Cortico-hippocampal memory enhancing activity of hesperetin on scopolamine-induced amnesia in mice: role of antioxidant defense system, cholinergic neurotransmission and expression of BDNF

被引:0
作者
Ismail O. Ishola
Abosi A. Jacinta
Olufunmilayo O. Adeyemi
机构
[1] University of Lagos,Department of Pharmacology, Therapeutics and Toxicology, Faculty of Basic Medical Sciences, College of Medicine
来源
Metabolic Brain Disease | 2019年 / 34卷
关键词
Brain derived neurotrophic factors; Cholinergic neurotransmission; Novel object recognition test; Oxidative stress; Neurogenesis; Morris water maze task;
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摘要
Alzheimer disease (AD) is an age related neurodegenerative disease causing severe cognitive and memory decline in elderly people. Flavonoids play neuroprotective role by inhibiting and/or modifying the self-assembly of the amyloid-β (Aβ) or tau peptide into oligomers and fibrils. This study sought to investigate the effect of hesperetin (HPT) on scopolamine-induced memory impairments in mice. Mice were orally pretreated with HPT (1, 5 or 50 mg/kg) or vehicle (normal saline; 10 ml/kg) for 3 consecutive days. One hour post-treatment on day 3, scopolamine (3 mg/kg, i.p.) was administered 5 min before locomotor activity (open field test) and memory function (novel object recognition test (NORT) for 2 consecutive days and Morris water maze task (MWM) for 5 consecutive days). Levels of oxidative stress markers / brain derived neurotrophic factors (BDNF) and acetylcholinesterase activity were determined in the hippocampus and prefrontal cortex after completion of MWM task. Scopolamine caused no significant change in mice exploration of the familiar or novel object in the test session whereas the HPT-treated mice spent more time exploring the novel object more than familiar object in NORT. Scopolamine also increased the escape latency in acquisition phase and decreases time spent in target quadrant in probe phase which were ameliorated by the pretreatment with HPT. Scopolamine-induced alteration of oxidant-antioxidant balance, acetylcholinesterase activity and neurogenesis in the hippocampus and prefrontal cortex were attenuated by HPT treatment. This study showed that HPT ameliorated non-spatial/spatial learning and memory impairment by scopolamine possibly through enhancement of antioxidant defense, cholinergic and BDNF signaling.
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页码:979 / 989
页数:10
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[21]  
Cohen SJ(2011)Potential therapeutic uses of BDNF in neurological and psychiatric disorders Nat Rev Drug Discov 10 331-337
[22]  
Munchow AH(2009)Neuroprotective effects of brain-derived neurotrophic factor in rodent and primate models of Alzheimer’s disease Nat Med 15 323-331
[23]  
Rios LM(2017)Effects of haloperidol, olanzapine, ziprasidone, and PHA-543613 on spatial learning and memory in the Morris water maze test in naïve and MK-801-treated mice Brain Behav 7 173-184
[24]  
Zhang G(2015)Antioxidant and anti-inflammatory properties of the citrus flavonoids hesperidin and hesperetin: an updated review of their molecular mechanisms and experimental models Phytother Res 29 29-33
[25]  
Asgeirsdóttir HN(2017)The fate of the brain cholinergic neurons in neurodegenerative diseases Brain Res 1670 619-625
[26]  
Stackman RW(2008)Neuroprotective effects of hesperetin in mouse primary neurones are independent of CREB activation Neurosci Lett 438 555-563
[27]  
Drapeau E(2013)Localization of scopolamine induced electrocortical brain activity changes, in healthy humans at rest J Clin Pharmacol 53 1278-1286
[28]  
Mayo W(2011)The cholinergic system in aging and neuronal degeneration Behav Brain Res 221 937-949
[29]  
Aurousseau C(2013)Amyloid-β signals through tau to drive ectopic neuronal cell cycle re-entry in Alzheimer’s disease J Cell Sci 126 55-77
[30]  
Le Moal M(2016)Rhizophora mucronata attenuates beta-amyloid induced cognitive dysfunction, oxidative stress and cholinergic deficit in Alzheimer’s disease animal model Metab Brain Dis 31 1141-1154