Authors
Nitasha Gohar, Muzaffar Abbas, Syed Muzzammil Masaud, Iqra Zulfiqar, Hafsa Jabeen, Nadia Shamshad Malik, Humaira Nadeem
Published in
ACS omega. Volume 11. Issue 27. Pages 39910-39921. Jul 14, 2026. Epub Jun 29, 2026.
Abstract
Alzheimer's disease (AD) is a progressive neurodegenerative disorder characterized by cognitive decline, cholinergic dysfunction, and neuroinflammation. Multitarget-directed ligands (MTDLs) are increasingly recognized as promising therapeutic approaches for such multifactorial pathological disorders. Isoxazole-5-one derivatives represent a novel scaffold with potential neuroprotective activity. In current study, the cognitive and anti-inflammatory properties of a newly synthesized isoxazole-5-one derivative, (E)-3-((benzylamino)-methyl)-4-(3,4,5-trimethoxybenzylidene) isoxazol-5-(4H)-one (M5), were evaluated using scopolamine-induced mice models of AD and biochemical analysis, respectively. Behavioral performance was assessed using the Morris Water Maze (MWM) and Y-maze paradigms. Scopolamine administration significantly impaired spatial learning, memory consolidation, and spontaneous alternation behavior, while treatment with M5 produced dose-dependent memory improvements. At the highest dose (10 mg/kg), M5 markedly reduced escape latency and enhanced target quadrant occupancy in the MWM, as well as restored alternation rates in the Y-maze (p < 0.001 vs scopolamine), with effects comparable to donepezil, a standard cholinesterase inhibitor. Biochemical analyses further demonstrated that M5 significantly reduced hippocampal levels of TNF-α and IL-6, while downregulating COX-2 and NF-κB expression, confirming its potent anti-inflammatory action. Taken together, these findings suggest that M5 ameliorates memory impairment potentially through its anti-inflammatory actions. Therefore, M5 may represent might be a promising multitarget-directed ligand for Alzheimer's disease.
PMID:
42518426
Bibliographic data and abstract were imported from PubMed on 16 Sep 2026.
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