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Abstract

Synthesis, Molecular Docking Analysis, ADMET and Drug Likeness Prediction of a Benzenesulfonamide Derivative Analogue of SLC-0111 †

by
Yousra Ouafa Bouone
*,
Abdeslem Bouzina
and
Nour-Eddine Aouf
Laboratory of Applied Organic Chemistry, Bioorganic Chemistry Group, Chemistry Department, Sciences Faculty, Badji-Mokhtar-Annaba University, Box 12, Annaba 23000, Algeria
*
Author to whom correspondence should be addressed.
Presented at the 8th International Electronic Conference on Medicinal Chemistry, 1–30 November 2022; Available online: https://ecmc2022.sciforum.net/.
Med. Sci. Forum 2022, 14(1), 24; https://doi.org/10.3390/ECMC2022-13407
Published: 1 November 2022
(This article belongs to the Proceedings of The 8th International Electronic Conference on Medicinal Chemistry)

Abstract

:
Carbonic anhydrases are metalloenzymes that regulate the interconversion of CO2 and H2CO3, a reaction involved in many physiological processes. A disfunction of these enzymes is known to induce many diseases such as glaucoma, epilepsy and cancer. As a result, there is a need to design new target molecules with inhibitory effects on carbonic anhydrases (CAs). The most well-known compounds that inhibit CAs are sulfonamide-containing molecules, including valdecoxib, acetazolamide and the antitumor agent recently introduced to phase II clinical trials: the SLC-0111. With an intention to obtain a new potential drug candidate, an analogue of the SLC-0111 compound was designed and synthesized using sulfanilamide, chlorosulfonyl isocyanate and aniline. IR (infrared), NMR (nuclear magnetic resonance) spectroscopy and EA (elemental analysis) were used in the characterization of the structure. In order to explore the potentiality of our newly synthesized product to inhibit Cas, a docking simulation was performed on the binding pockets of both carbonic anhydrase II complexed with valdecoxib (pdb: 2AW1) and carbonic anhydrase IX complexed with SLC-0111 (pdb: 5JN3). The new derivative revealed an interesting stability inside the cavities of CA II and CA IX with docking scores of −9.782 and −7.466, respectively, and showed an efficient binding affinity in both cases through the formation of metal coordination with Zn and a hydrogen bond with the Thr199, which is known to be essential for the inhibition. Other significant extra interactions were also observed with other residues in isoform II. Further, the pharmacokinetics properties and drug likeness were predicted using in silico tools: SwissADME and MolSoft online servers.

Supplementary Materials

The following are available online at https://www.mdpi.com/article/10.3390/ECMC2022-13407/s1.

Author Contributions

Conceptualization, A.B.; methodology, Y.O.B. and A.B.; software, Y.O.B. and A.B.; validation, Y.O.B., A.B., and N.-E.A.; formal analysis, A.B.; investigation, Y.O.B. and A.B.; writing—original draft preparation, Y.O.B. and A.B.; writing—review and editing, Y.O.B., A.B., and N.-E.A.; All authors have read and agreed to the published version of the manuscript.

Funding

This research received no external funding.

Institutional Review Board Statement

Not applicable.

Informed Consent Statement

Not applicable.

Conflicts of Interest

The authors declare no conflict of interest.
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Share and Cite

MDPI and ACS Style

Bouone, Y.O.; Bouzina, A.; Aouf, N.-E. Synthesis, Molecular Docking Analysis, ADMET and Drug Likeness Prediction of a Benzenesulfonamide Derivative Analogue of SLC-0111. Med. Sci. Forum 2022, 14, 24. https://doi.org/10.3390/ECMC2022-13407

AMA Style

Bouone YO, Bouzina A, Aouf N-E. Synthesis, Molecular Docking Analysis, ADMET and Drug Likeness Prediction of a Benzenesulfonamide Derivative Analogue of SLC-0111. Medical Sciences Forum. 2022; 14(1):24. https://doi.org/10.3390/ECMC2022-13407

Chicago/Turabian Style

Bouone, Yousra Ouafa, Abdeslem Bouzina, and Nour-Eddine Aouf. 2022. "Synthesis, Molecular Docking Analysis, ADMET and Drug Likeness Prediction of a Benzenesulfonamide Derivative Analogue of SLC-0111" Medical Sciences Forum 14, no. 1: 24. https://doi.org/10.3390/ECMC2022-13407

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