制备基于共价-非共价协同印迹策略的磁性分子印迹聚合物,从金银花中高度特异性地富集木犀草素

Liping Zhang, Peizhi Hao, Yifan He, Shujing Li, Tian Li, Lan Wang, Suna He
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摘要

木犀草素(LTL)是金银花的主要活性成分,具有广泛的药理活性,包括清热、解毒、抗炎和抗氧化作用。传统的 LTL 提取方法需要耗费大量的时间和有机溶剂,且选择性差。本系统采用共价-非共价协同印迹策略,合成了一种新型的木犀草素表面印迹聚合物(Fe3O4@SiO2@MIP)。共价功能单体为 3-丙烯酰胺基苯硼酸,非共价功能单体为深共晶溶剂(氯化胆碱/甲基丙烯酸(ChCl/MAA,1/2,n/n))和甲基丙烯酸,磁性支撑为 Fe3O4@SiO2 纳米颗粒。所制备的 Fe3O4@SiO2@MIP 形状均匀、结晶度好、磁性能优异。同时,结合实验表明,Fe3O4@SiO2@MIP 具有很高的结合性能,最大吸附容量为 20.97 mg/g。此外,它们的选择性和可重复使用性也令人满意。共价-非共价协同印迹策略极大地促进了特异性识别 LTL 的印迹纳米粒子的制备,为复杂样品中 LTL 的富集提供了一种有价值的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of magnetic molecularly imprinted polymer-based covalent–noncovalent synergistic imprinting strategies for the highly specific enrichment of luteolin from honeysuckle
Luteolin (LTL) is the primary active ingredient in honeysuckle, which exhibited wide pharmacological activities, including heat-clearing, detoxifying, anti-inflammatory and anti-oxidant effects. The conventional method for the extraction of LTL consumed a substantial amount of time and organic solvents, and poor selectivity. Therefore, fabrication of novel material with simple preparation process, low cost and excellent selectivity is of great significance for the extraction and enrichment of LTL from honeysuckle.In this system, a novel surface imprinting polymer for luteolin, denoted as Fe3O4@SiO2@MIP, was synthesized using covalent-noncovalent synergistic imprinting strategies. 3-acrylamidephenylboric acid was adopted as covalent functional monomer, deep eutectic solvent (choline chloride/methacrylic acid (ChCl/MAA, 1/2, n/n)) and methacrylic acid as the non-covalent functional monomers, and Fe3O4@SiO2 nanoparticles as the magnetic support. The resultant Fe3O4@SiO2@MIP displayed a uniform morphology, good crystallinity, and excellent magnetic properties. Meanwhile, the binding experiments demonstrated that Fe3O4@SiO2@MIP exhibited high binding performance and the maximum adsorption capacity was 20.97 mg/g. Moreover, the selectivity and reusability behavior of them were satisfactory. In addition, this polymer, serving as an adsorbent, presented practical application potential in separation and enrichment of LTL from honeysuckle.The covalent-noncovalent synergistic imprinting strategy could greatly facilitate the preparation of imprinted nanoparticles for the specific recognition of LTL, providing a valuable approach for the enrichment of LTL in complex samples.
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