New Benzodihydrofuran Derivatives Alter the Amyloid β Peptide Aggregation: Strategies To Develop New Anti-Alzheimer Drugs

Sanchez, Yaima; Castillo, Carolina; Fuentealba, Jorge; Saez-Orellana, Francisco; Burgos, Carlos Felipe; Lopez, Jhon J. J.; de la Torre, Alexander F.; Jimenez, Claudio A. A.

Abstract

Alzheimer's disease is a neurodegenerative disorder that is the leading cause of dementia in elderly patients. Amyloid-beta peptide (1-42 oligomers) has been identified as a neurotoxic factor, triggering many neuropathologic events. In this study, 15 chalcones were synthesized employing the Claisen-Schmidt condensation reaction, starting from a compound derived from fomannoxine, a natural benzodihydrofuran whose neuroprotective activity has been proven and reported, and methyl aromatic ketones with diverse patterns of halogenated substitution. As a result, chalcones were obtained, with good to excellent reaction yields from 50 to 98%. Cytotoxicity of the compounds was assessed, and their cytoprotective effect against the toxicity associated with A beta was evaluated on PC-12 cells. Out of the 15 chalcones obtained, only the 4-bromo substituted was cytotoxic at most tested concentrations. Three synthesized chalcones showed a cytoprotective effect against A beta toxicity (over 37%). The 2,4,5-trifluoro substituted chalcone was the most promising series since it showed a cytoprotective impact with more than 60 +/- 5% of recovery of cellular viability; however, 3-fluoro substituted compound also exhibited important values of recovery (50 +/- 6%). The fluorine substitution pattern was shown to be more effective for cytoprotective activity. Specifically, substitution with fluorine in the 3,5-positions turned out to be particularly effective for cytoprotection. Furthermore, fluorinated compounds inhibited the aggregation rate of A beta, suggesting a dual effect that can be the starting point of new molecules with therapeutic potential.

Más información

Título según WOS: ID WOS:001034823300001 Not found in local WOS DB
Título de la Revista: ACS CHEMICAL NEUROSCIENCE
Volumen: 14
Número: 15
Editorial: AMER CHEMICAL SOC
Fecha de publicación: 2023
Página de inicio: 2590
Página final: 2602
DOI:

10.1021/acschemneuro.2c00778

Notas: ISI