School of Pharmaceutical Sciences, Chongqing University, Chongqing, China.
College of Pharmacy, Chongqing Medical University, Chongqing, China.
J Mol Recognit. 2023 Jul;36(7):e3024. doi: 10.1002/jmr.3024. Epub 2023 May 10.
Based on the synergistic action of hydrogen bond and electrostatic interaction, provided by methacrylic acid and 2-aminoethyl ester hydrochloride (FM2), respectively, novel molecularly imprinted polymers (SA-MIPs) were designed to improve its selective recognition ability. Diclofenac sodium (DFC) was chosen as the template molecule of this study. The interaction and their recognition sites between two functional monomers and templates were confirmed by nuclear magnetic resonance hydrogen spectroscopy. Because of the synergistic action of hydrogen bond and electrostatic interaction, the imprinting factor (IF) of SA-MIPs (IF = 2.26) is superior to the corresponding monofunctional monomer imprinting materials (IF = 1.52, 1.20) and the materials using two functional monomers with an only single type of interaction (IF = 1.54, 1.75). The results of selective adsorption experiments indicate that the selective recognition ability of SA-MIPs is significantly better than that of the other four MIPs, and the difference in selectivity coefficient for methyl orange is the largest between SA-MIPs and the MIPs only using FM2, which is about 70 times. In addition, x-ray photoelectron spectroscopy was used to verify the interaction between SA-MIPs and the template. This work and its explanation of the interaction mechanism at the molecular level will be helpful for the rational design of novel MIPs with higher selectivity. Besides, SA-MIPs have good adsorption performance (37.75 mg/g) for DFC in aqueous solutions, which could be used as potential adsorption materials for the effective removal of DFC in the aquatic environment.
基于甲基丙烯酸和 2-氨乙基酯盐酸盐(FM2)分别提供的氢键和静电相互作用的协同作用,设计了新型的分子印迹聚合物(SA-MIPs)以提高其选择性识别能力。本研究选择双氯芬酸钠(DFC)作为模板分子。通过核磁共振氢谱证实了两种功能单体与模板之间的相互作用及其识别位点。由于氢键和静电相互作用的协同作用,SA-MIPs 的印迹因子(IF=2.26)优于相应的单功能单体印迹材料(IF=1.52、1.20)和使用两种功能单体的材料具有仅一种相互作用(IF=1.54、1.75)。选择性吸附实验结果表明,SA-MIPs 的选择性识别能力明显优于其他四种 MIPs,并且 SA-MIPs 和仅使用 FM2 的 MIPs 之间的甲基橙选择性系数差异最大,约为 70 倍。此外,X 射线光电子能谱用于验证 SA-MIPs 和模板之间的相互作用。这项工作及其对分子水平相互作用机制的解释将有助于合理设计具有更高选择性的新型 MIPs。此外,SA-MIPs 在水溶液中对 DFC 具有良好的吸附性能(37.75mg/g),可作为有效去除水环境中 DFC 的潜在吸附材料。