De Rycke Esther, Trynda Anna, Jaworowicz Magdalena, Dubruel Peter, De Saeger Sarah, Beloglazova Natalia
Centre of Excellence in Mycotoxicology and Public Health, Ghent University, Department of Bioanalysis, Ottergemsesteenweg 460, B-9000, Ghent, Belgium; Polymer Chemistry & Biomaterials Research Group, Centre of Macromolecular Chemistry (CMaC), Department of Organic and Macromolecular Chemistry, Ghent University, Krijgslaan 281, Building S4-Bis, B-9000, Ghent, Belgium.
Central Forensic Laboratory of the Police, Warsaw, Poland.
Biosens Bioelectron. 2021 Jan 15;172:112773. doi: 10.1016/j.bios.2020.112773. Epub 2020 Nov 1.
Highly selective molecularly imprinted polymers (MIPs) towards benzyl methyl ketone (BMK) were synthesized for application as recognition elements in a capacitive sensor. A computational approach was employed to select the most appropriate monomers and cross-linkers. Using the selected compounds, different polymerization techniques and protocols were compared in order to study the effect on the MIP performance and characteristics. MIPs synthesized by bulk polymerization using itaconic acid and 1-vinylimidazole as monomers and p-divinylbenzene as cross-linker possess the highest affinity towards the target analyte. Prior to capacitive analysis, the developed particles were immobilized on the surface of gold transducers using tyramine as a linker. The validity of the developed sensor was checked by the BMK detection in spiked tap water and real water samples. A linear working range from 50 to 1000 μM was found while the limit of detection (LOD) was determined to be 1 μM in tap water. To the best of our knowledge, both the developed MIPs towards BMK and the electrochemical sensor for its detection have not been published or marketed to date.
合成了对苄基甲基酮(BMK)具有高选择性的分子印迹聚合物(MIP),用作电容式传感器中的识别元件。采用计算方法来选择最合适的单体和交联剂。使用选定的化合物,比较了不同的聚合技术和方案,以研究其对MIP性能和特性的影响。以衣康酸和1-乙烯基咪唑为单体、对二乙烯基苯为交联剂通过本体聚合法合成的MIP对目标分析物具有最高的亲和力。在进行电容分析之前,使用酪胺作为连接剂将制备的颗粒固定在金换能器表面。通过在加标自来水和实际水样中检测BMK来检验所开发传感器的有效性。发现线性工作范围为50至1000μM,而在自来水中测定的检测限(LOD)为1μM。据我们所知,所开发的针对BMK的MIP及其检测用的电化学传感器迄今为止尚未发表或上市。