Bitterless guaifenesin prodrugs-design, synthesis, characterization, in vitro kinetics, and bitterness studies.

Amin Thawabteh, Filomena Lelario, Laura Scrano, Sabino A Bufo, Stefanie Nowak, Maik Behrens, Antonella Di Pizio, Masha Y Niv, Rafik Karaman

Journal: Chemical biology & drug design 2020;93(3):262-271

PMID: 30276968

Abstract

A respected number of drugs suffer from bitter taste which results in patient incompliance. With the aim of solving the bitterness of guaifenesin, dimethyl maleate, maleate, glutarate, succinate, and dimethyl succinate prodrugs were designed and synthesized. Molecular orbital methods were utilized for the design of the ester prodrugs. The density functional theory (DFT) calculations revealed that the hydrolysis efficiency of the synthesized prodrugs is significantly sensitive to the pattern of substitution on C=C bond and distance between the nucleophile and the electrophile. The hydrolysis of the prodrugs was largely affected by the pH of the medium. The experimental t for the hydrolysis of guaifenesin dimaleate ester prodrugs in 1N HCl was the least and for guaifenesin dimethyl succinate was the highest. Functional heterologous expression of TAS2R14, a broadly tuned bitter taste receptor responding to guaifenesin, and experiments using these prodrugs revealed that, while some of the prodrugs still activated the receptor similarly or even stronger than the parent substance, succinate derivatization resulted in the complete loss of receptor responses. The predicted binding modes of guaifenesin and its prodrugs to the TAS2R14 homology model suggest that the decreased activity of the succinate derivatives may be caused by a clash with Phe247.

© 2018 John Wiley & Sons A/S.

Address: Department of Sciences, University of Basilicata, Potenza, Italy.; Department of European Cultures (DICEM), University of Basilicata, Potenza, Italy.; German Institute of Human Nutrition Potsdam-Rehbruecke, Nuthetal, Germany.; German Institute of Human Nutrition Potsdam-Rehbruecke, Nuthetal, Germany.; Leibniz-Institute for Food Systems Biology at the Technical University of Munich, Freising, Germany.; Leibniz-Institute for Food Systems Biology at the Technical University of Munich, Freising, Germany.; The Institute of Biochemistry, Food and Nutrition, The Robert H Smith Faculty of Agriculture, Food and Environment, The Hebrew University, Rehovot, Israel.; The Fritz Haber Center for Molecular Dynamics, The Hebrew University, Rehovot, Israel.; The Institute of Biochemistry, Food and Nutrition, The Robert H Smith Faculty of Agriculture, Food and Environment, The Hebrew University, Rehovot, Israel.; The Fritz Haber Center for Molecular Dynamics, The Hebrew University, Rehovot, Israel.; Department of Sciences, University of Basilicata, Potenza, Italy.; Pharmaceutical Sciences Department, Faculty of Pharmacy, Al-Quds University, Jerusalem, Palestine.

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