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在非水毛细管电泳中使用电渗流泵进行两相单滴微萃取与大体积堆积的在线耦合。

In-line coupling of two-phase single drop microextraction and large volume stacking using an electroosmotic flow pump in nonaqueous capillary electrophoresis.

作者信息

Choi Kihwan, Jin Yoo Gon, Chung Doo Soo

机构信息

Department of Chemistry, Seoul National University, Seoul 151-747, South Korea.

出版信息

J Chromatogr A. 2009 Sep 11;1216(37):6466-70. doi: 10.1016/j.chroma.2009.07.047. Epub 2009 Aug 5.

Abstract

In order to improve the concentration sensitivity of capillary electrophoresis (CE), two sample preconcentration techniques, single drop microextraction (SDME) and large volume stacking using an electroosmotic flow pump (LVSEP), were coupled in-line in a commercial CE instrument. By simple programming of liquid handling sequences, a pentanol drop was prepared at the tip of a fused silica capillary over which a Teflon tube had been sleeved to serve as a hydrophobic support. After extraction of the analytes from an aqueous donor solution into the drop, the entire capillary column was filled with enriched pentanol extract. LVSEP, in which the sample matrix is automatically removed by the EOF, was then carried out using a methanolic run buffer. The overall enrichment factors for the analytes pentachlorophenol (PCP), 3-bromobenzoic acid (3-BBA), and 4-iodobenzoic acid (4-IBA), from a combination of 30min SDME and LVSEP on a 27cm capillary, were about 7000, even without agitation of the donor solution. The resulting limits of detection for PCP, 3-BBA, and 4-IBA were 0.7, 0.3 and 0.7nM, respectively. Since no modification of the existing CE instrument is necessary and a bare capillary is used for LVSEP, this scheme can be adapted quite easily for many CE applications that require high concentration sensitivity.

摘要

为提高毛细管电泳(CE)的浓度灵敏度,将两种样品预富集技术,即单滴微萃取(SDME)和使用电渗流泵的大体积堆积(LVSEP),在线耦合到一台商用CE仪器中。通过简单地对液体处理序列进行编程,在熔融石英毛细管尖端制备戊醇液滴,在该毛细管上套有一根聚四氟乙烯管作为疏水支撑。将分析物从水相供体溶液萃取到液滴中后,整个毛细管柱充满富集的戊醇萃取物。然后使用甲醇运行缓冲液进行LVSEP,其中样品基质通过电渗流自动去除。在一根27cm的毛细管上,30分钟的SDME和LVSEP相结合,对分析物五氯苯酚(PCP)、3-溴苯甲酸(3-BBA)和4-碘苯甲酸(4-IBA)的总体富集因子约为7000,即使不搅拌供体溶液也是如此。PCP、3-BBA和4-IBA的最终检测限分别为0.7、0.3和0.7 nM。由于无需对现有的CE仪器进行改装,且LVSEP使用的是裸毛细管,因此该方案可以很容易地应用于许多需要高浓度灵敏度的CE应用中。

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