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Synthetic β‑hydroxy ketone derivative inhibits cholinesterases, rescues oxidative stress and ameliorates cognitive deficits in 5XFAD mice model of AD

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dc.contributor.author Syed Ilyas Ahmad · Gowhar Ali · Tahir Muhammad · Rahim Ullah · Muhammad Naveed Umar · Aisha Nasir Hashmi
dc.date.accessioned 2026-01-05T03:55:47Z
dc.date.available 2026-01-05T03:55:47Z
dc.date.issued 2020
dc.identifier.uri http://hdl.handle.net/123456789/20348
dc.description Dr. Aisha Nasir Hashmi IPFP Fellow Research Cell en_US
dc.description.abstract Alzheimer’s disease (AD) is a progressive, chronic and age-related neurodegenerative disorder that affects millions of people across the world. In pursuit of new anti-AD remedies, 2-[Hydroxy-(4-nitrophenyl)methyl]-cyclopentanone (NMC), a β hydroxyl ketone derivative was studied to explore its neuroprotective potentials against AD. The in-vitro AChE and BuChE enzymes inhibition were evaluated by Ellman protocol and antioxidant potentials of NMC by DPPH free radical scavenging assay. In-vivo behavioral studies were performed in the transgenic 5xFAD mice model of AD using shallow water maze (SWM), Paddling Y-Maze (PYM), elevated plus maze (EPM) and balance beam (BB) tests. Also, the ex-vivo cholinesterase inhibitory effects of NMC and histopathological analysis of amyloid-β plaques were determined in the frontal cortex and hippocampal regions of the mice brain. NMC exhibited significant in vitro anti-cholinesterase enzyme potentials with an IC50 value of 67 μg/ml against AChE and 96 μg/ml against BuChE respectively. Interestingly, the activities of AChE and BuChE enzymes were also significantly lower in the cortex and hippocampus of NMC-treated groups. Also, in the DPPH assessment, NMC displayed substantial antioxidant properties with an IC50 value observed as 171 μg/ml. Moreover, histopathological analysis via thioflavin-s staining displayed significantly lower plaques depositions in the cortex and hippocampus region of NMC-treated mice groups. Furthermore, SWM, PYM, EPM, and BB behavioral analysis indicated that NMC enhanced spatial learning, memory consolidation and improved balance performance. Altogether, to the best of our knowledge, we believe that NMC may serve as a potential and promising anti-cholinesterase, antioxidant and neuroprotective agent against AD. en_US
dc.language.iso en en_US
dc.publisher Molecular Biology Reports en_US
dc.subject Alzheimer’s disease · Acetylcholine · Cholinesterase · Cognitive impairments · Antioxidant · Neuroprotection en_US
dc.title Synthetic β‑hydroxy ketone derivative inhibits cholinesterases, rescues oxidative stress and ameliorates cognitive deficits in 5XFAD mice model of AD en_US
dc.type Article en_US


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