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Theoretical and Experimental Investigation of Autoxidation Propensity of Selected Drugs in Solution State.
Iyer, Jayant; Brunsteiner, Michael; Ray, Andrew; Davis, Adrian; Saraf, Isha; Paudel, Amrit.
Affiliation
  • Iyer J; Research Center Pharmaceutical Engineering GmbH (RCPE), Graz 8010, Austria.
  • Brunsteiner M; Research Center Pharmaceutical Engineering GmbH (RCPE), Graz 8010, Austria.
  • Ray A; Dew Modalities Product Development, Pharmaceutical Technology & Development, Operations, AstraZeneca, Macclesfield SK10 2NA, United Kingdom.
  • Davis A; Pfizer Worldwide Research and Development, Sandwich, Kent CT13 9NJ, United Kingdom.
  • Saraf I; Research Center Pharmaceutical Engineering GmbH (RCPE), Graz 8010, Austria.
  • Paudel A; Research Center Pharmaceutical Engineering GmbH (RCPE), Graz 8010, Austria.
Mol Pharm ; 20(3): 1768-1778, 2023 03 06.
Article de En | MEDLINE | ID: mdl-36757102
ABSTRACT
The C-H bond dissociation energy (BDE) of drug molecules is often used to estimate their relative propensities to undergo autoxidation. BDE calculations based on electronic structures provide a convenient means to estimate the risk for a given compound to degrade via autoxidation. This study aimed to verify the utility of calculated C-H BDEs of a range of drug molecules in predicting their autoxidation propensities, in the solution state. For the autoxidation study, 2,2'-azobis (2-methylpropionitrile) was employed as the solution state stressor, and the experimental reaction rate constants were determined employing ultraperformance liquid chromatographic (UPLC) methods. Reaction rates in the solution state were compared to the calculated C-H BDE values of the respective compounds. The results indicated a poor correlation for compounds in the solution state, and their relative stabilities could not be explained with C-H BDE. On the other hand, a favorable relationship was observed between the relative extent of ionization and the autoxidation rates of the selected compounds. In the solution state, factors such as the type and extent of drug ionization, degree and type of solvation have been shown to contribute to differences in reactivity. By applying the computational method involving the effect of H-atom abstraction and potential ionization sites in the molecule, the calculated C-H BDE should relate better to the experimental autoxidation rates.
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Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Thermodynamique / Préparations pharmaceutiques Type d'étude: Prognostic_studies Langue: En Journal: Mol Pharm Sujet du journal: BIOLOGIA MOLECULAR / FARMACIA / FARMACOLOGIA Année: 2023 Type de document: Article Pays d'affiliation: Autriche

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Thermodynamique / Préparations pharmaceutiques Type d'étude: Prognostic_studies Langue: En Journal: Mol Pharm Sujet du journal: BIOLOGIA MOLECULAR / FARMACIA / FARMACOLOGIA Année: 2023 Type de document: Article Pays d'affiliation: Autriche