Quercetin mitigates scopolamine-induced memory dysfunction: impact on oxidative stress and cholinergic mechanisms

被引:0
作者
Juliet N. Olayinka
Anthony Eduviere
Olusegun Adeoluwa
Elizabeth Akinluyi
Abiola Obisesan
Oluwole Akawa
Adeshina Adebanjo
机构
[1] Afe- Babalola University,Department of Pharmacology and Therapeutics, College of Medicine and Health Sciences
[2] Delta State University,Department of Pharmacology and Therapeutics, Faculty of Basic Medical Sciences
[3] Afe Babalola University,Department of Civil Engineering
来源
Metabolic Brain Disease | 2022年 / 37卷
关键词
Quercetin; Cognitive impairment; Oxidative stress; Acetylcholinesterase activity; Choline acetyltransferase activity;
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摘要
Despite the promising neuroprotective activities of quercetin (QT), its’ effect on cholinergic neurotransmission needs further elucidation. In this study, we explored the impact of QT on oxidative stress and cholinergic neurotransmission with emphasis on the possible involvement of choline acetyltransferase (ChAT) as a potential mechanism of QT on memory function at the hippocampal sub-regions and prefrontal cortex of mice brains. Mice were administered orally with QT (12.5 and 25 mg/kg) alone or in combination with SC (3 mg/kg, intraperitoneally) once daily for seven consecutive days. Thirty minutes after the last treatment, memory function was assessed using the Y-maze test. Levels of biomarkers of oxidative stress and acetylcholinesterase (AChE) activity were determined using a microplate reader. ChAT activity was determined by immunohistochemistry. QT pretreatment enhanced memory performance and reversed scopolamine (SC)-induced memory impairment in the Y-maze test. QT also reduced malondialdehyde and nitrite levels in mice brains. Glutathione levels were increased in mice brains as a result of QT administration. Levels of antioxidant enzymes (superoxide dismutase and catalase) were significantly increased in the mice brains, but AChE activity was reduced by QT. The activity of ChAT was significantly enhanced by QT in the hippocampal sub-regions and the prefrontal cortex of the mice brains. This study has shown that QT mitigated SC-induced memory dysfunction by inhibiting oxidative stress and AChE activity. Also, QT enhanced ChAT activity, particularly in the hippocampal sub-regions and the prefrontal cortex. These mechanisms, may be possible means through which QT improves memory performance.
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页码:265 / 277
页数:12
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共 124 条
  • [21] Gabriel S(2016)Role of oxidative stress in Alzheimer’s disease (review) Biomed Reports 4 519-522
  • [22] Budzynska B(2004)The value of spontaneous alternation behavior (SAB) as a test of retention in pharmacological investigations of memory Neurosci Biobehav Rev 28 497-505
  • [23] Boguszewska-Czubara A(1974)Bromobenzene-induced liver necrosis. Protective role of glutathione and evidence for 3,4-bromobenzene oxide as the hepatotoxic metabolite Pharmacology 11 151-169
  • [24] Kruk-Slomka M(2007)Acetylcholinesterase Inhibition by Flavonoids from Agrimonia pilosa Molecules 12 2130-2139
  • [25] Butterfield DA(2005)Evidence of increased oxidative damage in subjects with mild cognitive impairment Neurology 64 1152-1156
  • [26] Kanski J(2019)Neuroprotective effects of quercetin in Alzheimer’s Disease Biomolecules 10 59-1350
  • [27] Butterfield DA(2010)The validity of scopolamine as a pharmacological model for cognitive impairment: A review of animal behavioral studies Neurosci Biobehav Rev 34 1307-152
  • [28] Reed T(2008)Hippocampal infusions of glucose reverse memory deficits produced by co-infusions of a GABA receptor agonist Neurobiol Learn Mem 89 142-33
  • [29] Perluigi M(2004)Reactive oxygen species, aging, and antioxidative nutraceuticals Compr Rev Food Sci Food Saf 3 21-368
  • [30] Casadesus G(1996)Chapter 21. Neurogenic inflammation caused by cutaneous polymodal receptors Prog Brain Res 113 361-147