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首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >Neuroprotective effect of berberine against environmental heavy metals-induced neurotoxicity and Alzheimer's-like disease in rats
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Neuroprotective effect of berberine against environmental heavy metals-induced neurotoxicity and Alzheimer's-like disease in rats

机译:小檗碱对大鼠环境重金属诱导神经毒性的神经保护作用及阿尔茨海默氏病

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摘要

Abstract Heavy metals are reported as neurodegenerative disorders progenitor. They play a role in the precipitation of abnormal β-amyloid protein and hyper-phosphorylated tau, the main hallmarks of Alzheimer's disease (AD). The present study aimed to validate the heavy metals-induced Alzheimer's-like disease in rats as an experimental model of AD and explore the therapeutic effect of berberine via tracking its effect on the oxidative stress-inflammatory pathway. Alzheimer's-like disease was induced in rats orally by a mixture of aluminium, cadmium and fluoride for three months, followed by berberine treatment for another one month. Berberine significantly improved the cognitive behaviors in Morris water maze test and offered a protective effect against heavy metals-induced memory impairment. Docking results showed that berberine inhibited AChE, COX-2 and TACE. Matching with in silico study, berberine downregulated the AChE expression and inhibited its activity in the brain tissues. Also, it normalized the production of TNF- α, IL-12, IL-6 and IL-1β. Moreover, it evoked the production of antioxidant Aβ40 and inhibited the formation of Aβ42, responsible for the aggregations of amyloid-β plaques. Histopathological examination confirmed the neuroprotective effect of berberine. The present data advocate the possible beneficial effect of berberine as therapeutic modality for Alzheimer's disease via its antiinflammatory/antioxidant mechanism. Highlight ? The environmental neurotoxicity of heavy metals and trace elements. ? The anti-inflammatory/antioxidant properties of berberine against the neurodegenerative disorders. ? Beberine as multipotent anti-Alzheimer like disorder compound.
机译:摘要重金属报告为神经变性疾病祖细胞。它们在异常β-淀粉样蛋白和高磷酸化TAU的沉淀中发挥作用,是阿尔茨海默病的主要标志(AD)。本研究旨在验证大鼠的重金属诱导的阿尔茨海默病,作为广告的实验模型,并通过跟踪其对氧化应激炎症途径的影响。通过铝,镉和氟化物的混合物在大鼠中诱导阿尔茨海默氏症的疾病三个月,然后再次进行一次Berberine治疗。小檗碱显着改善了莫里斯水迷宫试验中的认知行为,并为重金属引起的记忆损伤提供了一种保护效果。对接结果表明,小檗碱抑制了疼痛,COX-2和TACE。与硅研究相匹配,小檗碱下调了疼痛的表达并抑制其在脑组织中的活性。此外,它标准化了TNF-α,IL-12,IL-6和IL-1β的产生。此外,它引起了抗氧化剂Aβ40的产生并抑制Aβ42的形成,负责淀粉样蛋白-β斑块的聚集。组织病理学检查证实了小檗碱的神经保护作用。目前的数据通过其抗炎/抗氧化机制倡导Alzheimer疾病的可能有益效果。强调 ?重金属的环境神经毒性和微量元素。还小檗碱对神经变性障碍的抗炎/抗氧化性能。还Beberine作为多能抗阿尔茨海默氏症,如病症化合物。

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