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Progress in Chemistry 2008, Vol. 20 Issue (05): 754-761 Previous Articles   Next Articles

• Review •

Protein/peptides Separation by Two-dimensional Microfluidic chip Electrophoresis

Xu Yi1,2,3** Shen Jiwei1,2 Lu Jiali1,2 Wen Zhiyu1,3

  

  1. (1. Micro System Research Center, Chongqing University, Chongqing 400044, China; 2. Chemistry and Chemical Engineering College, Chongqing University, Chongqing 400044, China; 3. Key Lab for Optoelectronic Technology & Systems of Ministry of Education, Chongqing University, Chongqing 400044, China)
  • Received: Revised: Online: Published:
  • Contact: Xu Yi
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A powerful tool is presented in the proteome studies by muti-dimensional separation system constructed on the micofluidic chip platform. Approaches to estimate the orthogonality between selected separation modes are presented in this paper. Microfluidic two-dimensional chip electrophoresis system of various coupling modes, such as micellar electrokinetic chromatography (MEKC) coupled with capillary zone electrophoresis (CZE), open-channel electro-chromatography (OCEC)-CZE, isoelectric focusing (IEF)-CZE, IEF-SDS-capillary gel electrophoresis (CGE), SDS-CGE-MEKC, etc., designed for protein/peptides separation are summarized. Particularly, types of switching interface for two-dimensional electrophoresis microchip are classified and detecting techniques for two-dimensional microchip electrophoresis are discussed. Application prospects and developing trends of microfluidic two-dimensional electrophoresis chip in the proteome studies are also discussed.

