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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 >Investigating the effect of design parameters on the response time of a highly sensitive microbial hydrogen sulfide biosensor based on oxygen consumption
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Investigating the effect of design parameters on the response time of a highly sensitive microbial hydrogen sulfide biosensor based on oxygen consumption

机译:基于耗氧量研究设计参数对高灵敏度微生物硫化氢生物传感器响应时间的影响

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摘要

A novel hydrogen sulfide microbial biosensor was developed based on investigating the influence of four design parameters: cell concentration, immobilization bed type, hydrogen sulfide concentration, and geometrical shape of the biosensor. Thiobacillus thioparus was used as the recognition element and it was immobilized on sodium alginate as well as agarose bed. The results were optimized by the application of statistical optimization software based on response time of the system. Oxygen reduction was considered as the detection sign. Sodium alginate solution with a concentration of 2.3% (w/v) and optical density of 10 at 605 nm was found as the optimum conditions for immobilization with response time of 72 s. Optimum response time of immobilized T. thioparus on agarose was also found equal to 120 s at agarose concentration of 1.2% (w/v) and optical density of 10.83. Performance of the biosensor in different temperatures, pH and agitation speeds was also analyzed. The designed biosensor could detect concentrations of hydrogen sulfide as low as 0.5 ppm. T. thioparus could retain 99% of the original activity in both systems, after ten days passing the fabrication. A fractal analysis was also done theoretically to investigate the diffusion of oxygen in immobilized cells which showed a satisfactory value of oxygen take up by the immobilized cells. (C) 2015 Elsevier B.V. All rights reserved.
机译:在研究四个设计参数的影响的基础上,开发了一种新型的硫化氢微生物生物传感器:细胞浓度,固定床类型,硫化氢浓度和生物传感器的几何形状。硫杆菌硫杆菌(Thiobacillus thioparus)用作识别元件,并将其固定在藻酸钠和琼脂糖床上。通过使用统计优化软件根据系统的响应时间对结果进行优化。减少氧气被认为是检测标志。发现藻酸钠溶液浓度为2.3%(w / v),在605 nm处的光密度为10,是固定时间为72 s的最佳条件。在1.2%(w / v)的琼脂糖浓度和10.83的光密度下,固定化的T. thioparus对琼脂糖的最佳响应时间也等于120 s。还分析了生物传感器在不同温度,pH和搅拌速度下的性能。设计的生物传感器可以检测到低至0.5 ppm的硫化氢浓度。经过十天的制造后,T。thioparus可以在两个系统中保留99%的原始活性。从理论上也进行了分形分析,以研究氧气在固定化细胞中的扩散,结果表明固定化细胞吸收了令人满意的氧气值。 (C)2015 Elsevier B.V.保留所有权利。

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