全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
化学进展  2013 

固定化酶微反应器的制备及应用

DOI: 10.7536/PC121161, PP. 1198-1207

Keywords: 固定化酶微反应器,制备,蛋白质组学,酶抑制剂的筛选,生物催化

Full-Text   Cite this paper   Add to My Lib

Abstract:

固定化酶微反应器是将生物分子固定技术与生化微反应相结合制备的一种固定化催化装置。这种微型化的反应系统由于兼具固定化酶的特异性催化、可重复利用及微分析的低消耗、易分离等优点,在生命科学如蛋白质组学、酶抑制剂的筛选、生物催化等领域具有非常重要的作用。固定化酶微反应器的性能与其制作方法关系密切。本文着重从酶与固定化载体结合方式的角度,对近年来固定化酶微反应器的各种制备方法和应用进行了较为详细的评述。重点讨论了各种方法的优缺点和最新的发展情况,并对其发展前景进行了展望。

References

[1]  Weetall H H. Biochim. Biophys. Acta, 1970, 212: 1-7
[2]  Zhang Z B, Wang F J, Xua B, Qin H Q, Ye M L, Zou H F. J. Chromatogr. A, 2012, 1256: 136- 143
[3]  Wang F J, Wei X L, Zhou H, Liu J, Figeys D, Zou H F. Proteomics, 2012, 12: 3129-3137
[4]  Zhang X M, Liu B H, Zhang L H, Zou H F, Cao J, Gao M X, Tang J, Li Y, Yang P Y, Zhang Y K. Sci. China Chem., 2010, 53(4): 685-694
[5]  马俊锋(Ma J F), 段继诚(Duan J C), 梁振( Liang Z), 张丽华(Zhang L H), 张维冰(Zhang W B), 张玉奎(Zhang Y K).分析化学(Chinese J. Anal. Chem.), 2006, 11: 1649-1655
[6]  Simonet B M, Ríós A, Valcárcel M. Electrophoresis, 2004, 25: 50-56
[7]  Thelhan S, Jadaud D, Wainer I W. Chromatographia, 1989, 28: 551-555
[8]  Melander C, Momcilovic D, Nilsson C, Bengtsson M, Schagerlǒf H, Tjerneld F, Laurell T, Reimann C T, Gorton L. Anal. Chem., 2005, 77: 3284-3291
[9]  郭忠(Guo Z), 张清春(Zhang Q C), 雷政登(Lei Z D), 孔亮(Kong L), 毛希琴(Mao X Q), 邹汉法(Zou H F). 高等学校化学学报(Chem. J. Chinese Universities), 2002, 23(7): 1277-1280
[10]  Costantini F, Benetti E M, Reinhoudt D N, Huskens J, Vancso G J, Verboom W. Lab Chip, 2010, 10(24): 3407-3412
[11]  Yamaguch H, Miyazaki M, Honda T, Briones-Nagata M P, Arima K, Maeda H. Electrophoresis, 2009, 30: 3257-3264
[12]  Zhang Q, Xu J J, Chen H Y. Electrophoresis, 2006, 27: 4943-4951
[13]  Lee J, Soper S A, Murray K K. Analyst, 2009, 134: 2426-2433
[14]  Slovakova M, Minc N, Bilkova Z, Smadja C, Faigle W, Fütterer C, Taverna M, Viovy J L. Lab Chip, 2005, 5: 935-942
[15]  Nel A L, Minc N, Smadja C, Slovakova M, Bilkova Z, Peyrin J M, Viovy J L, Taverna M. Lab Chip, 2008, 8: 294-301
[16]  Li S, Yao G P, Qi D W, Li Y, Deng C H, Yang P Y, Zhang X M. Anal. Chem., 2008, 80: 3655-3665
[17]  Li Y, Xu X Q, Deng C H, Yang P Y, Zhang X M. J. Proteome Res., 2007, 6: 3849-3855
[18]  Minakuchi H, Nakanishi K, Soga N, Ishizuka N, Tanaka N. Anal. Chem., 1996, 68: 3498-3501
[19]  Peterson D S, Rohr T, Svec F, Fréchet J M J. Anal. Chem., 2002, 74: 4081-4088
[20]  Chen Y Z, Wu M H, Wang K Y, Chen B, Yao S Z, Zou H F, Nie L H. J. Chromatogr. A, 2011, 1218: 7982-7988
