New Alkoxy Flavone Derivatives Targeting Caspases: Synthesis and Antitumor Activity Evaluation.
Joana MoreiraDiana RibeiroPatrícia M A SilvaNair NazarethMadalena MonteiroAndreia PalmeiraLucília SaraivaPatrícia M A SilvaHassan BousbaaHonorina CidadePublished in: Molecules (Basel, Switzerland) (2018)
The antitumor activity of natural flavonoids has been exhaustively reported. Previously it has been demonstrated that prenylation of flavonoids allows the discovery of new compounds with improved antitumor activity through the activation of caspase-7 activity. The synthesis of twenty-five flavonoids (4⁻28) with one or more alkyl side chains was carried out. The synthetic approach was based on the reaction with alkyl halide in alkaline medium by microwave (MW) irradiation. The in vitro cell growth inhibitory activity of synthesized compounds was investigated in three human tumor cell lines. Among the tested compounds, derivatives 6, 7, 9, 11, 13, 15, 17, and 18 revealed potent growth inhibitory activity (GI50 < 10 μM), being the growth inhibitory effect of compound 13 related with a pronounced caspase-7 activation on MCF-7 breast cancer cells and yeasts expressing human caspase-7. A quantitative structure-activity relationship (QSAR) model predicted that hydrophilicity, pattern of ring substitution/shape, and presence of partial negative charged atoms were the descriptors implied in the growth inhibitory effect of synthesized compounds. Docking studies on procaspase-7 allowed predicting the binding of compound 13 to the allosteric site of procaspase-7.
Keyphrases
- structure activity relationship
- breast cancer cells
- endothelial cells
- cell death
- small molecule
- induced apoptosis
- molecular dynamics
- ionic liquid
- induced pluripotent stem cells
- oxidative stress
- high resolution
- drug delivery
- molecular docking
- binding protein
- radiation therapy
- molecular dynamics simulations
- radiation induced
- mass spectrometry
- radiofrequency ablation
- visible light
- solar cells
- structural basis