Synthesis, spectroscopic, and analyte-responsive behavior of a polymerizable naphthalimide-based arboxylate probe and molecularly imprinted polymers prepared thereof

A naphthalimide-based fluorescent indicator monomer 1 for the integration into chromo- and fluorogenic molecularly imprinted polymers (MIPs) was synthesized and characterized. The monomer was equipped with a urea binding site to respond to carboxylate-containing guests with absorption and fluorescen...

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Veröffentlicht in:Journal of organic chemistry 2013, Vol.78 (4), p.1377
Hauptverfasser: Wagner, Ricarda, Wan, Wei, Biyakal, Mustafa, Benito Pena, Elena, Moreno-Bondi, Maria, Lazraq, Issam, Rurack, Knut, Sellergren, Börje
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Sprache:eng
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Zusammenfassung:A naphthalimide-based fluorescent indicator monomer 1 for the integration into chromo- and fluorogenic molecularly imprinted polymers (MIPs) was synthesized and characterized. The monomer was equipped with a urea binding site to respond to carboxylate-containing guests with absorption and fluorescence changes, namely a bathochromic shift in absorption and fluorescence quenching. Detailed spectroscopic analyses of the title compound and various models revealed the signaling mechanism. Titration studies employing benzoate and Z-L-phenylalanine (Z-L-Phe) suggest that indicator monomers such as the title compound undergo a mixture of deprotonation and complex formation in the presence of benzoate but yield hydrogen-bonded complexes, which are desirable for the molecular imprinting process, with weakly basic guests like Z-L-Phe. Compound 1 could be successfully employed in the synthesis of monolithic and thin-film MIPs against Z-L-Phe, Z-L-glutamic acid, and penicillin G. Chromatographic assessment of the selectivity features of the monoliths revealed enantioselective discrimination and clear imprinting effects. Immobilized on glass coverslips, the thin-film MIPs of 1 displayed a clear signaling behavior with a pronounced enantioselective fluorescence quenching dependence and a promising discrimination against cross-analytes.
ISSN:0022-3263
1520-6904
DOI:10.1021/jo3019522