Dirion Beate, Cobb Zoe, Schillinger Eric, Andersson Lars I, Sellergren Börje
Institut für Anorganische Chemie und Analytische Chemie, Johannes Gutenberg Universität Mainz, Duesbergweg 10-14, 55099 Mainz, Germany.
J Am Chem Soc. 2003 Dec 10;125(49):15101-9. doi: 10.1021/ja0355473.
A technique allowing high-throughput synthesis and evaluation of molecularly imprinted polymer sorbents at a reduced scale (mini-MIPs) was developed and used for the optimization of MIPs for use in pure aqueous environments. The technique incorporated a 4-port liquid-handling robot for the rapid dispensing of monomers, templates, solvents and initiator into the reaction vessels of a 96-well plate. A library of 80 polymers, each ca. 50 mg, could thus be prepared in 24 h. The MIP rebinding capacity and selectivity could be rapidly assessed in the batch mode by quantifying nonbound fractions in parallel using a UV monochromator plate reader. This allowed a complete evaluation of the binding characteristics of an 80 polymer library in approximately 1 week. With the objective of optimizing a polymer imprinted with the local anaesthetic Bupivacaine for use in pure aqueous systems, a polymer library was prepared by varying the original poly(MAA-co-EDMA) MIP composition. The variable factors were the added amount of the hydrophilic comonomer, 2-hydroxyethyl methacrylate (HEMA), the cross-linking ratio, and the porogen. This optimization resulted in polymers showing high imprinting factors (IF = K(MIP)/K(NIP)) in water as a result, mainly, of reduced binding to the nonimprinted polymer. Normal scale batches of these materials showed strong retention of the template and low nonspecific binding when assessed as chromatographic stationary phases using pure phosphate buffer, pH 7.4, as mobile phase, by equilibrium batch rebinding experiments and as sorbents for extractions of the analyte from blood plasma samples.
开发了一种技术,可实现分子印迹聚合物吸附剂的高通量合成和小规模评估(微型分子印迹聚合物,mini-MIPs),并用于优化在纯水环境中使用的分子印迹聚合物。该技术采用了一个四通道液体处理机器人,用于将单体、模板、溶剂和引发剂快速分配到96孔板的反应容器中。这样,在24小时内可以制备出一个包含80种聚合物的文库,每种聚合物约50毫克。通过使用紫外单色仪酶标仪并行定量未结合部分,可以在分批模式下快速评估分子印迹聚合物的再结合能力和选择性。这使得在大约1周内能够对一个包含80种聚合物的文库的结合特性进行全面评估。为了优化用于纯水体系的、以局部麻醉剂布比卡因作为印迹分子的聚合物,通过改变原始的聚(甲基丙烯酸-co-乙二甲基丙烯酸酯)分子印迹聚合物的组成制备了一个聚合物文库。可变因素包括亲水性共聚单体甲基丙烯酸2-羟乙酯(HEMA)的添加量、交联比和致孔剂。这种优化使得聚合物在水中表现出高印迹因子(IF = K(MIP)/K(NIP)),这主要是由于与非印迹聚合物的结合减少所致。当使用pH 7.4的纯磷酸盐缓冲液作为流动相,通过平衡分批再结合实验将这些材料作为色谱固定相进行评估,以及作为从血浆样品中萃取分析物的吸附剂时,常规规模批次的这些材料显示出对模板的强保留能力和低非特异性结合。