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Selenomethionine reduces the deposition of beta-amyloid plaques by modulating beta-secretase and enhancing selenoenzymatic activity in a mouse model of Alzheimer's disease

机译:硒代蛋氨酸可通过调节β-分泌酶并增强阿尔茨海默氏病小鼠模型的硒酶活性来减少β-淀粉样蛋白斑的沉积

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Alzheimer's disease (AD) is characterized by the production of large amounts of beta-amyloid (Ab) and the accumulation of extracellular senile plaques, which have been considered to be potential targets in the treatment of AD. Selenium (Se) is a nutritionally essential trace element with known antioxidant potential and Se status has been shown to decrease with age and has a close relationship with cognitive competence in AD. Selenomethionine (Se-Met), a major reserve form of Se in organisms, has been shown in our previous study to ameliorate the decline in cognitive function, increase oxidation resistance, and reduce tau hyperphosphorylation in a triple transgenic mouse model of AD. However, it has not been reported whether Se-Met has any effects on A beta pathology in AD mice. To study the effect of Se-Met on A beta pathology and the function of selenoproteins/selenoenzymes in 3x Tg-AD mice, 3x Tg-AD mice at 8 months of age were treated with Se-Met for 3 months. Se-Met led to significantly reduced production and deposition of A beta, down-regulation of beta-secretase levels and enhanced activity of selenoenzymes as well as increased levels of Se in the hippocampus and cortex. Se-Met reduces amyloidogenic processing of amyloid precursor protein while modulating beta-secretase and selenoenzymatic activity in AD mice. These results indicate that Se-Met might exert its therapeutic effect through multiple pathways in AD.
机译:阿尔茨海默氏病(AD)的特征在于大量β-淀粉样蛋白(Ab)的产生和细胞外老年斑的积累,这些被认为是AD治疗的潜在靶标。硒(Se)是一种营养必需的微量元素,具有已知的抗氧化潜能,并且硒的状态已显示随着年龄的增长而降低,并且与AD的认知能力密切相关。硒蛋氨酸(Se-Met)是有机体中硒的主要储备形式,在我们先前的研究中已显示出它可以缓解认知功能的下降,增加抗氧化性并减少三联转基因小鼠AD模型的tau过度磷酸化。然而,尚未报道Se-Met是否对AD小鼠的Aβ病理有任何影响。为了研究Se-Met对3x Tg-AD小鼠的A beta病理学和硒蛋白/硒酶功能的影响,对8月龄的3x Tg-AD小鼠进行了3个月的Se-Met处理。 Se-Met导致Aβ的产生和沉积显着减少,β-分泌酶水平的下调,硒酶的活性增强以及海马和皮质中Se的水平升高。 Se-Met减少了淀粉样蛋白前体蛋白的淀粉样蛋白形成过程,同时调节了AD小鼠的β-分泌酶和硒代酶活性。这些结果表明Se-Met可能通过AD中的多种途径发挥其治疗作用。

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