Ishak, M.A.I. and Aun, T.T. and Sidek, N. and Mohamad, S. and Jumbri, K. and Abdul Manan, N.S. (2024) An enantioselective study of β-cyclodextrin and ionic liquid-β-cyclodextrin towards propranolol enantiomers by molecular dynamic simulations. Journal of Computational Chemistry, 45 (16). pp. 1329-1351.
Full text not available from this repository.Abstract
In this study, the enantioselectivity of β-cyclodextrin and its derivatives towards propranolol enantiomers are investigated by molecular dynamic (MD) simulations. β-cyclodextrin (β-CD) have previously been shown to be able to recognize propranolol (PRP) enantiomers. To improve upon the enantioselectivity of β-cyclodextrin, we propose the use of an ionic-liquid-modified-β-cyclodextrin (β-CD-IL). β-CD-IL was found to be able to complex R and S propranolol enantiomers with differing binding energies. The molecular docking study reveals that the ionic liquid chain attached to the β-CD molecule has significant interaction with propranolol. The formation of the most stable complex occurred between (S)-β-CD-IL and (S)-propranolol with an energy of �5.80 kcal/mol. This is attributed to the formation of a hydrogen bond between the oxygen of the propranolol and the hydrogen on the primary rim of the (S)-β-CD-IL cavity. This interaction is not detected in other complexes. The root mean-squared fluctuation (RMSF) value indicates that the NH group is the most flexible molecular fragment, followed by the aromatic group. Also of note, the formation of a complex between pristine β-CD and (S)-propranolol is the least favorable. © 2024 Wiley Periodicals LLC.
Item Type: | Article |
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Additional Information: | cited By 0 |
Uncontrolled Keywords: | Binding energy; Complexation; Cyclodextrins; Enantiomers; Enantioselectivity; Hydrogen bonds; Ionic liquids, Docking; Docking studies; Dynamics simulation; Enantioselective; Liquid chain; Molecular docking; Molecular dynamic simulation; Propranolol; S(β); �-cyclodextrin, Molecular dynamics, beta cyclodextrin; hydrogen; ionic liquid; oxygen; propranolol, article; controlled study; enantiomer; enantioselectivity; hydrogen bond; molecular docking; molecular dynamics; simulation |
Depositing User: | Mr Ahmad Suhairi UTP |
Date Deposited: | 04 Jun 2024 14:19 |
Last Modified: | 04 Jun 2024 14:19 |
URI: | https://khub.utp.edu.my/scholars/id/eprint/19617 |