[21]  Guo Z, Xu S Y, Lei Z D, Zou H F, Guo B C. Electrophoresis, 2003, 24: 3633-3639
[22]  Spro J, Sinz A. Anal. Chem., 2010, 82: 1434-1443
[23]  Abele S, Smejkal P, Yavorska O, Foret F, Macka M. Analyst, 2010, 135: 477-481
[24]  Hayes J D, Malik A. Anal. Chem., 2000, 72: 4090-4099
[25]  吴帅宾(Wu S B), 马俊锋(Ma J F), 杨开广(Yang K G), 刘晋湘(Liu J X), 梁振(Liang Z), 张丽华(Zhang L H), 张玉奎(Zhang Y K). 中国科学(Science China), 2010, 40(9): 874-879
[26]  Wu M H, Zhang H Q, Wang Z X, Shen S W, Le X C, Li X F. Chem. Commun., 2013, 49: 1407-1409
[27]  Tang Z M, Kang J W. Anal. Chem., 2006, 78: 2514-2520
[28]  Liu Y, Lu H J, Zhong W, Song P Y, Kong J L, Yang P Y, Girault H H, Liu B H. Anal. Chem., 2006, 78: 801-808
[29]  Jiao J, Miao A, Zhang X, Cai Y, Lu Y, Zhang Y, Lu H. Analyst, 2013, 138: 1645-1648
[30]  Bao H, Chen Q, Zhang L, Chen G. Analyst, 2011, 138: 5190-5196
[31]  Feng S, Yang N, Pennathur S, Goodison S, Lubman D M. Anal. Chem., 2009, 81: 3776-3783
[32]  Holden M A, Jung S Y, Cremer P S. Anal. Chem., 2004, 76: 1838-1843
[33]  Vong T, Schoffelen S, van Dongen S F M, van Beek T A, Zuilhof H, van Hest J C M. Chem. Sci., 2011, 2: 1278-1285
[34]  Sakai-Kato K, Kato M, Toyo'oka T. Anal. Chem., 2002, 74: 2943-2949
[35]  Sakai-Kato K, Kato M, Toyo'oka T. Anal. Chem., 2003, 75: 388-393
[36]  Ikemoto H, Chi Q J, Ulstrup J. J. Phys. Chem., 2010, 114: 16174-16180
[37]  Peterson D S, Rohr T, Svec F, Fréchet J M J. J. Proteome Res., 2002, 1: 563-568
[38]  Liu Y, Xue Y, Ji J, Chen X, Kong J L, Yang P Y, Girault H H, Liu B H. Mol. Cel. Proteomics, 2007, 6: 1428-1436
[39]  Ma J F, Liu J X, Sun L L, Gao L, Liang Z, Zhang L H, Zhang Y K. Anal. Chem., 2009, 81: 6534-6540
[40]  Yuan H M, Zhang L H, Hou C Y, Zhu G J, Tao D Y, Liang Z, Zhang Y K. Anal. Chem., 2009, 81: 8708-8714
[41]  Kundu S, Bhangale A S, Wallace W E, Flynn K M, Guttman C M, Gross R A, Beers K L. J. Am. Chem. Soc., 2011, 133: 6006-6011
[42]  Du L H, Luo X P. RSC Advances, 2012, 2: 2663-2665
[43]  Wang C, Li S J, Wu Z Q, Xu J J, Chen H Y, Xia X H. Lab Chip, 2010, 10: 639-646
[44]  Jiang H H, Zou H F, Wang H L, Ni J Y, Zhang Q, Zhang Y K. J. Chromatogr. A, 2000, 1903: 77-84
[45]  Xu S Y, Pan C S, Hu L G, Zhang Y, Guo Z, Li X. Electrophoresis, 2004, 25: 3669-3676
[46]  Schoffelen S, van Hest J C M. Soft Matter, 2012, 8: 1736-1746
[47]  Krenkova J, Foret F. Electrophoresis, 2004, 25: 3550-3563
[48]  Li Y, Xu X Q, Yan B, Deng C H, Yu W J, Yang P Y, Zhang X M. J. Proteome Res., 2007, 6: 2367-2375
