Kamel Ayman H, Amr Abd El-Galil E, Ashmawy Nashwa H, Galal Hoda R, Al-Omar Mohamed A, Sayed Ahmed Y A
Department of Chemistry, Faculty of Science, Ain Shams University, 11566 Cairo, Egypt.
Pharmaceutical Chemistry Department, Drug Exploration & Development Chair (DEDC), College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.
Polymers (Basel). 2020 Jun 23;12(6):1406. doi: 10.3390/polym12061406.
Herein, we present for the first time a novel potentiometric sensor based on the stimulus-responsive molecularly imprinted polymer (MIP) as a selective receptor for neutral dopamine determination. This smart receptor can change its capabilities to recognize according to external environmental stimuli. Therefore, MIP-binding sites can be regenerated in the polymeric membrane by stimulating with stimulus after each measurement. Based on this effect, reversible detection of the analyte via potentiometric transduction can be achieved. MIPs based on 4-vinylphenylboronic acid as the functional monomer were prepared as the selective receptor. This monomer can successfully bind to dopamine via covalent binding and forming a five- or six-membered cyclic ester in a weakly alkaline aqueous solution. In acidic medium, the produced ester dissociates and regenerates new binding sites in the polymeric membrane. The proposed smart sensor exhibited fast response and good sensitivity towards dopamine with a limit of detection 0.15 µM over the linear range 0.2-10 µM. The selectivity pattern of the proposed ISEs was also evaluated and revealed an enhanced selectivity towards dopamine over several phenolic compounds. Constant-current chronopotentiometry is used for evaluating the short-term potential stability of the proposed ISEs. The obtained results confirm that the stimulus-responsive MIPs provide an attractive way towards reversible MIP-based electrochemical sensors designation.
在此,我们首次展示了一种基于刺激响应分子印迹聚合物(MIP)的新型电位传感器,作为用于中性多巴胺测定的选择性受体。这种智能受体可以根据外部环境刺激改变其识别能力。因此,每次测量后通过刺激可在聚合物膜中再生MIP结合位点。基于此效应,可通过电位转导实现对分析物的可逆检测。制备了以4-乙烯基苯硼酸为功能单体的MIP作为选择性受体。该单体可在弱碱性水溶液中通过共价结合成功与多巴胺结合并形成五元或六元环酯。在酸性介质中,生成的酯解离并在聚合物膜中再生新的结合位点。所提出的智能传感器对多巴胺表现出快速响应和良好的灵敏度,在0.2 - 10 µM线性范围内检测限为0.15 µM。还评估了所提出的离子选择性电极(ISE)的选择性模式,结果表明其对多巴胺的选择性高于几种酚类化合物。采用恒流计时电位法评估所提出的ISE的短期电位稳定性。所得结果证实,刺激响应性MIP为基于MIP的可逆电化学传感器设计提供了一种有吸引力的方法。