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Development of ionic liquid based electromembrane extraction and its application to the enrichment of acidic compounds in pig kidney tissues

机译:离子液体电膜萃取技术的发展及其在猪肾组织中酸性化合物富集中的应用

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The ionic liquid-based electromembrane extraction (IL-EME) is presented for the determination of acidic compounds in complex biological samples for the first time. In this work, the IL was held in the hollow fiber pores serving as the supported liquid membrane (SLM). An aqueous acceptor solution was placed in the lumen of hollow fiber. The acidic analytes migrated in the electric field, and were eventually enriched in the acceptor phase. In this extraction mode, electrokinetic migration served as the primary driving force, which significantly increased the extraction efficiency, resulting in a considerable increase in the extraction rate. Four chlorophenoxy acid herbicides, namely, 2,4-dichlorophenoxy acetic acid, 2-(2,4-dichlorophenox) propionic acid, 4-chloromethylphenoxyacetic acid, and 2,4,5-trichlorophenoxyacetic acid were used as the model analytes to test the applicability of IL-EME for acidic compounds. And the pig kidney was chosen as the sample matrix. Prior to the microextraction, some pretreatments including homogenating, shaking together with NaOH and centrifugating were needed for the kidney tissues. Important parameters affecting the extraction efficiency, such as the type of SLM, voltage, sample solution and acceptor phase pH, extraction time, temperature, stirring rate and salt addition were also investigated and optimized. Under the optimized conditions, the extraction procedure was completed within 15 min with 78-90 folds enrichment factors and the spike recoveries were in the range of 87.5-97.8%. Moreover, high linearities over 10.0 mu g L-1 to 640 mu g L-1 were obtained. The correlation coefficients exceeded than 0.9900.
机译:首次提出基于离子液体的电膜萃取(IL-EME)用于测定复杂生物样品中的酸性化合物。在这项工作中,IL被保持在中空纤维孔中,作为支撑液膜(SLM)。将受体水溶液置于中空纤维的内腔中。酸性分析物在电场中迁移,最终富集到受体相中。在这种萃取模式下,电动迁移是主要驱动力,这显着提高了萃取效率,从而导致萃取率显着提高。以4种氯苯氧酸除草剂分别为2,4-二氯苯氧乙酸,2-(2,4-二氯苯氧)丙酸,4-氯甲基苯氧乙酸和2,4,5-三氯苯氧乙酸作为模型分析物进行测试。 IL-EME对酸性化合物的适用性。然后选择猪肾作为样品基质。在微萃取之前,肾脏组织需要进行一些预处理,包括匀浆,与NaOH一起振摇和离心。还研究和优化了影响萃取效率的重要参数,例如SLM的类型,电压,样品溶液和受体相pH,萃取时间,温度,搅拌速率和加盐量。在优化的条件下,提取过程在15分钟内完成,富集因子为78-90倍,加标回收率在87.5-97.8%之间。而且,获得了超过10.0μgL-1至640μgL-1的高线性。相关系数超过0.9900。

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