111
Views
12
CrossRef citations to date
0
Altmetric
Biosensors

A New Methodology for the Rational Design of Molecularly Imprinted Polymers

, , &
Pages 1294-1306 | Received 20 Jan 2007, Accepted 27 Feb 2007, Published online: 31 May 2007

References

  • Baltes , M. R.H. , Dubois , J. G. and Hanocq , M. 1998 . Ethyl acetate extraction procedure and isocratic high‐performance liquid chromatographic assay for testosterone metabolites in cell microsomes . Journal of Chromatography B: Biomedical Sciences and Applications , 706 ( 2 ) : 201 – 207 .
  • Borts , D. J. and Bowers , L. D. 2000 . Direct measurement of urinary testosterone and epitestosterone conjugates using high‐performance liquid chromatography/tandem mass spectrometry . J. Mass Spectrom , 35 : 50 – 61 .
  • Cheong , S.‐H. , Rachkov , A. E. , Park , J.‐K. , Yano , K. and Karube , I. 1998 . Synthesis and binding properties of a noncovalent molecularly imprinted testosterone‐specific polymer . J. Polym. Sci. Part A , 36 : 1725 – 1732 .
  • Chianella , I. , Karim , K. , Piletska , E. V. , Preston , C. and Piletsky , S. A. 2006 . Computational design and synthesis of molecularly imprinted polymers with high binding capacity for pharmaceutical applications‐model case: Adsorbent for abacavir . Analytica Chimica Acta , 559 ( 1 ) : 73 – 78 .
  • Communities CotE . 1996 . Directive 96/22/EC. Off . J. Eur. Commun. Leg. , L125 : 3
  • Ferchaud , V. , Bizec , B. L. , Monteau , F. and Andre , F. 1998 . “ Determination of the exogenous character of testosterone in bovine urine by gas chromatography‐combustion‐isotope ratio mass spectrometry ” . In Analyst Vol. 123(12) , 2617 – 2620 . Cambridge, , UK
  • Idziak , I. , Benrebouh , A. and Deschamps , F. 2001 . Simple NMR experiments as a means to predict the performance of an anti‐17a‐ethynylestradiol molecularly imprinted polymer . Analytica Chimica Acta , 435 : 137 – 140 .
  • Jie , Z. and Xiwen , H. 1999 . Study of the nature of recognition in molecularly imprinted polymer selective for 2‐aminopyridine . Analytica Chimica Acta , 381 : 85 – 91 .
  • Kim , H. and Spivak , D. A. 2003 . New Insight into Modeling Non‐Covalently Imprinted Polymers . J. Am. Chem. Soc. , 125 : 11269 – 11275 .
  • Masque , N. , Marce , R. M. , Borrull , F. , Cormack , P. A.G. and Sherrington , D. C. 2000 . Synthesis and evaluation of a molecularly imprinted polymer for selective on‐line solid‐phase extraction of 4‐nitrophenol from environmental water . Anal. Chem. , 72 ( 17 ) : 4122 – 4126 .
  • Matsui , J. , Kubo , H. and Takeuchi , T. 1998 . Design and preparation of molecularly imprinted atrazine‐receptor polymers: investigation of functional monomers and solvents . Analytical Sciences , 14 : 699 – 702 .
  • Mosbach , K. and Haupt , K. 1999 . Some new developments and challenges in non‐covalent molecular imprinting technology . Journal of molecular recognition , 11 ( 1–6 ) : 62 – 68 .
  • Pauling , L. 1940 . A theory of the structure and process of formation of antibodies . J. Am. Chem. Soc. , 62 : 2643 – 2657 .
  • Pauling , L. and Campbell , D. H. 1942 . The production of antibodies in vitro . Science , 95 ( 2469 ) : 440 – 441 .
  • Rachkov , A. E. , Cheong , S.‐H. , El'skaya , A. V. , Yano , K. and Karube , I. 1998 . Molecularly imprinted polymers as artificial steroid receptors . Polym. Adv. Technol. , 9 ( 8 ) : 511 – 519 .
  • Sellergren , B. 1997 . Noncovalent molecular imprinting: antibody‐like molecular recognition in polymeric network materials . Trends in Analytical Chemistry , 16 ( 6 ) : 310 – 320 .
  • Sellergren , B. and Lanza , F. 2001 . Molecularly imprinted polymers in solid phase extractions . Tech. Instrum. Anal. Chem. , 23 : 355 – 375 . (Molecularly Imprinted Polymers)
  • (WADA) WADA . 2005 . The 2005 Prohibited List . http://www.wada‐ama.org/en/dynamic.ch2
  • Wu , L. , Sun , B. , Li , Y. and Chang , W. 2003 . Study properties of molecular imprinting polymer using a computational approach . The Analyst , 128 : 944 – 949 .
  • Ye La , K. H. 2004 . Molecularly imprinted polymers as antibody and receptor mimics for assays, sensors and drug discovery . Anal. Bioanal. Chem. , 378 ( 8 ) : 1887 – 1897 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.