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Enzyme-Based Electrochemical Biosensors for Microfluidic Platforms to Detect Pharmaceutical Residues in Wastewater

机译:用于微流控平台的基于酶的电化学生物传感器,用于检测废水中的药物残留

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摘要

Emerging water pollutants such as pharmaceutical contaminants are suspected to induce adverse effects to human health. These molecules became worrisome due to their increasingly high concentrations in surface waters. Despite this alarming situation, available data about actual concentrations in the environment is rather scarce, as it is not commonly monitored or regulated. This is aggravated even further by the absence of portable and reliable methods for their determination in the field. A promising way to tackle these issues is the use of enzyme-based and miniaturized biosensors for their electrochemical detection. Here, we present an overview of the latest developments in amperometric microfluidic biosensors that include, modeling and multiphysics simulation, design, manufacture, testing, and operation methods. Different types of biosensors are described, highlighting those based on oxidases/peroxidases and the integration with microfluidic platforms. Finally, issues regarding the stability of the biosensors and the enzyme molecules are discussed, as well as the most relevant approaches to address these obstacles.
机译:怀疑诸如药物污染物之类的新兴水污染物会对人体健康产生不利影响。这些分子由于在地表水中的浓度越来越高而变得令人担忧。尽管存在这种令人震惊的情况,但是由于通常不对其进行监视或调节,因此有关环境中实际浓度的可用数据仍然很少。由于缺乏在现场进行确定的便携式可靠方法,这进一步加剧了这种情况。解决这些问题的一种有前途的方法是使用基于酶的小型生物传感器进行电化学检测。在这里,我们概述了安培微流生物传感器的最新发展,包括建模和多物理场仿真,设计,制造,测试和操作方法。描述了不同类型的生物传感器,重点介绍了基于氧化酶/过氧化物酶以及与微流体平台集成的生物传感器。最后,讨论了有关生物传感器和酶分子稳定性的问题,以及解决这些障碍的最相关方法。

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