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Abstract
Glibenclamide (GLIB), an oral antidiabetic medication of the sulphonylurea drugs family, was stoichiometrically imprinted using tetrabutylammonium methacrylate as the functional monomer, for the first time in molecular imprinting, and utilising the sulphonylurea affinity for carboxylate anions. Solution association between the drug and the novel functional monomer was studied by 1H-NMR titrations, whereby evidence of sulphonylurea deprotonation followed by the formation of “narcissistic” GLIB dimers was found when tested in CDCl3, while an affinity constant in excess of 105 L mol-1 was measured in DMSO-d6. Detailed analysis of GLIB binding on the subsequently prepared imprinted and non-imprinted polymers confirmed deactivation of binding sites by exchange of a proton between GLIB and methacrylate, followed by extraction of the tetrabutylammonium counterion from the polymer matrix, resulting in overall reduced binding capacities and affinities by the imprinted material under equilibrium conditions. An optimised MI-SPE protocol, which included a binding site re-activation step, was developed for the extraction of GLIB from blood serum, whereby recoveries of up to 92.4% were obtained with exceptional sample clean-up.
Original language | English |
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Pages (from-to) | 8577-8583 |
Number of pages | 7 |
Journal | Journal of Materials Chemistry B |
Volume | 3 |
Early online date | 25 Sep 2015 |
DOIs | |
Publication status | Published - 2015 |
Keywords
- glibenclamide
- glyburide
- sulphonyl urea
- molecularly imprinted polymers
- solid-phase extraction
ASJC Scopus subject areas
- Analytical Chemistry
- Pharmaceutical Science
- Materials Chemistry
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Dive into the research topics of 'Tetrabutylammonium methacrylate as a novel receptor for selective extraction of sulphonylurea drugs from biological fluids using molecular imprinting'. Together they form a unique fingerprint.Activities
- 1 Hosting an academic visitor
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Aliya Nur Hasanah
Panagiotis Manesiotis (Host)
Sep 2014 → Nov 2014Activity: Hosting a visitor types › Hosting an academic visitor
Student theses
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Ion-pair based Molecular Imprinted Polymers for bioanalysis and sustainable use of organocatalysts
Author: Pessagno, F., Jul 2020Supervisor: Manesiotis, P. (Supervisor) & Muldoon, M. (Supervisor)
Student thesis: Doctoral Thesis › Doctor of Philosophy