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Selectivity toward multiple predetermined targets in nanoparticle capillary electrochromatography

机译:纳米毛细管电色谱法对多个预定目标的选择性

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Two unique methods to achieve selectivity toward multiple predetermined targets employing molecular imprinting technology have been developed. Partial filling capillary electrochromatography (CEC) was utilized to evaluate and compare the two techniques. The first approach, the mixed singly templated molecularly imprinted polymer (MIP) nanoparticle approach, is based on the mixing of two types of MIP nanoparticles with inherently different selectivity. The second approach, the multiply templated MIP nanoparticle approach, is based on the incorporation of two different templates during the preparation of the MIP nanoparticles. The use of MIPs in analytical chemistry applications has been extensively investigated during the past years. However, MIP nanoparticles with tailored multiple selectivity toward predetermined enantiomers has not yet been explored. The relative amounts of the two templates studied, i.e., (S)-ropivacaine and (S)-propranolol, were found to strongly affect the affinity of the multiply templated MIP nanoparticles for the predetermined targets. The amount of (S)-propranolol template had to be decreased to concentrations rarely applied in MIP synthesis in order to achieve 2-fold selectivity. Even though strongly decreased to 10% of the usual concentration employed, the MIP could efficiently separate the enantiomers of propranolol when applied in partial filling CEC. This opens up for new possibilities to decrease the need for an initial high amount of template in order to be able to produce an efficient MIP. The multiple enantiomer separation ability of the multiply templated MIP nanoparticles was compared with that of singly templated MIP nanoparticles that were mixed prior to analysis. It was concluded that the multiply templated MIP potentially can offer many new and interesting applications in chromatography as well as in sensor technology and solid-phase extraction. [References: 31]
机译:已经开发出两种独特的方法来利用分子印迹技术实现对多个预定目标的选择性。部分填充毛细管电色谱法(CEC)用于评估和比较这两种技术。第一种方法是混合单模板分子印迹聚合物(MIP)纳米颗粒方法,该方法基于两种固有固有选择性不同的MIP纳米颗粒的混合。第二种方法是多重模板化MIP纳米粒子方法,它基于MIP纳米粒子制备过程中两种不同模板的结合。在过去的几年中,已经对MIP在分析化学应用中的使用进行了广泛的研究。然而,尚未探索对预定的对映体具有定制的多重选择性的MIP纳米颗粒。发现所研究的两种模板的相对量,即(S)-罗哌卡因和(S)-普萘洛尔,强烈影响多重模板化的MIP纳米颗粒对预定靶标的亲和力。为了实现2倍的选择性,必须将(S)-普萘洛尔模板的量减少到MIP合成中很少使用的浓度。即使将MIP大大降低至通常使用浓度的10%,当应用于部分填充CEC时,MIP仍可以有效地分离心得安的对映体。这开辟了新的可能性,以减少对初始大量模板的需求,以便能够生成有效的MIP。将多重模板化的MIP纳米粒子与单模板化的MIP纳米粒子在分析之前混合的多重对映体分离能力进行了比较。结论是,多重模板化MIP可能会在色谱以及传感器技术和固相萃取中提供许多新的有趣应用。 [参考:31]

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