175
Views
6
CrossRef citations to date
0
Altmetric
Biosensors

Synthesis, Application, and Molecular Recognition Mechanism Study of Phenylalanine Molecularly Imprinted Polymer

, &
Pages 3129-3147 | Received 22 Jun 2007, Accepted 15 Jul 2007, Published online: 04 Feb 2008

References

  • Belokon , Y. N. , Tararov , V. I. Savel'eva , T. F. 1983 . Memory of a polymeric matrix, stabilizing the initial configuration of potassium bis[N‐(5‐methacrylooylamino)‐salicylidene‐(S)‐norvalinato]‐cobaltate(III) in the deuterium exchange . Macromol. Chem. , 184 : 2213 – 2223 .
  • Chianella , I. , Lotierzo , M. Piletsky , S. A. 2002 . Rational design of a polymer specific for microcystin‐LR using a computational approach . Anal. Chem. , 74 : 1288 – 1293 .
  • Dhal , P. K. and Arnold , F. H. 1991 . Template‐mediated synthesis of metal‐complexing polymers for molecular recognition . J. Am. Chem. Soc. , 113 : 7417 – 7418 .
  • Fountoulakis , M. and Lahm , H. W. 1998 . Hydrolysis and amino acid composition analysis of proteins . J. Chrom. A , 826 : 109 – 134 .
  • Frisch , M. J. , Trucks , G. W. Schlegel , H. B. 2003 . “ Gaussian 03, Revision B.05 ” . Pittsburgh, PA : Gaussian Inc. .
  • Hall , A. J. , Emgenbroich , M. and Sellergren , B. 2005 . Imprinted polymers . Topics in Curr. Chem. , 249 : 317 – 349 .
  • Haupt , K. and Mosbach , K. 1998 . Some new developments and challenges in non‐covalent molecular imprinting technology . J. Mol. Recogn. , 11 : 62 – 68 .
  • Haupt , K. 2003 . Imprinted polymers—tailor‐made mimics of antibodies and receptors . Chem. Commun. , 2 : 171 – 178 .
  • Henry , O. Y.F. , Cullen , D. C. and Piletsky , S. A. 2005 . Optical interrogation of molecularly imprinted polymers and development of MIP sensors: A review . Anal. Bioanal. Chem. , 382 : 947 – 956 .
  • Hu , S. G. , Li , L. and He , X. W. 2005 . Molecularly imprinted polymers: A new kind of sorbent with high selectivity in solid phase extraction . Progr. Chem. , 17 : 531 – 543 .
  • Jiang , Z. Y. , Yu , Y. X. and Wu , H. 2006 . Preparation of CS/GPTMS hybrid molecularly imprinted membrane for efficient chiral resolution of phenylalanine isomers . J. Membr. Sci. , 280 : 876 – 882 .
  • Lehmann , M. , Dettling , M. , Brunner , H. and Tovar , G. E.M. 2004 . Affinity parameters of amino acid derivative binding to molecularly imprinted nanospheres consisting of poly[(ethylene glycol dimethacrylate)‐co‐(methacrylic acid)] . J. Chrom. B , 808 : 43 – 50 .
  • Lin , J. M. , Nakagama , T. , Uchiyama , K. and Hobo , T. 1996 . Molecularly imprinted polymer as chiral selector for enantioseparation of amino acids by capillary gel electrophoresis . Chromatographia , 43 : 585 – 591 .
  • Lin , J. M. , Nakagama , T. , Uchiyama , K. and Hobo , T. 1997 . Enantioseparation of D,L‐phenylalanine by molecularly imprinted polymer particles filled capillary electrochromatography . J. Liq. Chrom. Rel. Tech. , 20 : 1489 – 1506 .
  • Mosbach , K. and Ramström , O. 1996 . The emerging technique of molecular imprinting and its future impact on biotechnology . Biotechnology , 14 : 163 – 170 .
