Computational Assessment of Xanthones from African Medicinal Plants as Aldose Reductase Inhibitors

Diabetes mellitus is a life-threatening non-communicable disease that affects all age groups. Despite the increased attention it has received in recent years, the number of diabetic patients has grown exponentially. These increased cases are attributed to essential enzymes involved in blood glucose...

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Veröffentlicht in:Computation 2022-08, Vol.10 (9), p.146
Hauptverfasser: Owoseeni, Onikepe Deborah, Patil, Rajesh B, Phage, Prajakta M, Ogboye, Ruth Mosunmola, Ayoola, Marcus Durojaye, Famuyiwa, Samson Oluwaseyi, Gboyero, Felix Olusegun, Ndinteh, Derek Tantoh, Faloye, Kolade Olatubosun
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Sprache:eng
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Zusammenfassung:Diabetes mellitus is a life-threatening non-communicable disease that affects all age groups. Despite the increased attention it has received in recent years, the number of diabetic patients has grown exponentially. These increased cases are attributed to essential enzymes involved in blood glucose regulation. In this study, we attempt to reveal the aldose reductase inhibitory potential of xanthones isolated from African medicinal plants. Ensemble docking, molecular dynamics simulation, density functional theory (DFT), and ADMET methods were employed to identify drug candidates as aldose reductase inhibitors. The ensemble docking results identified mangostenone B, bangangxanthone A, smeathxanthone B, mangostenone A, and allanxanthone B as potent inhibitors against the aldose reductase enzyme. Molecular dynamics studies showed the xanthones established better binding mode and affinities against the enzyme. Moreover, the electronic properties of the xanthones explained their good pharmacological potentials. Therefore, our findings suggest that the hit molecules be investigated in vitro and in vivo for drug development against aldose reductase.
ISSN:2079-3197
2079-3197
DOI:10.3390/computation10090146