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内径为2毫米的填充石英微晶的熔融石英微柱的电泳分离及其应用。

Electrophoretic separation with 2-mm inner diameter fused-silica microcolumn packed with quartz microncrystals and its application.

作者信息

Li Lian, He You-Zhao, Gan Wu-Er, Wang Xiao-Kui, Xie Hai-Yang, Gao Yong

机构信息

Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, China.

出版信息

Talanta. 2009 Jul 15;79(2):460-5. doi: 10.1016/j.talanta.2009.04.010. Epub 2009 Apr 11.

Abstract

The feasibility of a microcolumn electrophoresis technique was investigated with a 100mm length, 2mm I.D. fused-silica microcolumn packed with uniform quartz microncrystals prepared by hydrothermal synthesis. To evaluate the separation technique, tryptophan, phenylalanine and tyrosine were primarily separated by the microcolumn electrophoresis and detected at 216 nm without derivatization by an ordinary spectrophotometer. The separation conditions of the amino acids were optimized. With 1.5 mmol/L disodium phosphate buffer solution (pH 11.5) containing 25% (v/v) methanol and 10% (v/v) acetonitrile, the three amino acids were separated and the separation efficiency of tryptophan was 4.5x10(4)plates/m. The limits of detection were 0.035, 0.22 and 0.20 micromol/L, respectively. The sample capacity of the electrophoretic microcolumn achieved 35 microL. The proposed method was used to determine these amino acids in compound amino acid injection samples without derivatization. For the simplicity and portability of the microcolumn electrophoresis, it is studied as one of the high-performance separation techniques for an in situ and real-time electrokinetic flow analysis system. For its high detection sensitivity and large sample capacity, it can be developed for preparative electrophoresis.

摘要

研究了一种微柱电泳技术的可行性,该技术采用一根长度为100mm、内径为2mm的熔融石英微柱,填充通过水热合成制备的均匀石英微晶。为评估该分离技术,首先通过微柱电泳对色氨酸、苯丙氨酸和酪氨酸进行分离,并在216nm波长处用普通分光光度计进行检测,无需衍生化。对氨基酸的分离条件进行了优化。使用含有25%(v/v)甲醇和10%(v/v)乙腈的1.5mmol/L磷酸二氢钠缓冲溶液(pH 11.5),三种氨基酸得以分离,色氨酸的分离效率为4.5×10⁴塔板数/米。检测限分别为0.035、0.22和0.20μmol/L。电泳微柱的进样量达到35μL。所提出的方法用于直接测定复方氨基酸注射液样品中的这些氨基酸。鉴于微柱电泳的简单性和便携性,它被作为原位和实时电动流动分析系统的高性能分离技术之一进行研究。因其高检测灵敏度和大进样量,可用于制备电泳。

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