  • Mukawa , T. , Goto , T. and Takeuchi , T. 2002 . Post‐oxidative conversion of thiol residue to sulfonic acid in the binding sites of molecularly imprinted polymers: disulfide based covalent molecular imprinting for basic compounds . Analyst , 127 : 1407 – 1409 .
  • O'Mahony , J. , Wei , S. , Molinelli , A. and Mizaikoff , B. 2006 . Imprinted polymeric materials. Insight into the nature of prepolymerization complexes of quercetin imprinted polymers . Anal. Chem. , 78 : 6187 – 6190 .
  • Park , J. K. and Lee , J. W. 2005 . Characteristics of selective adsorption using D‐Phenylalanine imprinted terpolymer beads . Kor. J. Chem. Eng. , 22 : 927 – 931 .
  • Park , J. K. , Khan , H. and Lee , W. 2004 . Preparation of phenylalanine imprinted polymer by the sol‐gel transition method . Enzym. Microb. Tech. , 35 : 688 – 693 .
  • Piletsky , S. A. , Karim , K. Piletska , E. V. 2001 . Recognition of ephedrine enantiomers by molecularly imprinted polymers designed using a computational approach . Analyst , 126 : 1826 – 1830 .
  • Potterat , O. and Hamburger , M. 2006 . Natural products in drug discovery—Concepts and approaches for tracking bioactivity . Curr. Org. Chem. , 10 : 899 – 920 .
  • Rudy , J. L. , Rutledge , J. C. and Lewis , S. L. 1987 . Pehnylalanine and tyrosine in serum and eluates from dired blood spots as determined by reversed‐phase liquid chromatography . Clin. Chem. , 33 : 1152 – 1154 .
  • Sergeyeva , T. A. , Piletsky , S. A. Brovko , A. A. 1999 . Selective recognition of atrazine by molecularly imprinted polymer membranes. Development of conductometric sensor for herbicides detection . Anal. Chim. Acta , 392 : 105 – 111 .
  • Subrahmanyam , S. , Piletsky , S. A. Piletska , E. V. 2001 . Bite‐and‐Switch’ approach using computationally designed molecularly imprinted polymers for sensing of creatinine . Biosens. Bioelectron. , 16 : 631 – 637 .
  • Svenson , J. , Karlsson , J. G. and Nicholls , I. A. 2004 . 1H Nuclear magnetic resonance study of the molecular imprinting of (–)‐nicotine: Template self‐association, a molecular basis for cooperative ligand binding . J. Chrom. A , 1024 : 39 – 44 .
  • Vlatakis , G. , Andersson , L. I. , Muller , R. and Mosbach , K. 1993 . Drug assay using antibody mimics made by molecular imprinting . Nature , 361 : 645 – 647 .
  • Wu , L. Q. and Li , Y. Z. 2003 . Picolinamide‐Cu(Ac)2‐imprinted polymer with high potential for recognition of picolinamide‐copper acetate complex . Anal. Chim. Acta , 482 : 175 – 181 .
  • Wu , L. Q. and Li , Y. Z. 2004 . Metal ion mediated molecular‐imprinting polymer for indirect recognition of formate, acetate, and propionate . Anal. Chim. Acta , 517 : 145 – 151 .
  • Wulff , G. and Sarhan , A. 1972 . The use of polymers with enzyme analogues structures for the resolution of racemates . Angew. Chem. Int. Ed. Engl. , 11 : 341 – 344 .
  • Yang , M. L. and Li , Y. Z. 2005 . Molecularly imprinted polymer with salicylaldehyde‐Cu(OAc)2 as template . J. Mol. Recogn. , 18 : 103 – 108 .
  • Zhang , Q. H. , Piacham , T. Drew , M. 2006 . Molecularly imprinted nanoreactors for regioselective huisgen 1,3‐dipolar cycloaddition reaction . J. Am. Chem. Soc. , 128 : 4178 – 4179 .

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.