An enantioselective study of β-cyclodextrin and ionic liquid-β-cyclodextrin towards propranolol enantiomers by molecular dynamic simulations

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.

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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
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

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