Abstract
The 2-amino-5-(3/4-fluorostyryl)acetophenones were prepared and reacted with benzalde-hyde derivatives to afford the corresponding 5-styryl-2-aminochalcone hybrids. The trans geometry of the styryl and α,β-unsaturated carbonyl arms, and the presence of NH… O intramolecular hydrogen bond were validated using1 H-NMR and X-ray data. The 2-amino-5-styrylacetophenones and their 5-styryl-2-aminochalcone derivatives were screened in vitro for their capability to inhibit α-glucosidase and/or α-amylase activities. Their antioxidant properties were evaluated in vitro through the 2,2-diphenyl-1-picrylhydrazyl (DPPH) and nitric oxide (NO) free radical scavenging assays. Kinetic studies of the most active derivatives from each series against α-glucosidase and/or α-amylase activities have been performed supported by molecular docking studies to determine plausible protein–ligand interactions on a molecular level. The key aspects of the pharmacokinetics of these compounds, i.e., absorption, distribution, metabolism, and excretion have also been simulated at theoretical level. The most active compounds from each series, namely, 2a and 3e, were evaluated for cytotoxicity against the normal monkey kidney cells (Vero cells) and the adenocarcinomic human epithelial (A549) cell line to establish their safety profile at least in vitro.
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Mphahlele, M. J., Agbo, E. N., & Choong, Y. S. (2021). Synthesis, structure, carbohydrate enzyme inhibition, antioxidant activity, in silico drug-receptor interactions and drug-like profiling of the 5-styryl-2-aminochalcone hybrids. Molecules, 26(9). https://doi.org/10.3390/molecules26092692
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