EventsThe 28th International Electronic Conference on Synthetic Organic Chemistry
Published
This submission belongs to the session S4. Polymer and Supramolecular Chemistry of the event The 28th International Electronic Conference on Synthetic Organic Chemistry
Published date
14 Nov, 2024
Academic Editor
author-avatarJulio A. Seijas
Citation
Ekaterina Barteneva, Pavel Andreev, Kirill Efanov, Elena Grekhneva, Study of the stability, solubility and geometry of the complex of inclusion β-CD with the nimesulide by computer chemistry methods, in Proceedings of The 28th International Electronic Conference on Synthetic Organic Chemistry, 15 November–30 November 2024, MDPI: Basel, Switzerland, doi: 10.3390/ecsoc-28-20197
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Study of the stability, solubility and geometry of the complex of inclusion β-CD with the nimesulide by computer chemistry methods

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Pavel Andreev 2
Kirill Efanov 3
Elena Grekhneva 4
1. Kursk State University, Russia
2. Federal State Budgetary Educational Institution of Higher Education "Burdenko Voronezh State Medical University. N.N. Burdenko Voronezh State Medical University, Ministry of Healthcare of the Russian Federation Department of Oncology, Russia
3. National Research Nuclear University MEPhI, Oman
4. Kursk State University Department of Chemistry, Russia
Abstract

During the study, a molecular system was modeled: nimesulide, β-cyclodextrin, inclusion complex. The use of the Gaussian 16 software package allowed to optimize geometry and determine the thermochemical characteristics of molecular systems without considering solvent. And also in water media, accounted for by the polarized continuum model (PCM).

To confirm the accuracy of the geometry of the β-cyclodextrin molecule, a structural alignment of 46 β-cyclodextrin molecules, accessible by a corresponding search query in the RCSB database, was performed. The RSMD values of carbon and oxygen atom deviations, as well as the total number of atoms levelled were calculated. This calculation showed a complete conformational coincidence of the designed by us β-cyclodextrin structure with the RCSB database structures. This ensures the correct approach to subsequent calculations involving this structure.

Quantum-mechanical modeling of the relationship was carried out in several stages with a gradual complexity of the basic set. Using the hybrid method of functional density B3LYP and 6-31G(d). At the end of the calculation stage, on the surface of the studied complex, the potential energy of several minimal elements is detected, This means that there are several conformational forms of the molecular system with different likely.

The change in potential energies of the investigated compounds, caused by application to optimized in vacuum molecules of the PCM model, allowed to determine values of the solvatization energies. The greater magnitude of these values in the complex under consideration indicates its better solubility in water compared to nimesulide.

Keywords
Cyclodextrins
conformations
inclusion complexes
solubility
computer modeling
Manuscript
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