[49]  辛宝娟(Xin B J), 刑国文(Xing G W). 化学进展(Prog. Chem.), 2010, 22: 593-602
[50]  Adalberto P R, dos Santos F J, Golfeto C C, Iemma M R C, de Souzaa D H F, Cass Q B. Analyst, 2012, 137: 4855-4859
[51]  Dulay M T, Baca Q J, Zare R N. Anal. Chem., 2005, 77: 4604-4610
[52]  Feng S, Ye M L, Jiang X G, Jin W H, Zou H F. J. Proteome Res., 2006, 5: 422-428
[53]  Logan T C, Clark D S, Stachowiak T B, Svec F, Fréchet J M J. Anal. Chem., 2007, 79: 6592-6598
[54]  Krenkova J, Lacher N A, Svec F. Anal. Chem., 2009, 81: 2004-2012
[55]  Ma J F, Liang Z, Qiao X Q, Deng Q L, Tao D Y, Zhang L H, Zhang Y K. Anal. Chem., 2008, 80: 2949-2956
[56]  Tang Z M, Wang T D, Kang J W. Electrophoresis, 2007, 28: 2981-2987
[57]  Liu A L, Zhou T, He F Y, Xu J J, Lu Y, Chen H Y, Xia X H. Lab Chip, 2006, 6: 811-818
[58]  Ji J, Zhang Y H, Zhou X Q, Kong J L, Tang Y, Liu B H. Anal. Chem., 2008, 80: 2457-2463
[59]  Mao H B, Yang T L, Cremer P S. Anal. Chem., 2002, 74: 379-385
[60]  Qu H Y, Wang H T, Huang Y, Zhong W, Lu H J, Kong J L, Yang P Y, Liu B H. Anal. Chem., 2004, 76: 6426-6433
[61]  Huang Y, Shan W, Liu B H, Liu Y, Zhang Y H, Zhao Y, Lu H J, Tang Y, Yang P Y. Lab Chip, 2006, 6: 534-539
[62]  Liu Y, Wang H T, Lu Q P, Qu H Y, Liu B H, Yang P Y. Lab Chip, 2010, 6: 2887-2893
[63]  Jang E, Son K J, Kim B, Koh W G. Analyst, 2010, 135: 2871-2878
[64]  Shui W Q, Fan J, Yang P Y, Liu C L, Zhai J J, Lei J, Yan Y, Zhao D Y, Chen X. Anal. Chem., 2006, 78: 4811-4819
[65]  Kataoka S, Takeuchi Y, Harada A, Yamada M, Endo A. Green Chem., 2010, 12: 331-337
[66]  Cosford R J O, Kuhr W G. Anal. Chem., 1996, 68: 2164-2169
[67]  Licklider L, Kuhr W G. Anal. Chem., 1998, 70: 1902-1908
[68]  Peterson D S, Rohr T, Svec F, Fréchet J M J. Anal. Chem., 2003, 75: 5328-5335
[69]  Qu Y Y, Xia S M, Yuan H M, Wu Q, Li M, Zou L J, Zhang L H, Liang Z, Zhang Y K. Anal. Chem., 2011, 83: 7457-7463
[70]  Yan X Y, Gilman S D. Electrophoresis, 2010, 31: 346-354
[71]  Berne C, Betancor L, Luckarift H R, Spain J C. Biomacromolecules, 2006, 7: 2631-2636
[72]  Hodgson R J, Besanger T R, Brook M A, Brennan J D. Anal. Chem., 2005, 77: 7512-7519
[73]  Mason B P, Price K E, Steinbacher J L, Bogdan A R, McQuade T D. Chem. Rev., 2007, 107: 2300-2318
[74]  Pohar A, Plazl I, Plazl P Z. Lab Chip, 2009, 9: 3385-3390
[75]  Yang L, Shi J, Chen C J, Wang S M, Zhu L D, Xie W L, Guo L P. Electrophoresis, 2009, 30: 3527-3533

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133