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Voltammetry coupled to mass spectrometry in the presence of isotope O labeled water for the prediction of oxidative transformation pathways of activated aromatic ethers: Acebutolol
Authors:Ugo Bussy,Illa Tea,Vé  ronique Ferchaud-Roucher,Michel Krempf,Virginie Silvestre,Nicolas Galland,Denis Jacquemin,Moa Andresen-Bergströ  m,Ulrik Jurva,Mohammed Boujtita
Affiliation:1. LUNAM Université de Nantes, CNRS, Chimie et Interdisciplinarité: Synthèse, Analyse et Modélisation (CEISAM), UMR 6230, 2 rue de la Houssinière, BP 92208, F-44322 Nantes cedex 3, France;2. Université de Nantes, Plateforme Spectrométrie de Masse, CRNH, SFR Santé F. Bonamy, Institut du Thorax, UMR S1087, IRT-UN, BP 70721, 8 Quai Moncousu, 44007 Nantes cedex 1, France;3. Institut Universitaire de France, 103, Boulevard Saint-Michel, 75005 Cedex 5 France;4. CVGI iMed DMPK, AstraZeneca R&D Mölndal, Mölndal, Sweden
Abstract:The coupling between an electrochemical cell (EC) and a mass spectrometer (MS) is a useful screening tool (EC-MS) to study the oxidative transformation pathways of various electroactive species. For that purpose, we showed that the EC-MS method, carried out in the presence and absence of isotope 18O labeled water leads not only to a fast identification of oxidation products but also leads to a fast elucidation of the mechanism pathway reaction. We examined herein the case of the electrochemical hydrolysis of activated aromatic ether. Acebutolol (β-blockers) was selected herein as model of activated aromatic ether, and its electrochemical oxidation was examined in both the presence and absence of isotope 18O labeled water. To elucidate electrochemical hydrolysis pathway reaction: O-dealkylation or O-dealkoxylation, our approach was used to prove its applicability. The electrochemical oxidation mechanism was then elucidated showing an O-dealkoxylation reaction. In addition, density functional theory (DFT) calculations fully support the experimental conclusions.
Keywords:EC-MS   Mass-voltammetry   Acebutolol   O-Dealkylation   Prediction of oxidative metabolism
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