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[ 1 ] Hille J M, Freed A L , Watzig H. Electrophoresis , 2001 , 22(19) : 4035 —4052
[ 2 ] Tolley L , Jorgenson J W, Moseley M A. Anal . Chem. , 2001 , 73(13) : 2985 —2991
[ 3 ] Shen Y, Jacobs J M, Camp D G. Anal . Chem. , 2004 , 76 (4) :1134 —1144
[ 4 ] Shen Y, Berger S J , Smith R D. J . Chromatogr. A , 2001 , 914(122) : 257 —264
[ 5 ] Lemmo A V , Jorgenson J W. Anal . Chem. , 1993 , 65 (11) :1576 —1581
[ 6 ] Wagner K, Racaityte K, Unger K K, et al . J . Chromatogr. A ,2000 , 893 (2) : 293 —305
[ 7 ] He Y, Yeung E S , Chan K C , Issaq H J . J . Chromatogr. A ,2002 , 979 (1/2) : 81 —89
[ 8 ] Opiteck G J , Jorgenson J W, Anderegg R J . Anal . Chem. ,1997 , 69(13) : 2283 —2291
[ 9 ] Manz A , Graber N , Widmer H M. Sens. Actuators , 1990 , B1 :244 —248
[10] 方肇伦(Fang Z L) . 微流控分析芯片(Micro Fluidic Analysis Chip) . 北京: 科学出版社(Beijing : Science Press) , 2003
[11] 林炳承(Lin B C ) , 秦建华(Qin J H) . 微流控芯片实验室(Laboratory on a Microfluidic Chip ) . 北京: 科学出版社(Beijing : Science Press) , 2006
[12] 石晓强(Shi X Q) , 梁恒(Liang H) , 范军(Fan J ) . 分析化学(Chinese Journal of Analytical Chemistry) , 2005 , 33 (5) :735 —739
[13] 丛永正(Cong Y Z) , 张丽华(Zhang L H) , 张维冰(Zhang W B) 等. 现代仪器(Modern Instruments) , 2006 , 1 : 1 —3
[14] 杨书雨(Yang S Y) , 陈令新(Chen L X) , 罗国安(Luo G A)等. 现代科学仪器(Modern Scientific Instruments) , 2006 , 3 :29 —31
[15] Giddings J C. Unified Separation Science. New York : John Wiley and Sons , 1991. 112 —141
[16] Giddings G C. J . High Resolut . Chromatogr. , 1987 , 10 : 319 —323
[17] Liu Z , Patterson D G, Lee M L. Anal . Chem. , 1995 , 67(21) :3840 —3845
[18] Slonecker P J , Li X, Ridgway T H. Anal . Chem. , 1996 , 68(4) : 682 —689
[19] Giddings J C. J . Chromatogr. A , 1995 , 703 (1P2) : 3 —15
[20] Gray M, Dennis G R , Wormell P , et al . J . Chromatogr. A ,2002 , 975 (2) : 285 —297
[21] Gilar M, Olivova P , Daly A E , et al . Anal . Chem. , 2005 , 77(19) : 6426 —6434
[22] Colyer C L , Mangru S D , Harrison D J . J . Chromatogr. A ,1997 , 781 (1/2) : 271 —276
[23] Gelfi C , Vigano A , Ripamonti M, et al . Anal . Chem. , 2001 , 73(16) : 3862 —3868
[24] Roman G T , Carroll S , McDaniel K, et al . Electrophoresis ,2006 , 27(14) : 2933 —2939
[25] Tsai S W, Loughran M, Suzuki H , et al . Electrophoresis , 2004 ,25(3) : 494 —501
[26] Janasek D , Schilling M, Franzke J , et al . Anal . Chem. , 2006 ,78(11) : 3815 —3819
[27] Hofmann O , Che D , Cruickshank K A , et al . Anal . Chem. ,1999 , 71(3) : 678 —686
[28] Xu J , Locascio L , Gaitan M, et al . Anal . Chem. , 2000 , 72(8) : 1930 —1933
[29] Cui H , Horiuchi K, Dutta P , et al . Anal . Chem. , 2005 , 77(5) : 1303 —1309
[30] Yao B , Yang H , Liang Q , et al . Anal . Chem. , 2006 , 78(16) :5845 —5850
[31] Paegel B M, Hutt L D , Simpson P C , et al . Anal . Chem. ,2000 , 72(14) : 3030 —3037
[32] Griffiths S K, Nilson R H. Anal . Chem. , 2001 , 73 (2) : 272 —278
[33] Culbertson C T , Jacobson S C. Anal . Chem. , 2000 , 72 (23) :5814 —5819
[34] Paegel B M, Hutt L D , Simpson P C , et al . Anal . Chem. ,2000 , 72 (14) : 3030 —3037
[35] Molho J I , Herr A E , Mosier B P , et al . Anal . Chem. , 2001 ,73(6) : 1350 —1360
[36] Fiechtner G J , Cummings E B. Anal . Chem. , 2003 , 75 (18) :4747 —4755
[37] Dutta D , Leighton D T. Anal . Chem. , 2002 , 74 (5) : 1007 —1016
[38] Rocklin R D , Ramsey R S , Ramsey J M. Anal . Chem. , 2000 ,72(21) : 5244 —5249
[39] Jacobson S C , Koutny L B , Hergenroeder R , et al . Anal .Chem. , 1994 , 66(20) : 3472 —3476
[40] Ramsey J D , Jacobson S C , Culbertson C T , et al . Anal .Chem. , 2003 , 75(15) : 3758 —3764
[41] Gottschlich N , Jacobson S C , Culbertson C T , et al . Anal .Chem. , 2001 , 73(11) : 2669 —2674
[42] Herr A E , Molho J I , Drouvalakis K A , et al . Anal . Chem. ,2003 , 75(5) : 1180 —1187
[43] Li Y, Buch J S , Rosenberger F , et al . Anal . Chem. , 2004 , 76(3) : 742 —748
[44] Tsai S W, Loughran M, Karube I. J . Micromech. Microeng. ,2004 , 14 : 1693 —1699
[45] Chen X, Wu H , Mao C , et al . Anal . Chem. , 2002 , 74 (8) :1772 —1778
[46] Griebel A , Rund S , Schênfeld F , et al . Lab Chip , 2004 , 4(1) :18 —23
[47] Wang Y C , Choi M H , Han J . Anal . Chem. , 2004 , 76 (15) :4426 —4431
[48] Shadpour H , Soper S A. Anal . Chem. , 2006 , 78 (11) : 3519 —3527
[49] Tabuchi M, Kuramitsu Y, Nakamura K, et al . Anal . Chem. ,2003 , 75(15) : 3799 —3805
[50] Huang H Q , Xu F , Dai Z P , et al . Electrophoresis , 2005 , 26(11) : 2254 —2260
[51] Silvertand L H H , Machtejevas E , Hendriks R , et al . J .Chromatogr. B , 2006 , 839 (1/2) : 68 —73

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