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聚合物包容膜微萃取与毛细管区带电泳在线耦合用于快速测定血样中的甲酸

In-line coupling of microextractions across polymer inclusion membranes to capillary zone electrophoresis for rapid determination of formate in blood samples.

作者信息

Pantůčková Pavla, Kubáň Pavel, Boček Petr

机构信息

Institute of Analytical Chemistry of the Czech Academy of Sciences, v. v. i., Veveří 97, CZ-60200 Brno, Czech Republic.

Institute of Analytical Chemistry of the Czech Academy of Sciences, v. v. i., Veveří 97, CZ-60200 Brno, Czech Republic.

出版信息

Anal Chim Acta. 2015 Aug 5;887:111-117. doi: 10.1016/j.aca.2015.07.004. Epub 2015 Aug 7.

Abstract

Polymer inclusion membranes (PIMs) have several important features, i.e., PIMs are dry and non-porous membranes, which can be prepared ahead of use and stored without noticeable deterioration in extraction performance. In this contribution, in-line coupling of microextractions across PIMs to a separation method for clinical purposes was demonstrated for the first time. Formate (the major metabolite in methanol poisoning) was determined in undiluted human serum and whole blood by capillary zone electrophoresis (CZE) with simultaneous capacitively coupled contactless conductivity detection (C(4)D) and UV-Vis detection. A purpose-made microextraction device with PIM was coupled to a commercial CZE instrument in order to ensure complete automation of the entire analytical procedure, i.e., of formate extraction, injection, CZE separation and quantification. PIMs for formate extractions consisted of 60% (w/w) cellulose triacetate as base polymer and 40% (w/w) Aliquat™ 336 as anion carrier. The method was characterized by good repeatability of peak areas (≤7.0%) and migration times (≤0.8%) and by good linearity of calibration curves (r(2) = 0.993-0.999). Limits of detection in various matrices ranged from 15 to 54 μM for C(4)D and from 200 to 635 μM for UV-Vis detection and were sufficiently low to clearly distinguish between endogenous and toxic levels of formate in healthy and methanol intoxicated individuals. In addition, PIMs proved that they may act as phase interfaces with excellent long-term stability since once prepared, they retained their extractions properties for, at least, two months of storage.

摘要

聚合物包容膜(PIMs)具有几个重要特性,即PIMs是干燥且无孔的膜,可在使用前制备并储存,而萃取性能不会有明显下降。在本研究中,首次展示了将基于PIMs的微萃取与临床分离方法进行在线联用。通过毛细管区带电泳(CZE)结合电容耦合非接触电导检测(C(4)D)和紫外可见检测,测定了未稀释人血清和全血中的甲酸(甲醇中毒的主要代谢物)。将特制的带有PIM的微萃取装置与商用CZE仪器联用,以确保整个分析过程完全自动化,即甲酸萃取、进样、CZE分离和定量分析。用于甲酸萃取的PIMs由60%(w/w)的三醋酸纤维素作为基础聚合物和40%(w/w)的Aliquat™ 336作为阴离子载体组成。该方法具有良好的峰面积重复性(≤7.0%)和迁移时间重复性(≤0.8%),校准曲线线性良好(r(2) = 0.993 - 0.999)。不同基质中的检测限对于C(4)D为15至54 μM,对于紫外可见检测为200至635 μM,且足够低,能够清晰区分健康个体和甲醇中毒个体内源性和中毒水平的甲酸。此外,PIMs证明它们可作为具有出色长期稳定性的相界面,因为一旦制备,它们至少在储存两个月后仍保留其萃取性能。

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