Spirulina Ameliorates Oxidative Damage and Inflammation in Rotenone-Induced Neurotoxicity in Male Mice

Marwa E.A. EL- Shamarka, M. Mwaheb, A. Hussein, Ola N. Sayed, Eman S Said
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引用次数: 2

Abstract

Background: Rotenone, a chemical compound produced naturally by leguminous plants, has conventionally been used as a pesticide by blocking the uptake of oxygen by body cells. Our study aimed to investigate the effect of spirulina on oxidative damage, inflammation, and neurotoxicity in male mice treated by rotenone. Methods: The experimental animals were divided into 5 groups. Group (I) served as control that received Dimethyl Sulfoxide (DMSO); Group (II) mice treated with rotenone (1.5 mg/kg, s.c.3 times per week); Group (III) mice received rotenone/L-dopa (25 mg/kg, P.O. daily); Group (IV) and Group (V) mice were treated with rotenone/spirulina (200 and 400 mg/kg, P.O. daily) respectively for two weeks. Results: Rotenone-treated mice indicated impaired motor coordination and activity in wire hanging, wood walking, open field, and stair tests. Furthermore, rotenone treatment caused elevation in striatal levels of Malondialdehyde (MDA), Nitric Oxide (NO), Tumor Necrosis Factor (TNF-α), Interleukin -1 beta (IL-1β), and caspase 3 and decrement in Bcl-2; dopamine and Glutathione (GSH) levels. Moreover, severe neuronal degeneration, striatal DNA fragmentation, and increased striatal 8-OHdG levels and MTH1 expression in the rotenone group. Additionally, spirulina treatment prevented rotenone-induced motor deficits striatal DNA fragmentation and demonstrated good restoration of the substantial neurons with reservation of the typical dark appearance. Besides, rotenone-induced biochemical changes were ameliorated by spirulina treatment as dopamine, Bcl-2, and GSH levels were increased, and striatal MDA, TNF-α, IL-1β, and caspase 3 levels were decreased. Conclusion: Natural products like spirulina could reverse rotenone-induced neurotoxicity in male mice due to their anti-inflammatory and antioxidant properties.
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螺旋藻改善雄性小鼠鱼藤酮神经毒性的氧化损伤和炎症
背景:鱼藤酮是一种由豆科植物天然产生的化合物,通常被用作杀虫剂,通过阻断人体细胞对氧气的吸收。我们的研究旨在研究螺旋藻对鱼藤酮治疗雄性小鼠的氧化损伤、炎症和神经毒性的影响。方法:实验动物分为5组。组(I)用作接受二甲基亚砜(DMSO)的对照;组(II)用鱼藤酮处理的小鼠(1.5mg/kg,每周皮下注射.3次);组(III)小鼠接受鱼藤酮/L-多巴(25mg/kg,P.O.每日);第(IV)组和第(V)组小鼠分别用鱼藤酮/螺旋藻(200和400mg/kg,P.O.每日)处理两周。结果:鱼藤酮治疗的小鼠在挂线、走木、开阔场地和楼梯测试中表现出运动协调和活动受损。此外,鱼藤酮治疗导致纹状体丙二醛(MDA)、一氧化氮(NO)、肿瘤坏死因子(TNF-α)、白细胞介素-1β(IL-1β)和胱天蛋白酶3水平升高,Bcl-2水平降低;多巴胺和谷胱甘肽(GSH)水平。此外,鱼藤酮组出现严重的神经元变性、纹状体DNA断裂、纹状体8-OHdG水平和MTH1表达增加。此外,螺旋藻处理防止了鱼藤酮诱导的运动缺陷纹状体DNA断裂,并证明了大量神经元的良好恢复,保留了典型的深色外观。此外,螺旋藻处理改善了鱼藤酮诱导的生化变化,多巴胺、Bcl-2和GSH水平升高,纹状体MDA、TNF-α、IL-1β和胱天蛋白酶3水平降低。结论:螺旋藻等天然产物具有抗炎和抗氧化作用,可逆转鱼藤酮对雄性小鼠的神经毒性。
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CiteScore
0.60
自引率
0.00%
发文量
50
审稿时长
12 weeks
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