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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Sensors for biosensors: a novel tandem monitoring in a droplet towards efficient screening of robust design and optimal operating conditions
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Sensors for biosensors: a novel tandem monitoring in a droplet towards efficient screening of robust design and optimal operating conditions

机译:生物传感器的传感器:在液滴中的新型串联监测,以有效筛选强大的设计和最佳操作条件

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摘要

Understanding the biorecognition and transduction mechanisms is a key aspect in the development of robust sensing technologies. Therefore, the design of tools and analytical approaches that could allow gaining a deeper insight into the bio- and electrochemical processes would significantly accelerate the progress in the field of biosensors. Herein, we present a novel effective strategy for biosensor design screening based on tandem monitoring of individual system parameters in a droplet. The developed tandem approach couples the simultaneous chronoamperometric characterization of biosensors in the presence of an analyte (glucose) together with dissolved oxygen monitoring using a luminescence-based optical oxygen microsensor. Remarkably, an optical sensor was applied for the first time to analyse the amperometric biosensor response and kinetics. Two types of multi-layer glucose biosensors (first generation) were chosen as a case study and were evaluated at various operating conditions using multi-analytical techniques. Moreover, specific protocols were developed for the detection of oxygen conversion rates, iron and membrane elution inside the multi-layer glucose biosensor system. The presented tandem monitoring approach allows one to identify and build-up the correlations between the critical operation conditions and system parameters affecting the overall biosensor response, its sensitivity and lifetime. Thus, based on the obtained experimental results a more favorable composition of Nafion membrane films and enzyme loadings for glucose biosensors were identified in a time-efficient way and allowed to explain an improved stability (up to 3 months) and linear detection range of glucose concentrations (up to 5 mM). Furthermore, the presented tandem monitoring approach can be readily adapted to other oxygen dependent types of biosensors either for simultaneous multiple substrate detection or as an efficient tool for biosensor design and operating condition screening.
机译:理解生物释认和转换机制是强健传感技术开发的关键方面。因此,工具和分析方法的设计可以允许进入生物和电化学过程更深入的洞察力将显着加速生物传感器领域的进展。这里,我们基于液滴中各个系统参数的串联监测来提出一种新的生物传感器设计筛选的有效策略。开发的串联方法在使用基于发光的光学氧微体系的情况下将分析物(葡萄糖)的存在于分析物(葡萄糖)的情况下与溶解的氧气监测一起致其同时计量率表征。值得注意的是,首次应用光学传感器以分析安培的生物传感器响应和动力学。选择两种类型的多层葡萄糖生物传感器(第一代)作为案例研究,并在各种操作条件下使用多分析技术进行评估。此外,开发了用于检测多层葡萄糖生物传感器系统内的氧转化率,熨斗和膜洗脱的特定方案。呈现的串联监测方法允许人们识别和建立影响整体生物传感器响应的关键操作条件和系统参数之间的相关性,其灵敏度和寿命。因此,基于所得实验结果,以较效的方式鉴定更有利的Nafion膜膜和用于葡萄糖生物传感器的酶载体的组成,并允许解释改善的稳定性(最多3个月)和葡萄糖浓度的线性检测范围(最多5毫米)。此外,所呈现的串联监测方法可以容易地适应其他氧依赖类型的生物传感器,用于同时多个基板检测或作为生物传感器设计和操作条件筛选的有效工具。

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