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Hydrothermal synthesis of nano-selenium balls as a new catalyst: Synthesis of bis-indole derivatives as anti-diabetic agents with molecular docking study


Mohammed S. Alsalhi
Mohamed A. Al-Omar
Abdulrahman A. Almehizia
Ahmed M. Naglah
Ashraf S. Hassan
Tamer K. Khatab

Abstract

In the last two decades, selenium has been present in many fields, both industrially and biologically. The nano-selenium balls were prepared using the hydrothermal green method and characterized to ensure their crystallinity by using transmission electron microscopy/selected area electron diffraction (TEM/SAED) and Fourier transform infrared (FTIR). The prepared nanoparticles were used in the synthesis of aryl methylene bis-indole derivatives 3a-i by one-pot mixing of aromatic aldehydes and two moles of indole under solvent-free conditions at 60-70 °C. The prepared products were implemented as inhibitor ligands in the molecular docking study for α-amylase and α-glucosidase. The theoretical data obtained were compared with acarbose as a reference ligand, which encouraged us to measure the colorimetric in vitro anti-diabetic activity. Some bis-indole derivatives 3e, 3f, 3g, and 3i showed promising values and can be presented in vivo as anti-diabetic agents.


KEY WORDS: Nano-selenium balls, Bis-indole derivatives, α-Glucosidase enzyme, Anti-diabetic agents, The energy score, Molecular docking


Bull. Chem. Soc. Ethiop. 2026, 40(1), 23-34.                                                           


DOI: https://dx.doi.org/10.4314/bcse.v40i1.3


Journal Identifiers


eISSN: 1726-801X
print ISSN: 1011-3924