Thymoquinone ameliorate oxidative stress, GABAergic neuronal depletion and memory impairment through Nrf2/ARE signaling pathway in the dentate gyrus following cypermethrin administration.

IF 2.4 4区 医学 Q3 NEUROSCIENCES
Abubakar Lekan Imam, Akeem Ayodeji Okesina, Fatimo Ajoke Sulaimon, Aminu Imam, Ruqayyah Yetunde Ibiyeye, Lukuman Aboyeji Oyewole, Sikiru Abayomi Biliaminu, Monsur Shehu, Abdulhameed Oluwatomi Alli, Oluwatosin Olasheu Omoola, Salihu Moyosore Ajao
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Abstract

Background: Exposure to chemical toxins, including insecticides, harms bodily organs like the brain. This study examined the neuroprotective of thymoquinone on the cypermethrin's harmful effects on the histoarchitecture of the dentate gyrus and motor deficit in the dentate gyrus.

Methods: Forty adult male rats (180-200 g) were randomly divided into 5 groups (n = 8 per group). Groups I, II, III, IV, and V received oral administration of 0.5 ml of phosphate-buffered saline, cypermethrin (20 mg/kg), thymoquinone (10 mg/kg), cypermethrin (20 mg/kg) + thymoquinone (5 mg/kg), and cypermethrin (20 mg/kg) + thymoquinone (10 mg/kg) for 14 days respectively. The novel object recognition test that assesses intermediate-term memory was done on days 14 and 21 of the experiment. At the end of these treatments, the animals were euthanized and taken for cytoarchitectural (hematoxylin and eosin; Cresyl violet) and immunohistochemical studies (Nuclear factor erythroid 2-related factor 2 (Nrf2), Parvalbumin, and B-cell lymphoma 2 (Bcl2).

Result: The study shows that thymoquinone at 5 and 10 mg/kg improved Novelty preference and discrimination index. Thymoquinone enhanced Nissl body integrity, increased GABBAergic interneuron expression, nuclear factor erythroid 2-derived factor 2, and enhanced Bcl-2 expression in the dentate gyrus. It also improved the concentration of nuclear factor erythroid 2-derived factor 2, increased the activities of superoxide dismutase and glutathione, and decreased the concentration of malondialdehyde level against cypermethrin-induced neurotoxicity.

Conclusion: thymoquinone could be a therapeutic agent against cypermethrin poisoning.

胸腺醌可通过Nrf2/ARE信号通路改善氯氰菊酯给药后齿状回的氧化应激、GABA能神经元耗竭和记忆损伤。
背景:接触包括杀虫剂在内的化学毒素会伤害大脑等身体器官。本研究探讨了胸腺醌对氯氰菊酯对齿状回组织结构和齿状回运动障碍的有害影响的神经保护作用:将 40 只成年雄性大鼠(180-200 克)随机分为 5 组(每组 8 只)。I、II、III、IV 和 V 组分别口服 0.5 毫升磷酸盐缓冲盐水、氯氰菊酯(20 毫克/千克)、胸腺醌(10 毫克/千克)、氯氰菊酯(20 毫克/千克)+ 胸腺醌(5 毫克/千克)和氯氰菊酯(20 毫克/千克)+ 胸腺醌(10 毫克/千克),共 14 天。实验的第 14 天和第 21 天进行了评估中期记忆的新物体识别测试。治疗结束后,动物被安乐死,并进行细胞结构(苏木精和伊红;甲酚紫)和免疫组化研究(核因子红细胞2相关因子2(Nrf2)、Parvalbumin和B细胞淋巴瘤2(Bcl2)):研究结果表明,胸腺醌 5 毫克/千克和 10 毫克/千克可改善新奇偏好和辨别指数。胸腺醌提高了Nissl体的完整性,增加了GABBAergic中间神经元的表达,增加了核因子红细胞2衍生因子2,并提高了齿状回中Bcl-2的表达。结论:胸腺醌可作为氯氰菊酯中毒的治疗药物。
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来源期刊
BMC Neuroscience
BMC Neuroscience 医学-神经科学
CiteScore
3.90
自引率
0.00%
发文量
64
审稿时长
16 months
期刊介绍: BMC Neuroscience is an open access, peer-reviewed journal that considers articles on all aspects of neuroscience, welcoming studies that provide insight into the molecular, cellular, developmental, genetic and genomic, systems, network, cognitive and behavioral aspects of nervous system function in both health and disease. Both experimental and theoretical studies are within scope, as are studies that describe methodological approaches to monitoring or manipulating nervous system function.
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