中文
Announcement
More
Progress in Chemistry Previous Articles   Next Articles

• Review •

Development of Dummy Template Molecularly Imprinted Techniques in Sample Pretreatment

Xu Zhigang, Liu Zhimin, Yang Baomin, Zi Futing   

  1. Faculty of Science, Kunming University of Science and Technology, Kunming 650093, China
  • Received: Revised: Online: Published:
PDF ( 778 ) Cited
Export

EndNote

Ris

BibTeX

Molecularly imprinted polymers are widely used in complex sample pretreatment. It could eliminate the interference of complicated matrix. It shows high selectivity to its template and good chemical stablity. A dummy template instead of a template molecule to prepare molecularly imprinted polymer could overcome the dissolvability of the template in polymerization solvent. The dummy template molecularly imprinted polymer still shows specific ability to the structure analogous analyte. It could avoid the risk of leakage of template molecule in trace analysis. In this paper, the development of dummy template molecularly imprinted techniques in sample preparation is summarized, including the application of dummy template molecularly imprinted techniques in solid phase extraction, solid phase microextraction, chromatographic solid phase material and matrix solid phase dispersion extraction. The trends of dummy template molecularly imprinted techniques in sample pretreatment are also discussed. Contents 1 Introduction
2 Molecularly imprinted sample pretreatment techniques
3 Dummy template molecularly imprinted sample pretreatment techniques
3.1 Solid phase extraction
3.2 Solid phase microextraction
3.3 Chromatographic solid phase material
3.4 Matrix solid phase dispersion extraction
3.5 Other techniques
4 Conclusions and outlook

CLC Number: 

