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Optimizing the Thermal Read-Out Technique for MIP-Based Biomimetic Sensors: Towards Nanomolar Detection Limits

机译:优化基于MIP的仿生传感器的热读出技术:迈向纳摩尔检测极限

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摘要

In previous work, the novel heat-transfer method (HTM) for the detection of small molecules with Molecularly Imprinted Polymers (MIP)-type receptors was presented. In this study we focus on optimization of this sensor performance, with as final aim to lower the detection limit by reducing the noise level. It was determined that the noise originates foremost from the power supply, which can be controlled by varying the PID parameters. Therefore, the effect of the individual parameters was evaluated by tuning P, I and D separately at a temperature of 37 °C, giving a first indication of the optimal configuration. Next, a temperature profile was programmed and the standard deviation of the heat-transfer resistance over the entire regime was studied for a set of parameters. The optimal configuration, P1-I6-D0, reduced the noise level with nearly a factor of three compared to the original parameters of P10-I5-D0. With the optimized settings, the detection of L-nicotine in buffer solutions was studied and the detection limit improved significantly from 100 nM to 35 nM. Summarizing, optimization of the PID parameters and thereby improving the detection limit is a key parameter for first applications of the HTM-method for MIP receptors in analytical research.
机译:在以前的工作中,提出了一种新型的传热方法(HTM),用于检测带有分子印迹聚合物(MIP)型受体的小分子。在这项研究中,我们专注于这种传感器性能的优化,最终目标是通过降低噪声水平来降低检测极限。确定噪声主要来自电源,可以通过更改PID参数进行控制。因此,通过在37°C的温度下分别调整P,I和D来评估各个参数的效果,这是最佳配置的第一个迹象。接下来,对温度曲线进行编程,并针对一组参数研究整个过程中传热阻力的标准偏差。与P10-I5-D0的原始参数相比,最佳配置P1-I6-D0的噪声水平降低了近三倍。通过优化设置,研究了缓冲溶液中L-烟碱的检测,检测限从100 nM显着提高到35 nM。总结,优化PID参数从而提高检测限是用于MIP受体的HTM方法在分析研究中首次应用的关键参数。

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