Résumé
Alzheimer's disease (AD) is a neurodegenerative disorder for which no effective preventative or curative treatment has yet been identified. Due to the multifactorial nature and complex pathophysiology of the disease, we developed a multi-target ligand that both inhibits human butyrylcholinesterase (hBChE), a key enzyme linked to β-amyloid plaque formation, and activates the sigma-1 receptor (S1R), which modulates neuroinflammatory and protective pathways. To this end, a series of isoindolines were designed and synthesized, and their biological activity was evaluated. The most promising compound, 7c, exhibited significant dual activity, achieving nanomolar IC50 values against hBChE and potent S1R activation. Subsequent in vivo studies in an Aβ25-35 mouse model revealed an improvement in cognitive deficits in both short- and long-term memory at an effective dose of 0.01 mg/kg in WT Swiss-OF1 mice. This dose is 10-fold lower compared to single-target compounds 7a and 7b of this isoindoline series. The lack of neuroprotective effects in BChE knock-out (KO) mice confirmed the involvement of BChE inhibition for compounds 7c effects in WT mice. Further combinatorial studies employing a two-drug combination demonstrated synergy in the neuroprotective effect of the two targets.
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•Dual-target ligands activate sigma-1 receptor and inhibit butyrylcholinesterase•Structure–activity and docking studies reveal key features for both targets•Hybrid ligand shows potent neuroprotection in an in vivo Alzheimer’s disease model•Combined sigma-1 receptor and butyrylcholinesterase action leads to synergy