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Development of a Novel Enhanced Biosensor System for Real-Time Monitoring of Fish Stress Using a Self-Assembled Monolayer

机译:一种新型增强的生物传感器系统,用于使用自组装单层进行鱼胁迫的实时监测

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摘要

Wireless biosensor systems were developed in our lab for monitoring blood glucose concentrations in fish as an indicator of fish stress. However, uniform immobilization of the enzyme on the surface of the electrode is difficult, so the sensor response is typically reduced at a range of high glucose concentrations during the stress monitoring. In this study, we attempted to enhance sensor response by using a self-assembled monolayer-immobilized enzyme. Glucose oxidase was immobilized on a working electrode modified with a self-assembled monolayer. The proposed biosensor showed a good correlation between the output current and the glucose concentration range of 10–3500 mg dL−1 under an optimized working condition. The dynamic measurement range of this newly developed sensor is significantly improved, especially over a high concentration range, which helps the sensor to achieve better performance in dramatic changes in the stress response of fish. In addition, we used biological samples from test fish and obtained a good correlation coefficient between the sensor output current and the glucose concentration using a conventional method. The proposed wireless biosensor system was also applied to monitor fish stress responses in real time through different stressors and to obtain some precise data that reflect real fish stress responses.
机译:在我们的实验室中开发了无线生物传感器系统,用于监测鱼中的血糖浓度作为鱼胁迫的指标。然而,难以在电极表面上固定酶的均匀固定,因此在应力监测期间通常在一系列高葡萄糖浓度下降低传感器响应。在这项研究中,我们试图通过使用自组装单层固定化酶来增强传感器响应。将葡萄糖氧化酶固定在用自组装单层改性的工作电极上。所提出的生物传感器在优化的工作条件下显示出输出电流与葡萄糖浓度范围为10-3500mg -1之间的良好相关性。该新开发的传感器的动态测量范围显着改善,特别是在高浓度范围内,这有助于传感器在鱼的应力响应中的巨大变化中实现更好的性能。此外,我们使用来自试验鱼的生物样品,并使用常规方法获得传感器输出电流与葡萄糖浓度之间的良好相关系数。拟议的无线生物传感器系统也应用于通过不同的压力源实时监测鱼应力响应,并获得反映真实鱼应激反应的一些精确数据。

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