首页> 外文期刊>Analytical and Bioanalytical Chemistry >Heat-transfer-based detection of l-nicotine, histamine, and serotonin using molecularly imprinted polymers as biomimetic receptors
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Heat-transfer-based detection of l-nicotine, histamine, and serotonin using molecularly imprinted polymers as biomimetic receptors

机译:使用分子印迹聚合物作为仿生受体,对L-烟碱,组胺和5-羟色胺进行传热检测

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摘要

In this work, we will present a novel approach for the detection of small molecules with molecularly imprinted polymer (MIP)-type receptors. This heat-transfer method (HTM) is based on the change in heat-transfer resistance imposed upon binding of target molecules to the MIP nanocavities. Simultaneously with that technique, the impedance is measured to validate the results. For proof-of-principle purposes, aluminum electrodes are functionalized with MIP particles, and l-nicotine measurements are performed in phosphate-buffered saline solutions. To determine if this could be extended to other templates, histamine and serotonin samples in buffer solutions are also studied. The developed sensor platform is proven to be specific for a variety of target molecules, which is in agreement with impedance spectroscopy reference tests. In addition, detection limits in the nanomolar range could be achieved, which is well within the physiologically relevant concentration regime. These limits are comparable to impedance spectroscopy, which is considered one of the state-of-the-art techniques for the analysis of small molecules with MIPs. As a first demonstration of the applicability in biological samples, measurements are performed on saliva samples spiked with l-nicotine. In summary, the combination of MIPs with HTM as a novel readout technique enables fast and low-cost measurements in buffer solutions with the possibility of extending to biological samples.
机译:在这项工作中,我们将提出一种新的方法来检测带有分子印迹聚合物(MIP)型受体的小分子。此传热方法(HTM)基于目标分子与MIP纳米腔结合后施加的传热阻力变化。与该技术同时,测量阻抗以验证结果。出于原理验证的目的,铝电极用MIP颗粒进行功能化,并且在磷酸盐缓冲盐溶液中进行了L-烟碱的测量。为了确定是否可以扩展到其他模板,还研究了缓冲溶液中的组胺和5-羟色胺样品。事实证明,开发的传感器平台对多种目标分子具有特异性,这与阻抗谱参考测试一致。另外,可以达到纳摩尔范围内的检测极限,这在生理学上相关的浓度范围之内。这些限制可与阻抗谱媲美,阻抗谱被认为是使用MIP分析小分子的最新技术之一。作为在生物样品中适用性的第一个证明,对掺有l-尼古丁的唾液样品进行了测量。总而言之,将MIP与HTM结合起来作为一种新颖的读出技术,可以在缓冲溶液中进行快速且低成本的测量,并有可能扩展到生物样品。

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