[1] 李攻科 (Li G K), 胡玉玲 (Hu Y L), 阮贵华 (Ruan G H). 样品前处理仪器与装置 (Sample Pretreatment Equipment and Devices), 北京: 化学工业出版社 (Beijing: Chemical Industry Press), 2007. 1-11
[2] Chen Y, Guo Z P, Wang X Y, Qiu C G. J. Chromatogr. A, 2008, 1184(1/2): 191-219
[3] 黄健祥 (Huang J X), 胡玉斐 (Hu Y F), 潘加亮 (Pan J L), 许志刚 (Xu Z G), 李攻科 (Li G K). 中国科学B辑: 化学 (Science China B: Chemistry), 2009, 39(8): 733-746
[4] 胡小刚 (Hu X G), 李攻科 (Li G K). 分析化学 (Chinese Journal of Analytical Chemistry), 2006, 34(7): 1035-1041
[5] Matsui J, Fujiwara K, Ugata S, Takeuchi T. J. Chromatogr. A, 2000, 889(1/2): 25-31
[6] Tamayo F G, Turiel E, Martín-Esteban A. J. Chromatogr. A, 2007, 1152(1/2): 32-40
[7] Turiel E, Martín-Esteban A. J. Sep. Sci., 2009, 32(19): 3278-3284
[8] Ansell R J. Adv. Drug Deliv. Rev., 2005, 57(12): 1809-1835
[9] 许志刚 (Xu Z G), 胡玉玲 (Hu Y L), 李攻科 (Li G K). 分析化学 (Chinese Journal of Analytical Chemistry), 2011, 39(11): 1766-1773
[10] Olwill A, Hughes H, O'Riordain M, McLoughlin P. Biosens. Bioelectron., 2004, 20(6): 1045-1050
[11] 张慧 (Zhang H), 何华 (He H), 李洁 (Li J), 李卉 (Li H), 姚誉阳 (Yao Y Y). 化学进展 (Progress in Chemistry), 2011, 23(10): 2140-2150
[12] Sellergren B. Anal. Chem., 1994, 66(9): 1578-1582
[13] Kloskowski A, Pilarczyk M, Przyjazny A, Namiesnik J. Crit. Rev. Anal. Chem., 2009, 39(1): 43-58
[14] Lasakova M, Jandera P. J. Sep. Sci., 2009, 32(5/6): 799-812
[15] Andersson L I, Paprica A, Arvidsson T. Chromatographia, 1997, 46(1/2): 57-62
[16] Martin P D, Wilson T D, Wilson I D, Jones G R. Analyst, 2001, 126(6): 757-759
[17] Jodlbauer J, Maier N M, Lindner W. J. Chromatogr. A, 2002, 945(1/2): 45-63
[18] Theodoridis G, Kantifes A, Manesiotis P, Raikos N, Tsoukali-Papadopoulou H. J. Chromatogr. A, 2003, 987(1/2): 103-109
[19] Kube T, Hosoya K, Watabe Y, Ikegami T, Tanaka N, Sano T, Kaya K. J. Chromatogr. A, 2003, 987(1/2): 389-394
[20] Martin P D, Jones G R, Stringer F, Wilson I D. Analyst, 2003, 128(4): 345-350
[21] Andersson L I, Hardenborg E, Sandberg-Ställ M, Möller K, Henriksson J, Bramsby-Sjöström I, Olsson L, Abdel-Rehim M. Anal. Chim. Acta, 2004, 526(2): 147-154
[22] Martin P D, Jones G R, Stringer F, Wilson I D. J. Pharm. Biomed. Anal., 2004, 35(5): 1231-1239
[23] Claude B, Morin P, Bayoudh S, Ceaurriz J D. J. Chromatogr. A, 2008, 1196/1197: 81-88
[24] Jégourel D, Delépée R, Breton F, Rolland A, Vidal R. Bioorg. Med. Chem., 2008, 16(19): 8932-8939
[25] Chen S M, Zhang Z J. Spectrochim. Acta Part A, 2008, 70(1): 36-41
[26] 赵睿 (Zhao R), 刘祥军 (Liu X J). 分析化学 (Chinese Journal of Analytical Chemistry), 2009, 37: D024
[27] Liu X J, Liu J Z, Huang Y Y, Zhao R, Liu G Q, Chen Y. J. Chromatogr. A, 2009, 1216(44): 7533-7538
[28] Feás X, Seijas J A, Vázquez-Tato M P, Regal P, Cepeda A, Fente C. Anal. Chim. Acta, 2009, 631(2): 237-244
[29] Chapuis-Hugon F, Cruz-Vera M, Savane R, Ali W H, Valcarcel M, Deveaux M, Pichon V. J. Sep. Sci., 2009, 32(19): 3301-3309
[30] Feás X, Ye L, Regal P, Fente C A, Hosseini S, Cepeda A. J. Sep. Sci., 2009, 32(10): 1740-1747
[31] Zhao W H, Sheng N, Zhu R, Wei F D, Cai Z, Zhai M J, Du S H, Hu Q. J. Hazard. Mater., 2010, 179(1/3): 223-229
[32] Yin J F, Meng Z H, Du M J, Liu C, Song M Y, Wang H L. J. Chromatogr. A, 2010, 1217(33): 5420-5426
[33] Li M, Zhang L Y, Meng Z H, Wang Z Y, Wu H. J. Chromatogr. B, 2010, 878(25): 2333-2338
[34] Kawaguchi M, Hayatsu Y, Nakata H, Ishii Y, Ito R, Saito K, Nakazawa H. Anal. Chim. Acta, 2005, 539(1/2): 83-89
[35] Sambe H, Hoshina K, Hosoya K, Haginaka J. J. Chromatogr. A, 2006, 1134(1/2): 16-23
