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首页> 外文期刊>Journal of Alzheimer's disease: JAD >Decreased accumulation of subcellular amyloid-β with improved mitochondrial function mediates the neuroprotective effect of huperzine a
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Decreased accumulation of subcellular amyloid-β with improved mitochondrial function mediates the neuroprotective effect of huperzine a

机译:具有改善的线粒体功能的亚细胞淀粉样蛋白β的减少介导石杉碱甲的神经保护作用

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A number of recent discoveries indicate that huperzine A, an active herbal medicine employed for the treatment of Alzheimer's disease (AD) in China, can afford neuroprotection on in vitro and in vivo models related to mitochondrial dysfunction. However, it is an intricate and highly debated research topic about whether another pharmacological mechanism is involved in the beneficial profiles of huperzine A, independent of its well-recognized potent acetycholinesterase (AChE) inhibitory effect. As an extension, this study for the first time verified the co-occurrence of the beneficial effects of huperzine A on mitochondrial dysfunction and memory deficits in AβPP/PS1 double transgenic mice, at a time point that AChE was not inhibited. Moreover, using isolated brain cortical mitochondria, we confirmed the ameliorating effect of huperzine A on oligomeric Aβ 1-42-induced ATP reduction and mitochondrial swelling, as well as a decrease in the enzymatic activities of respiratory chain complexes, especially complex II-III and complex IV, which may be attributed to the blockage of oligomeric Aβ 1-42 from penetrating into mitochondria. These results shed more light on a potential direct target of huperzine A on isolated mitochondria, which may be largely different from its specific inhibition on AChE. This work describes a novel mechanism of neuroprotection by huperzine A and provides important clues for discovering novel therapeutic strategy for AD.
机译:最近的许多发现表明,石杉碱甲是一种在中国用于治疗阿尔茨海默氏病(AD)的有效草药,可以在与线粒体功能障碍相关的体外和体内模型中提供神经保护作用。但是,关于石杉碱甲的有益作用是否独立于公认的强效乙酰胆碱酯酶(AChE)抑制作用,是否是另一种药理机制,这是一个复杂而备受争议的研究主题。作为扩展,这项研究首次证实石杉碱甲对AβPP/ PS1双转基因小鼠线粒体功能障碍和记忆缺陷的有益作用并存,而此时AChE未被抑制。此外,使用孤立的大脑皮质线粒体,我们证实了石杉碱甲对寡聚Aβ1-42诱导的ATP减少和线粒体肿胀以及呼吸链复合物(尤其是复合物II-III和复合物IV,其可能归因于寡聚Aβ1-42渗透到线粒体中。这些结果为石杉碱甲对分离的线粒体的潜在直接靶标提供了更多的启示,这可能与其对AChE的特异性抑制作用大不相同。这项工作描述了石杉碱甲的神经保护的一种新机制,并为发现新的AD治疗策略提供重要的线索。

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