Nanonaringenin and Vitamin E Ameliorate Some Behavioral, Biochemical, and Brain Tissue Alterations Induced by Nicotine in Rats.

IF 3.4 Q2 TOXICOLOGY Journal of Toxicology Pub Date : 2021-09-24 eCollection Date: 2021-01-01 DOI:10.1155/2021/4411316
Mohamed A Kandeil, Eman T Mohammed, Rania A Radi, Fatma Khalil, Abdel-Razik H Abdel-Razik, Mohamed M Abdel-Daim, Ghada M Safwat
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引用次数: 4

Abstract

Nicotine is the major alkaloid present in cigarettes that induces various biochemical and behavioral changes. Nanonaringenin (NNG) and vitamin E are antioxidants that are reported to mitigate serious impairments caused by some toxins and oxidants. Thus, we aimed to investigate the efficacy of NNG, vitamin E, and their combinations to ameliorate behavioral, biochemical, and histological alterations induced by nicotine in rats. Adult male albino rats were randomly grouped into six equal groups (10 rats/group): control, N (nicotine 1 mg/kg b.w./day S/C from 15th to 45th day, 5 days a week), NNG (25 mg/kg b.w./day orally for 45 days), N + NNG, N + E (nicotine + vitamin E 200 mg/kg b.w./day orally), and N + NNG + E (nicotine + NNG + vitamin E at the aforementioned doses). Behavioral tests were conducted on day 15 and 30 postnicotine injection, while memory tests, brain neurotransmitters, antioxidants, and histopathological examination were examined at day 30 only. As a result, nicotine impaired rats' activity (hypoactivity and hyperactivity) and memory, induced anxiolytic and anxiogenic effects on rats, and altered neurotransmitters (acetylcholinesterase, serotonin, and dopamine), and redox markers (MDA, H2O2, GSH, and catalase) levels in brain homogenates. Thickening and congestion of the meninges and degeneration of the cerebral neurons and glia cells were observed. Cosupplementation with NNG, vitamin E, and their combination with nicotine was beneficial in the alleviation of activity impairments and improved short memory and cognition defects and exploratory behaviors. Our results indicate the antioxidant potential of NNG and vitamin E by modulating redox markers and neurotransmitters in the brain. Thus, data suggest that the prophylactic use of NNG, vitamin E, and/or their combination for (45 days) may have a successful amelioration of the disrupted behavior and cognition and biochemical and histopathological alterations induced by nicotine.

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纳米紫皮素和维生素E改善尼古丁诱导的大鼠行为、生化和脑组织改变。
尼古丁是香烟中主要的生物碱,能引起各种生物化学和行为变化。纳米橙素(NNG)和维生素E是抗氧化剂,据报道可以减轻一些毒素和氧化剂造成的严重损伤。因此,我们的目的是研究NNG、维生素E及其联合使用对大鼠尼古丁诱导的行为、生化和组织学改变的改善作用。将成年雄性白化大鼠随机分为6组(10只/组):对照组、N组(尼古丁1 mg/kg体重/天S/C,第15 ~ 45天,每周5天)、NNG组(25 mg/kg体重/天口服,连续45天)、N + NNG、N + E组(尼古丁+维生素E 200 mg/kg体重/天口服)、N + NNG + E组(尼古丁+ NNG +维生素E,上述剂量)。在注射尼古丁后第15天和第30天进行行为测试,而记忆测试、脑神经递质、抗氧化剂和组织病理学检查仅在第30天进行。结果,尼古丁损害大鼠的活动(低活动和多活动)和记忆,诱导大鼠的抗焦虑和致焦虑作用,并改变脑匀浆中的神经递质(乙酰胆碱酯酶、血清素和多巴胺)和氧化还原标志物(MDA、H2O2、GSH和过氧化氢酶)水平。脑膜增厚充血,脑神经元和神经胶质细胞变性。NNG、维生素E联合尼古丁可减轻活动障碍,改善短记忆、认知缺陷和探索性行为。我们的研究结果表明NNG和维生素E通过调节大脑中的氧化还原标记物和神经递质而具有抗氧化潜力。因此,数据表明,预防性使用NNG、维生素E和/或它们的组合(45天)可能成功改善尼古丁引起的行为和认知紊乱以及生化和组织病理学改变。
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来源期刊
Journal of Toxicology
Journal of Toxicology TOXICOLOGY-
CiteScore
5.50
自引率
3.40%
发文量
0
审稿时长
10 weeks
期刊介绍: Journal of Toxicology is a peer-reviewed, Open Access journal that publishes original research articles, review articles, and clinical studies in all areas of toxicological sciences. The journal will consider articles looking at the structure, function, and mechanism of agents that are toxic to humans and/or animals, as well as toxicological medicine, risk assessment, safety evaluation, and environmental health.
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