Institute for Materials Research (IMO), Hasselt University, Diepenbeek, Belgium.
Anal Bioanal Chem. 2013 Aug;405(20):6479-87. doi: 10.1007/s00216-013-7080-1. Epub 2013 Jun 11.
Molecularly imprinted polymers (MIPs) are synthetic receptors that are able to specifically bind their target molecules in complex samples, making them a versatile tool in biosensor technology. The combination of MIPs as a recognition element with quartz crystal microbalances (QCM-D with dissipation monitoring) gives a straightforward and sensitive device, which can simultaneously measure frequency and dissipation changes. In this work, bulk-polymerized L-nicotine MIPs were used to test the feasibility of L-nicotine detection in saliva and urine samples. First, L-nicotine-spiked saliva and urine were measured after dilution in demineralized water and 0.1× phosphate-buffered saline solution for proof-of-concept purposes. L-nicotine could indeed be detected specifically in the biologically relevant micromolar concentration range. After successfully testing on spiked samples, saliva was analyzed, which was collected during chewing of either nicotine tablets with different concentrations or of smokeless tobacco. The MIPs in combination with QCM-D were able to distinguish clearly between these samples: This proves the functioning of the concept with saliva, which mediates the oral uptake of nicotine as an alternative to the consumption of cigarettes.
分子印迹聚合物(MIPs)是能够在复杂样品中特异性结合其目标分子的合成受体,使其成为生物传感器技术中的一种多功能工具。将 MIPs 作为识别元件与石英晶体微天平(QCM-D 与耗散监测)结合使用,可得到一种简单而灵敏的装置,可同时测量频率和耗散变化。在这项工作中,使用 bulk-polymerized L-烟碱 MIPs 来测试 L-烟碱在唾液和尿液样本中的检测可行性。首先,在去矿物质水中和 0.1×磷酸盐缓冲盐水溶液中稀释后,测量了 L-烟碱加标唾液和尿液,以验证概念。实际上可以在生物学相关的微摩尔浓度范围内特异性检测到 L-烟碱。在成功测试加标样品后,分析了唾液,这些唾液是在咀嚼不同浓度的尼古丁片或无烟烟草时收集的。MIPs 与 QCM-D 相结合能够清楚地区分这些样本:这证明了使用唾液的概念的有效性,唾液作为替代吸烟的尼古丁摄入途径。