Multi-target benzylidene camphor derivatives: selective cytotoxicity, acetylcholinesterase inhibition, and via a ROS-associated mitochondrial effects in AGS cells

Munoz, E.; Silva, V; Vera W.; Villena J.; Vergara R.; Montenegro I.; Madrid, A.

Keywords: Benzylidene camphor Cytotoxic activity Acetylcholinesterase inhibition Mitochondrial apoptosis Molecular docking ADME prediction

Abstract

This study describes the synthesis and biological evaluation of ten benzylidene camphor derivatives as potential dual-target agents with cytotoxic and acetylcholinesterase (AChE) inhibitory activities. The compounds were synthesized via microwave-assisted Claisen-Schmidt condensation with high yields (70-95%) and fully charac terized by spectroscopic techniques. Cytotoxic activity was evaluated against human tumor (AGS, HT-29, and MCF-7) and non-tumoral cell lines (GES-1 and MCF-10A). Methoxy-substituted derivatives (3–6) emerged as the most effective, showing selective cytotoxicity. Specifically, compound 4 exhibited the highest potency against AGS cells (IC50 =43.79 ±0.4 μM) and a selectivity index (SI) of approximately 2.0. Flow cytometry analysis in AGS cells suggests the involvement of a ROS-mediated mitochondrial apoptotic pathway, as evidenced by increased oxidative stress, loss of mitochondrial membrane permeability (ΔΨm), and, for compound 4, significant caspase activation. Furthermore, compounds 5 and 6 showed the strongest AChE inhibition, with IC50 values of 27.3 ±0.4 μM and 21.0 ±0.2 μM, respectively. Molecular docking indicated that these derivatives establish stabilizing π-π and hydrophobic interactions within the catalytic gorge. In silico ADME analysis suggested favorable drug-like properties and blood-brain barrier permeability. These findings highlight benzylidene camphor derivatives as promising multifunctional scaffolds for the potential development of agents at the interface of oncology and neurodegeneration.

Más información

Título de la Revista: CHEMICO-BIOLOGICAL INTERACTIONS
Volumen: 434
Editorial: Elsevier
Página de inicio: 112091
Página final: 112091
Idioma: Ingles
URL: https://doi.org/10.1016/j.cbi.2026.112091