期刊文献+

微流控毛细管电泳—流动注射联用技术在分离和测定中药制剂中麻黄碱与伪麻黄碱的应用(英文) 被引量:4

Micro-fluidic capillary electrophoresis system with flow injection sample introduction applied to separation and determination of ephedrine and pseudoephedrine
下载PDF
导出
摘要 采用较短的毛细管作为分离通道,建立了一种微流控毛细管电泳和流动注射联用的分离测定麻黄碱和伪麻黄碱的新体系.该体系由一个H-型微芯片接口、一个水平放置的毛细管(作为分离通道)、两个竖直放置的Tygon管(作为阳极和阴极的电解质流通储液槽)组成.在最佳实验条件下,麻黄碱和伪麻黄碱标准品的进样频率可达到60 h-1,且完全基线分离,重现性良好,检测限(S/N=3)分别为:麻黄1.77μg/mL,伪麻黄2.03μg/mL.该微流控体系已用于3种含有麻黄碱和伪麻黄碱的市售药品的测定,结果令人满意. In this work, a microfluidic capillary electrophoresis system coupled to a flow injection sample introduction system using short capillary column as separation channel is described. This device contains an H-shaped microchip fixed on a planar plastic base, which utilizes a horizontal separation capillary with tubular side arms on each end that serve as inlet and outlet flow-through electrode reservoirs. Continuous FI introduction of a series of samples containing a standard mixture of ephedrine and pseudoephedrine allows a throughput rate up to 60 h^-1 with complete baseline separation and high precision. The limits of detection (S/N=3) are 1.77 μg/mL for ephedrine and 2.03 μg/mL for pseudoephedrine, respectively, The microfluidic system has been applied to analyzing, for the first time, three commercial pharmaceutical preparations containing ephedrine or pseudoephedrine, and the results are satisfactory.
出处 《兰州大学学报(自然科学版)》 CAS CSCD 北大核心 2007年第3期74-80,共7页 Journal of Lanzhou University(Natural Sciences)
基金 Supported by the National Natural Science Foundation of China(20275014) Interdisciplinary Innovation Research Fund for Young Scholars,Lanzhou University(824611).
关键词 微流控毛细管电泳 流动注射 麻黄 伪麻黄 microfluidic capillary electrophoresis flow injection ephedrine pseudoephedrine
  • 相关文献

参考文献17

  • 1FANG Z L,LIU Z S,SHEN Q.Combination of flow injection with capillary electrophoresis:Part 1.The basic system[J].Anal Chim Acta,1997,346(2):135-143.
  • 2KUBAN P,ENGSTROM A,OLSSON J C,et al.New interface for coupling flow-injection and capillary electrophoresis[J].Anal Chim Acta,1997,337(2):117-124.
  • 3CHEN H W,FANG Z L.Combination of flow injection with capillary electrophoresis:Part 4.Automated multicomponent monitoring of drug dissolution[J].Anal Chim Acta,1998,376 (2):209-220.
  • 4KUBAN P,KARLBERG B.On-line dialysis coupled to a capillary electrophoresis system for determination of small anions[J].Anal Chem,1997,69(6):1 169-1 173.
  • 5KUBAN P,KARLBERG B.On-line coupling of gas diffusion to capillary electrophoresis[J].Talanta,1998,45:477-484.
  • 6CHEN H W,FANG Z L.Combination of flow injection with capillary electrophoresis:Part 3.Online sorption column preconcentration capillary electrophoresis system[J].Anal Chim Acta,1997,355(2-3):135-143.
  • 7CHEN H L,WANG K T,PU Q S,et al.On-line conversion and determination of artemisinin using a flow-injection capillary electrophoresis system[J].Electrophoresis,2002,23(17):2 865-2 874.
  • 8FANG Q,WANG F R,WANG S L,et al.Sequential injection sample introduction microquidic-chip based capillary electrophoresis system[J].Anal Chim Acta,1999,390(1-3):27-37.
  • 9FU C G,FANG Z L.Combination of flow injection with capillary electrophoresis:Part 7.Microchip capillary electrophoresis system with flow injection sample introduction and amperometric detection[J].Anal Chim Acta,2000,422(1):71-79.
  • 10HUANG X J,PU Q S,FANG Z L.Capillary electrophoresissystem with flow injection sample introduction and chemiluminescence detection on a chip platform[J].Analyst,2001,126(3):281-284.

同被引文献96

引证文献4

二级引证文献24

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部