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Synthesis of Magnetic Molecularly Imprinted Polymer Sorbents for Isolation of Parabens from Breast Milk

机译:磁性分子印迹聚合物吸附剂的合成分离母乳的羟基苯甲酸酯

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摘要

Magnetic molecularly imprinted polymers (MMIPs) are an invaluable asset in the development of many methods in analytical chemistry, particularly sample preparation. Novel adsorbents based on MMIPs are characterized by high selectivity towards a specific analyte due to the presence of a specific cavity on their polymer surface, enabling the lock–key model interactions to occur. In addition, the magnetic core provides superparamagnetic properties that allow rapid separation of the sorbent from the sample solution. Such a combination of imprinted polymers with a magnetic core has an innovative influence on the development of separation techniques. Hence, the present study describes the synthesis of MMIPs with 17β-estradiol used as a template molecule in the production of imprinted polymers. The as-prepared sorbent was used for a sorption/desorption study of five parabens from breast milk samples. The obtained results were characterized by sorption efficiency exceeding 92%, which shows the high affinity of the analytes to the functional groups on the sorbent. The final determination of the selected analytes was done with high-performance liquid chromatography using a fluorometric detector. The determined linearity ranges for selected parabens were characterized by high determination coefficients (r2 from 0.9992 to 0.9999), and the calculated limit of detection (LOD) and limit of quantification (LOQ) for the identified compounds were low (LOD from 1.1–2.7 ng mL−1; LOQ from 3.6–8.1 ng mL−1), which makes their quantitative analysis in real samples feasible.
机译:磁性分子印迹聚合物(MMIPS)是在分析化学中的许多方法的发展中是一种无价的资产,特别是样品制备。基于MMIPS的新型吸附剂的特征在于朝着它们的聚合物表面上存在特定腔的特定分析物的高选择性,使得能够发生锁定关键模型相互作用。此外,磁芯提供超顺磁性,允许快速分离吸附剂从样品溶液中。这种具有磁芯的印迹聚合物的这种组合对分离技术的发展具有创新影响。因此,本研究描述了用17β-雌二醇的合成用作模板分子在产生压印的聚合物中。制备的AS制备的吸附剂用于来自母乳样品的五种羟基苯甲喷妥酮的吸附/解吸研究。所得结果的特征在于超过92%的吸附效率,其显示出分析物对吸附剂上的官能团的高亲和力。使用荧光检测器用高效液相色谱法进行所选分析物的最终测定。所选择的羟基苯甲酸酯的确定线性范围由高测定系数(R2为0.9992至0.9999),并且所识别化合物的检测极限(LOD)和定量限制(LOQ)是低(LOD从1.1-2.7 Ng ML-1; LOQ从3.6-8.1 ng ml-1),其在真正的样品中进行定量分析可行。

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