[36] Boyd B, Björk H, Billing J, Shimelis O, Axelsson S, Leonora M, Yilmaz E. J. Chromatogr. A, 2007, 1174(1/2): 63-71
[37] Yan H Y, Qiao F X, Raw K H. Chromatographia, 2009, 70(7/8): 1087-1093
[38] Lordel S, Chapuis-Hugon F, Eudes V, Pichon V. J. Chromatogr. A, 2010, 1217(43): 6674-6680
[39] 朱秀芳 (Zhu X F), 曹秋娥 (Cao Q E), 汪国松 (Wang G S), 侯能邦 (Hou N B), 丁忠涛 (Ding Z T). 分析化学 (Chinese Journal of Analytical Chemistry), 2006, 34: S118-S122
[40] 王江涛 (Wang J T), 宋兴良 (Song X L). 分析化学 (Chinese Journal of Analytical Chemistry), 2010, 38(8): 1121-1126
[41] Wang H, Yan H Y, Qiu M D, Qiao J D, Yang G L. Talanta, 2011, 85(4): 2100-2105
[42] Yan H Y, Qiao J D, Wang H, Yang G L, Row K H. Analyst, 2011, 136(12): 2629-2634
[43] Khorrami A R, Taherkhani M. Chromatographia, 2011, 73: S151-S156
[44] Zhu H P, Ma L G, Fang G Z, Pan M F, Lu J P, Wang X N, Wang S. Anal. Methods, 2011, 3(2): 393-399
[45] Yin J F, Meng Z H, Zhu Y S, Song M Y, Wang H L. Anal. Methods, 2011, 3(1): 173-180
[46] 彭宁 (Peng N), 阎凤超 (Yan F C), 陈磊 (Chen L), 黄雪松 (Huang X S). 分析化学 (Chinese Journal of Analytical Chemistry), 2010, 38(4): 559-563
[47] 郑亚秋 (Zheng Y Q), 曹湛 (Cao Z), 郭宏斌 (Guo H B), 张青杰 (Zhang Q J), 贺利民 (He L M), 陈清菊 (Chen Q J), 骆飚 (Luo B). 分析化学 (Chinese Journal of Analytical Chemistry), 2010, 38(1): 95-99
[48] Kareuhanon W, Lee V S, Nimmanpipug P, Tayapiwatana C, Pattarawarapan M. Chromatographia, 2009, 70(11/12): 1531-1537
[49] Malitesta C, Picca R A, Ciccarella G, Sgobba V, Brattoli M. Sensors, 2006, 6(8), 915-924
[50] 徐莉 (Xu L), 何剑峰 (He J F). 中山大学学报 (Acta Scientiarum Naturalium Universitatis Sunyatseni), 2010, 49(3): 61-64
[51] 刘微波 (Liu W B), 陈伟 (Chen W), 彭池方 (Peng C F), 胥传来 (Xu C L). 食品科学 (Food Science), 2011, 32(10): 61-65
[52] Huang J D, Xing X R, Zhang X M, He X R, Liu Q, Lian W J, Zhu H. Food Res. Inter., 2011, 44(1): 276-281
[53] Li C Y, Wang C F, Wang C H, Hu S S. Sensors and Actuators B, 2006, 117(1): 166-171
[54] Belardi R P, Pawliszyn J. Water Pollut. Res. J. Can., 1989, 24(1): 179-191
[55] Koster E H M, Crescenzi C, Hoedt W D, Ensing K, Jong G J D. Anal. Chem., 2001, 73(13): 3140-3145
[56] Zhang S W, Xing J, Cai L S, Wu C Y. Anal. Bioanal. Chem., 2009, 395(2): 479-487
[57] Zhang S W, Zou C J, Luo N, Weng Q F, Cai L S, Wu C Y, Xing J. Chin. Chem. Lett., 2010, 21(1): 85-88
[58] Baltussen E, Sandra P, David F, Cramers C. J. Microcol. Sep., 1999, 11(10): 737-747
[59] 许志刚 (Xu Z G), 胡玉玲 (Hu Y L), 罗学军 (Luo X J), 李攻科 (Li G K). 分析测试学报 (Journal of Instrumental Analysis), 2009, 28(2): 250-256
[60] Zhu X L, Cai J B, Yang J, Su Q D, Gao Y. J. Chromatogr. A, 2006, 1131(1/2): 37-44
[61] Zhu X L, Zhu Q S. J. Appl. Polym. Sci., 2006, 109(4): 2665-2670
[62] Xu Z G, Hu Y F, Hu Y L, Li G K. J. Chromatogr. A, 2010, 1217(22): 3612-3618
[63] Hu Y L, Li J W, Hu Y F, Li G K. Tanlanta, 2010, 82(2): 464-470
[64] Yang L Q, Zhao X M, Zhou J. Anal. Chim. Acta, 2010, 670(1/2): 72-77
[65] Xu Z G, Song C Y, Hu Y L, Li G K. Tanlanta, 2011, 84(2): 464-470
[66] 许志刚 (Xu Z G). 中山大学博士学位论文 (Doctoral Dissertation of Sun Yat-sen University), 2010, 123-148
[67] Bruheim I, Liu X C, Pawliszyn J. Anal. Chem., 2003, 75(4): 1002-1010
[68] Wang X J, Xu Z L, Feng J L, Bing N C, Yang Z G. J. Membr. Sci., 2008, 313(1/2): 97-105
[69] Kempe M, Mosbach K. J. Chromatogr. A, 1995, 694(1): 3-13
[70] Ansell R J. Adv. Drug Deliv. Rev., 2005, 57(12): 1809-1835
[71] Matsui J, Fujiwara K, Takeuchi T. Anal. Chem., 2000, 72(8): 1810-1813
