的样品处理和检测模块,以及基于间接策略的MC-LR的电化学检测。通过电化学阻抗光谱评估免疫传感器的性能,显示3.3×10(4)和10(-7)G L-1之间的线性动态范围和5.7×10(-7)GL的检测限。 -1。结果证明了开发的便携式生物传感器平台的潜力及其适当应用于饮用水中规定水平的MC-LR的应用。最后,集成系统能够在微囊杆菌铜绿假单胞菌培养上同时检测自由和总MC-LR。据我们所知,这是第一个可以区分细胞内和细胞外浓度的MC-LR的系统。该新型电化学传感平台避免了实验室中标准MC-LR分析所需的多种处理步骤,并为MC-LR远程监测提供预警系统。

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