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"Behavioral and Neuroinflammatory Evaluation of a Novel Isoxazole-5-One Derivative in Animal Models of Alzheimer's Disease via TNF-α, COX-2, IL-6, and NF-κB Modulation".

Created on 16 Sep 2026

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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