[72] Quaglia M, Chenon K, Hall A J, Lorenzi E D, Sellergren B. J. Am. Chem. Soc., 2001, 123(10): 2146-2154
[73] Wang J C, Guo R B, Chen J P, Zhang Q, Liang X M. Anal. Chim. Acta, 2005, 540(2): 307-315
[74] Urraca J L, Marazuela M D, Merino E R, Orellana G, Moreno-Bondi M C. J. Chromatogr. A, 2006, 1116(1/2): 127-134
[75] Hall A J, Quaglia M, Manesiotis P, Lorenzi E, Sellergren B. Anal. Chem., 2006, 78(24): 8362-8367
[76] Zhang H T, Song T, Zhang W, Hua W, Pan C P. Bioorg. Med. Chem., 2007, 15(18): 6089-6095
[77] Qiao F X, Sun H W. J. Pharm. Biomed. Anal., 2010, 53(4): 795-798
[78] Sode K, Ohta S, Yanai Y, Yamazaki T. Biosens. Bioelectron., 2003, 18(12): 1485-1490
[79] 刘国霞 (Liu G X). 华中科技大学硕士学位论文 (Master Dissertation of Huazhong University of Science and Technology), 2008, 14-36
[1] Tianyu Zhou, Yanbo Wang, Yilin Zhao, Hongji Li, Chunbo Liu, Guangbo Che. The Application of Aqueous Recognition Molecularly Imprinted Polymers in Sample Pretreatment [J]. Progress in Chemistry, 2022, 34(5): 1124-1135.
[2] Bo Li, Lijian Ma, Ning Luo, Shoujian Li, Yunming Chen, Jinsong Zhang. Extraction and Separation of Uranium via Solid Phase Extraction [J]. Progress in Chemistry, 2020, 32(9): 1316-1333.
[3] Yujian Liu, Zhimin Liu, Zhigang Xu, Gongke Li. Stir Bar Sorptive Extraction Technology [J]. Progress in Chemistry, 2020, 32(9): 1334-1343.
[4] Zhihua Song, Shenghong Li, Gangqiang Yang, Na Zhou, Lingxin Chen. Sample Pretreatment, Analysis and Detection of Ginsenosides [J]. Progress in Chemistry, 2020, 32(2/3): 239-248.
[5] Liangrong Yang, Huifang Xing, Hongnan Qu, Jiemiao Yu, Huizhou Liu. External Field Enhanced Environmental Responsive Solid Extraction Technology [J]. Progress in Chemistry, 2019, 31(11): 1615-1622.
[6] Lei Bai, Yanfeng Wang, Shuhui Huo, Xiaoquan Lu. Application of Food and Water Samples Pretreatment Using Functional Metal-Organic Frameworks Materials [J]. Progress in Chemistry, 2019, 31(1): 191-200.
[7] Yang Yukun, Wang Xiaomin, Fang Guozhen, Yun Yaguang, Guo Ting, Wang Shuo. Electrochemiluminescence Analysis Based on Molecular Imprinting Technique [J]. Progress in Chemistry, 2016, 28(9): 1351-1362.
[8] Wang Ruiying, Zhang Chaoyan, Wang Shuping, Zhou Youya. Synthesis and Application of Magnetic Metal-Organic Frameworks [J]. Progress in Chemistry, 2015, 27(7): 945-952.
[9] Chen Jinmei Zeng Jingbin Chen Wenfeng Huang Xiaoli Chen Xi. Development of New Coatings for Solid Phase Microextraction [J]. Progress in Chemistry, 2009, 21(09): 1922-1929.
[10] . Advances in Liquid-Phase Microextraction [J]. Progress in Chemistry, 2009, 21(04): 696-704.
[11]

Li Ruiping, Zhang Yi, Huang Yingping

. Determination of Tetracycline Antibiotics in the Environmental Samples [J]. Progress in Chemistry, 2008, 20(12): 2075-2082.
[12] Hu Shuguo,Li Li,He Xiwen**. Molecularly Imprinted Polymers: A New Kind of Sorbent with High Selectivity in Solid Phase Extraction [J]. Progress in Chemistry, 2005, 17(03): 531-543.
[13] Shi Ruixue,Guo Chenghai,Zou Xiaohong,Zhu Chunye,Zuo Yanjun,Deng Yundu. The Development of Research in Molecular Imprinting Technique [J]. Progress in Chemistry, 2002, 14(03): 182-.
[14] Jia Jinping,He Yi,Huang Junxiong. Solid-Phase Microextraction in the Pretreatment of Environmental Samples [J]. Progress in Chemistry, 1998, 10(01): 74-.
[15] Huang Junxiong. The Progress of Sample Preparation and Treatment Solvent-Free Extraction Technologies [J]. Progress in Chemistry, 1997, 9(02): 179-.