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Response Surface Methodology for the Optimisation of Electrochemical Biosensors for Heavy Metals Detection

机译:用于优化重金属检测的电化学生物传感器的响应面方法

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摘要

Herein, we report the application of a chemometric tool for the optimisation of electrochemical biosensor performances. The experimental design was performed based on the responses of an amperometric biosensor developed for metal ions detection using the flow injection analysis. The electrode preparation and the working conditions were selected as experimental parameters, and thus, were modelled by a response surface methodology (RSM). In particular, enzyme concentration, flow rates, and number of cycles were reported as continuous factors, while the sensitivities of the biosensor (S, µA·mM−1) towards metals, such as Bi3+ and Al3+ were collected as responses and optimised by a central composite design (CCD). Bi3+ and Al3+ inhibition on the Pt/PPD/GOx biosensor response is for the first time reported. The optimal enzyme concentration, scan cycles and flow rate were found to be 50 U·mL−1, 30 and, 0.3 mL·min−1, respectively. Descriptive/predictive performances are discussed: the sensitivities of the optimised biosensor agreed with the experimental design prediction. The responses under the optimised conditions were also tested towards Ni2+ and Ag+ ions. The multivariate approach used in this work allowed us to obtain a wide working range for the biosensor, coupled with a high reproducibility of the response (RSD = 0.72%).
机译:在此,我们报告了化学计量工具在电化学生物传感器性能优化中的应用。实验设计是基于使用电流注入分析技术开发的用于金属离子检测的安培生物传感器的响应进行的。选择电极的制备和工作条件作为实验参数,并由此通过响应表面方法(RSM)进行建模。特别是,酶浓度,流速和循环次数被报告为连续因素,而生物传感器(S,µA·mM -1 )对金属如Bi 的敏感性收集3 + 和Al 3 + 作为响应并通过中央复合设计(CCD)进行优化。首次报道了Bi 3 + 和Al 3 + 对Pt / PPD / GOx生物传感器响应的抑制作用。最佳酶浓度,扫描周期和流速分别为50 U·mL -1 ,30和0.3 mL·min -1 。描述/预测性能进行了讨论:优化的生物传感器的敏感性与实验设计的预测一致。还测试了优化条件下对Ni 2 + 和Ag + 离子的响应。这项工作中使用的多元方法使我们能够为生物传感器获得较宽的工作范围,并具有较高的响应重现性(RSD = 0.72%)。

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