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  2. Assessing the Multitarget Therapeutic Potential of Novel 9-Aminoacridine Derivatives for Alzheimer's Disease

Assessing the Multitarget Therapeutic Potential of Novel 9-Aminoacridine Derivatives for Alzheimer's Disease

  • ACS Chem Neurosci. 2026 Jan 21;17(2):423-439. doi: 10.1021/acschemneuro.5c00839.
Valeria Francesconi 1 Anna Carbone 1 Gabriella La Spada 2 Davide Odino 3 Claudio Canale 3 Annalisa Relini 3 Sabrina Pricl 4 5 Marco Catto 2 Michele Tonelli 1
Affiliations

Affiliations

  • 1 Department of Pharmacy, University of Genoa, Viale Benedetto XV 3, 16132 Genoa, Italy.
  • 2 Department of Pharmacy-Drug Sciences, University of Bari Aldo Moro, Via E. Orabona 4, 70125 Bari, Italy.
  • 3 Department of Physics, University of Genoa, via Dodecaneso 33, 16146 Genoa, Italy.
  • 4 Molecular Biology and Nanotechnology Laboratory (MolBNL@UniTS), Department of Engineering and Architecture, University of Trieste, Piazzale Europa 1, 34127 Trieste, Italy.
  • 5 Department of General Biophysics, Faculty of Biology and Environmental Protection, University of Lodz, ul. Pomorska 141/143, 90-236 Łódź, Poland.
Abstract

The escalating number of Alzheimer's disease (AD) cases and the limitations of current therapies pose a significant threat to human health, necessitating the discovery of novel drugs with innovative modes of action. To address this challenge, we pursued multitarget ligand strategy with the expectation of improved disease management. Continuing our efforts to discover new multitarget agents for AD, we decorated the planar 6-Cl-2-OCH3-9-aminoacridine core with basic heterocyclic or benzyl side chains as polar and hydrophobic structural features, respectively. All the compounds inhibited acetylcholinesterase, and in several cases also inhibited butyrylcholinesterase, with potencies comparable to or exceeding those of reference drugs. Exploring activity against MAO isoforms, heterocyclic derivatives 2, 5, 6, 9, 11, and 12 proved to be selective MAO-A inhibitors, while the 3,4-dichlorobenzyl derivative 20 provided balanced inhibition of both MAO-A and MAO-B Enzymes. Favorable predicted blood-brain barrier permeability and low toxicity toward SH-SY5Y neuronal cells were also observed. Intriguingly, compounds 4, 12 and 20 altered the aggregation morphology of the neurotoxic Aβ42 peptide, revealing distinct inhibition profiles likely reflecting the different nature of the side chain. Based on these findings, the planar 6-Cl-2-OCH3-9-aminoacridine ring emerges as a valuable scaffold for future development of multitargeted anti-AD agents.

Keywords

AChE and BChE inhibitors; Aβ aggregation inhibition; MAO inhibitors; acridine derivatives; multitarget agents.

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