Analytical Biosciences and Metabolomics, Systems Biomedicine and Pharmacology, Leiden Academic Centre for Drug Research, Leiden University, the Netherlands.
Analytical Biosciences and Metabolomics, Systems Biomedicine and Pharmacology, Leiden Academic Centre for Drug Research, Leiden University, the Netherlands; Research Group Metabolomics, Leiden Center for Applied Bioscience, University of Applied Sciences Leiden, the Netherlands.
Anal Chim Acta. 2021 Mar 8;1149:338204. doi: 10.1016/j.aca.2021.338204. Epub 2021 Jan 7.
Sample preparation is often reported as the main bottleneck of analytical processes. To meet the requirements of both high-throughput and high sensitivity, improved sample-preparation methods capable of fast analyte preconcentration are urgently needed. To this end, a new three-phase electroextraction (EE) method is presented that allows for ultrafast electroextraction hyphenated to flow-injection analysis mass spectrometry (FIA-MS). Four model compounds, i.e., propranolol, amitriptyline, bupivacaine, and oxeladin, were used to optimize and evaluate the method. Within only 30 s extraction time, enrichment factors (EF) of 105-569 and extraction recoveries (ER) of 10.2%-55.7% were achieved for these analytes, with limits of detection (LODs) ranging from 0.36 to 3.21 ng mL, good linear response function (R > 0.99), low relative standard deviation (0.6%-17.8%) and acceptable accuracy (73-112%). Finally, the optimized three-phase EE method was successfully applied to human urine and plasma samples. Our three-phase electroextraction method is simple to construct and offers ultrafast, online extraction of trace amounts of analytes from biological samples, and therefore has great potential for high-throughput analysis.
样品制备通常被报道为分析过程的主要瓶颈。为了满足高通量和高灵敏度的要求,迫切需要改进的样品制备方法,以实现快速的分析物预浓缩。为此,提出了一种新的三相电萃取(EE)方法,该方法可与流动注射分析质谱联用(FIA-MS)实现超快电萃取。使用四种模型化合物,即普萘洛尔、阿米替林、布比卡因和奥沙拉丁,对该方法进行了优化和评估。在仅 30 秒的萃取时间内,这些分析物的富集因子(EF)达到 105-569,萃取回收率(ER)达到 10.2%-55.7%,检测限(LOD)范围为 0.36-3.21ng/mL,具有良好的线性响应函数(R>0.99)、低相对标准偏差(0.6%-17.8%)和可接受的准确性(73-112%)。最后,优化的三相 EE 方法成功应用于人体尿液和血浆样品。我们的三相电萃取方法简单,可从生物样品中在线快速提取痕量分析物,因此具有高通量分析的巨大潜力。