Design, Synthesis, and In Vitro Evaluation of Hydroxybenzimidazole-Donepezil Analogues as Multitarget-Directed Ligands for the Treatment of Alzheimer's Disease.
Silvia ChavesSimonetta RestaFederica RinaldoMarina CostaRomane JosselinKarolina GwizdalaLuca PiemonteseAlejandro Presa SotoA Raquel Pereira-SantosSandra M CardosoMaria Amélia SantosPublished in: Molecules (Basel, Switzerland) (2020)
A series of multi-target-directed ligands (MTDLs), obtained by attachment of a hydroxyphenylbenzimidazole (BIM) unit to donepezil (DNP) active mimetic moiety (benzyl-piperidine/-piperazine) was designed, synthesized, and evaluated as potential anti-Alzheimer's disease (AD) drugs in terms of biological activity (inhibition of acetylcholinesterase (AChE) and β-amyloid (Aβ) aggregation), metal chelation, and neuroprotection capacity. Among the DNP-BIM hybrids studied herein, the structural isomerization did not significantly improve the biological properties, while some substitutions, namely fluorine atom in each moiety or the methoxy group in the benzyl ring, evidenced higher cholinergic AChE activity. All the compounds are able to chelate Cu and Zn metal ions through their bidentate BIM moieties, but compound 5, containing a three-dentate chelating unit, is the strongest Cu(II) chelator. Concerning the viability on neuroblastoma cells, compounds 9 and 10 displayed the highest reduction of Aβ-induced cell toxicity. In silico calculations of some pharmacokinetic descriptors indicate that all the compounds but the nitro derivatives have good potential oral-bioavailability. Overall, it can be concluded that most of the studied DNP-BIM conjugates showed quite good anti-AD properties, therefore deserving to be considered in further studies with the aim of understanding and treating AD.
Keyphrases
- molecular docking
- molecular dynamics
- induced apoptosis
- cognitive decline
- aqueous solution
- oxidative stress
- single cell
- human health
- diabetic rats
- positron emission tomography
- density functional theory
- stem cells
- cell therapy
- quantum dots
- computed tomography
- high glucose
- risk assessment
- metal organic framework
- endoplasmic reticulum stress
- oxide nanoparticles
- case control
- solid state
- cell proliferation
- mesenchymal stem cells
- pet ct
- subarachnoid hemorrhage
- signaling pathway
- stress induced
- monte carlo