The interaction of a nonsteroidal anti-inflammatory drug, naproxen, with \(\beta\)-CD has been studied by several analytical techniques, including 1-D and 2-D proton NMR, fluorescence spectroscopy, and FAB-MS. The negative ion FAB-MS confirmed the existence of a 1:1 inclusion complex of naproxen and
Molecular modeling study of Lamotrigine/β-cyclodextrin inclusion complex
✍ Scribed by Lynda Seridi; Ahmed Boufelfel
- Publisher
- Elsevier Science
- Year
- 2011
- Tongue
- English
- Weight
- 871 KB
- Volume
- 158
- Category
- Article
- ISSN
- 0167-7322
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✦ Synopsis
We investigated the inclusion process of Lamotrigine (LMN) in beta cyclodextrin (β-CD) with 1:1 stoichiometry using empirical, semi-empirical and quantum mechanical calculations models. We have found that the quantum and hybrid ONIOM2 methods gave the most favorable orientation in which the guest molecule is totally sequestered in the hydrophobic cavity of the cyclodextrin with the tiazine ring located near the primary hydroxyls of the β-CD and the dichloro phenyl moiety near the secondary hydroxyls with no hydrogen bonding formation. Moreover, the statistical thermodynamic calculations at 1 atm and 298.15 K demonstrate that 1:1 LMN/β-CD complexation is an exothermic process, enthalpically favorable in nature and that non bonded Van der Waals interactions represent the mainly driving forces leading to complex stability. While, HOMO and LUMO orbital investigations confirm on one hand the better stability of 'A' orientation and on the other hand prove that no significant change will be observed in the electronic structure of LMN after complexation.
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## Abstract An inclusion complex of fenbufen with β‐cyclodextrin (β‐CD) in aqueous solution was characterized by ^1^H‐NMR spectroscopy. The [1:1] stoichiometry was determined and a stability constant of several 1000s (__M__^−1^) was calculated. The geometry of the inclusion complex was established
The crystal structure of the inclusion complex of β-cyclodextrin (β-CD) synthesized with felbinac (4-biphenylacetic acid) was determined by single crystal X-ray diffraction at 150 K. The complex contains two β-CDs, two felbinac molecules, twenty-two water molecules in the asymmetric unit, and could