He Yahui, Zeng Shaomei, Abd El-Aty A M, Hacımüftüoğlu Ahmet, Kalekristos Yohannes Woldemariam, Khan Majid, She Yongxin
China-Canada Joint Lab of Food Nutrition and Health (Beijing), School of Food and Health, Beijing Technology &Business University, Beijing 100048, China.
Institute of Quality Standards & Testing Technology for Agro-Products, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Polymers (Basel). 2020 Jan 6;12(1):130. doi: 10.3390/polym12010130.
Herein, a novel method for molecularly imprinted polymers (MIPs) using methacrylic acid functionalized beta-cyclodextrin (MAA-β-CD) monomer is presented, which was designed as a potential water-compatible composite for the controlled release of atropine (ATP). The molecularly imprinted microspheres with pH-sensitive characteristics were fabricated using thermally-initiated precipitation polymerization, employing ATP as a template molecule. The effects of different compounds and concentrations of cross-linking agents were systematically investigated. Uniform microspheres were obtained when the ratio between ATP, MAA-β-CD, and trimethylolpropane trimethacrylate (TRIM) was 1:4:20 (mol/mol/mol) in polymerization system. The ATP loading equilibrium data was best suited to the Freundlich and Langmuir isotherm models. The drug release study was assessed under simulated oral administration conditions (pH 1.5 and 7.4). The potential usefulness of MIPs as drug delivery devices are much better than non-molecularly imprinted polymers (NIPs). The study shows that the prepared polymers are a pH stimuli-responsive system, which controlled the release of ATP, indicating the potential applications in the field of drug delivery.
本文介绍了一种使用甲基丙烯酸功能化β-环糊精(MAA-β-CD)单体制备分子印迹聚合物(MIPs)的新方法,该聚合物被设计为一种潜在的与水相容的复合材料,用于阿托品(ATP)的控释。以ATP为模板分子,采用热引发沉淀聚合法制备了具有pH敏感特性的分子印迹微球。系统研究了不同化合物和交联剂浓度的影响。当聚合体系中ATP、MAA-β-CD和三羟甲基丙烷三甲基丙烯酸酯(TRIM)的比例为1:4:20(摩尔/摩尔/摩尔)时,获得了均匀的微球。ATP负载平衡数据最符合Freundlich和Langmuir等温线模型。在模拟口服给药条件(pH 1.5和7.4)下评估了药物释放研究。MIPs作为药物递送装置的潜在用途比非分子印迹聚合物(NIPs)要好得多。研究表明,所制备的聚合物是一种pH刺激响应系统,可控制ATP的释放,表明其在药物递送领域的潜在应用。