Molecular recognition in synthetic polymers. Enantiomeric resolution of amide derivatives of amino acids on molecularly imprinted polymers
- 1 July 1989
- journal article
- Published by Wiley in Journal of Molecular Recognition
- Vol. 2 (1), 1-5
- https://doi.org/10.1002/jmr.300020102
Abstract
Molecular imprints were prepared using L‐phenylalanine anilide as the print molecule and methacrylic acid as the functional monomer. Methacrylic acid interacts ionically with the primary amine of the print molecule and via hydrogen bonding with the amide function. In the HPLC mode such polymers were shown to exhibit efficient enantiomeric resolution of a racemic mixture of the original print molecule. Enantiomeric resolution was shown to be dependent on the ratio of methacrylic acid to print molecule in the pre‐polymerization mixture and specific for the presence of both print molecule and functional monomer. Further analysis showed the importance of both the primary amino and amide functions in the correct stereochemistry for recognition and enantiomeric resolution of compounds on such polymers. Other amide derivatives of amino acids including p‐nitoranilides, β‐naphthylamides and amides were recognized by such polymers, and enantiomeric resolution was obtained for amide derivatives of amino acid ranging from alanine to tryptophan on a single polymer. The implications of these findings with respect to the mechanism of recognition and the ability to predict enantiomeric resolution of molecules on molecularly imprinted polymers will be discussed.Keywords
This publication has 9 references indexed in Scilit:
- Recent advances in the preparation and use of molecularly imprinted polymers for enantiomeric resolution of amino acid derivativesJournal of Chromatography A, 1989
- Molecular imprinting of amino acid derivatives at low temperature (0°C) using photolytic homolysis of azobisnitrilesAnalytical Biochemistry, 1989
- Highly enantioselective and substrate-selective polymers obtained by molecular imprinting utilizing noncovalent interactions. NMR and chromatographic studies on the nature of recognitionJournal of the American Chemical Society, 1988
- Improved chromatography: prearranged distances between boronate groups by the molecular imprinting approachJournal of Chromatography A, 1987
- Molecular Recognition in Polymers Prepared by Imprinting with TemplatesPublished by American Chemical Society (ACS) ,1986
- Enzyme-analog built polymers. 20. Molecular recognition through the exact placement of functional groups on rigid matrixes via a template approachJournal of the American Chemical Society, 1986
- Molecular recognition on synthetic amorphous surfaces. The influence of functional group positioning on the effectiveness of molecular recognitionJournal of the American Chemical Society, 1986
- Molecular imprinting of amino acid derivatives in macroporous polymersJournal of Chromatography A, 1985
- Imprinting of amino acid derivatives in macroporous polymersTetrahedron Letters, 1984