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微流控芯片二维电泳分离分析系统研究进展 被引量:2

Two-dimensional electrophoresis on microfluidic chip
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摘要 微流控芯片分析系统(微全分析系统)近年来发展迅速,已经被应用于生物、环境样品的分离分析研究。多维分析系统能够极大地提高峰容量,适合于复杂样品体系的分离分析。在微流控芯片上进行的分离操作不仅可以有效地实现两种分离模式之间的零死体积切换,而且能够使分析速度与峰容量的矛盾得到补偿。本文对微流控芯片二维电泳分离分析系统的近期发展作综述,并展望其可能的发展前景。 Microfabricated, microfluidic devices constructed on planar substrates have been shown to be highly advantageous for manipulating small sample volumes, rapidly processing materials, and integrating sample pretreatment and separation strategies. The advantage of multidimensional techniques is that high peak capacities can be achieved. In this paper we briefly outline the development of two-dimensioaal separation system on microfabricated device in recrnt years.
出处 《现代仪器》 2006年第1期1-3,共3页 Modern Instruments
基金 国家自然科学基金项目(20405014) "中科院百人计划"资助
关键词 微流控芯片 二维分离 电泳 Microfluidic chip Two-dimensional separation Electrophoresis
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参考文献21

  • 1Manz,A; Graber, N.; Widmer, H. M. Sens. Actuaters 1990, B1,244-248.
  • 2许春丽,李保新,章竹君.微全分析系统检测方法的研究进展[J].分析化学,2003,31(12):1520-1526. 被引量:4
  • 3王立鼎,刘军山,于建群,刘冲.集成毛细管电泳芯片研究进展[J].大连理工大学学报,2003,43(4):385-392. 被引量:11
  • 4张玉奎,张维冰,张丽华.多维立体分离分析技术面临的挑战性问题及对应策略[J].色谱,2003,21(4):299-302. 被引量:4
  • 5Giddings J C.John Wiley and Sons, New York, 1991,112 - 141.
  • 6Giddings, J. C.,. J. High ResoLut Chromatogr. Chromatogr.Commun. 1987,10:319 - 323.
  • 7Dusian Kaniansky Maria'n Masa', Jana Bielci ikova' Fmntisi ek Iva' nyi, Friedhelm Eisenbeiss, Bemd Stanislawski, Benedikt Grass, Andreas Neyer, nd Matthias Jolhnck Anal. Chem. 2000,72: 3596 - 3604.
  • 8Wyatt N. Vreeland, Stephen J. Williams Annelise E. Barton, and Mexander P. Sassi Anal. Chem. 2003,75: 3059 - 3065.
  • 9Amy E. Herr, Joshua I. Molho, Katerina A. Drouvalakis, James C. Mikkelsen, Paul J. Utz Juan G, Santiago, and Thomas W.Kenny Anal Chem.2003,75,1180 - 1187.
  • 10Xiaoxi Chen, Hongkai Wu, Chengde Mao, and George M.Whitesides Anal. Chem. 2002,74:1772 - 1778.

二级参考文献138

  • 1[1]Graber N, Ludi H, Widmer H M. Sens. Actuator, B, 1990, 1: 239~243
  • 2[2]Manz A, Graber N, Widmer H M. Sens. Actuator, B, 1990, 1: 244~248
  • 3[4]Haswell S J, Middleton R J, O′Sullivan B, Skelton V, Watte P, Styring P. Chem. Commun., 2001, 5: 391~398
  • 4[5]Polson N A, Hayes M A. Anal. Chem., 2001, 73(11): 313A~319A
  • 5[6]Schwarz M A, Hauser P C. Lab. on A Chip, 2001, 1(1): 1~6
  • 6[7]Reyes D R, Iossifidis D, Auroux P. Anal. Chem., 2002, 74(12): 2623~2636
  • 7[9]Jiang G, Attiya S, Ocvirk G, Lee W E, Harrison D J. Biosens. Bioelectron., 2000, 14(10/11): 861~869
  • 8[10]Hadd A G, Raymond D E, Halliweil J W. Anal. Chem., 1997, 69(14): 3407~3412
  • 9[11]Melanson J E, Lucy C A. Analyst, 2000, 125(6): 1049~1052
  • 10[12]Webster J R, Burns M A, Burke D T, Mastrangelo C H. Anal. Chem., 2001, 73(7): 1622~1626

共引文献16

同被引文献98

  • 1范军,石晓强,梁恒.化学发光二维两点检测微流控芯片系统[J].高等学校化学学报,2004,25(z1):84-85. 被引量:1
  • 2石晓强,梁恒,范军.微流控芯片二维电泳研究进展[J].分析化学,2005,33(5):735-739. 被引量:3
  • 3杨书雨,陈令新,罗国安,王义明.多维电色谱分离模式在微流控芯片中的应用[J].现代科学仪器,2006,23(3):29-31. 被引量:4
  • 4丛辉,王惠民,宋宏伟,鞠少卿,金庆辉,贾春平,庄贵生,刘菁.控制微流控芯片电泳中的蛋白质吸附[J].检验医学,2006,21(5):449-452. 被引量:2
  • 5Manz A, Graber N, Widmer H M. Miniaturized total chemical analysis systems: A novel concept for chemical sensing [ J ]. Sensors and Actuators B : Chemical, 1990, 1 (1-6) :244-248.
  • 6Whitesides G M. The origins and the future of microfluidics [J]. Nature,2006, 442:368-373.
  • 7West J, Becker M, Tombrink S, et al. Micro Total Analysis Systems : Latest Achievements [ J ]. Anal. Chem. ,2008, 80:4403-4419.
  • 8Hong Chen, Z. Hugh Fan. Two-dimensional protein sep aration in micro? uidic devices[ J]. Electrophoresis,2009, 30:758-765.
  • 9Giddings J C. Unified Separation Science [ J ]. JohnWiley and Sons, 1991 : 112-141.
  • 10Zhuang Z X, Stephen C, Jacobson. Serial-to-Parallel Interfaces for Ef? cicnt Sample Transfer on Micro? uidic Devices[J]. Anal. Chem. ,2009, 81:1477-1481.

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