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烟酰胺磷酸核糖基转移酶相关信号通路在早期阿尔茨海默病小鼠模型中的作用。

Nicotinamide phosphoribosyltransferase‑related signaling pathway in early Alzheimer's disease mouse models.

机构信息

Shanghai Geriatric Institute of Chinese Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai 200031, P.R. China.

出版信息

Mol Med Rep. 2019 Dec;20(6):5163-5171. doi: 10.3892/mmr.2019.10782. Epub 2019 Oct 30.

Abstract

Alzheimer's disease (AD) is a neurodegenerative disease of the central nervous system that is characterized by progressive cognitive dysfunction and which ultimately leads to dementia. Studies have shown that energy dysmetabolism contributes significantly to the pathogenesis of a variety of aging‑associated diseases and degenerative diseases of the nervous system, including AD. One focus of research thus has been how to regulate the expression of nicotinamide phosphoribosyltransferase (NAMPT) to prevent against neurodegenerative diseases. Therefore, the present study used 6‑month‑old APPswe/PS1ΔE9 (APP/PS1) transgenic mice as early AD mouse models and sought to evaluate nicotinamide adenine dinucleotide (NAD+) and FK866 (a NAMPT inhibitor) treatment in APP/PS1 mice to study NAMPT dysmetabolism in the process of AD and elucidate the underlying mechanisms. As a result of this treatment, the expression of NAMPT decreased, the synthesis of ATP and NAD+ became insufficient and the NAD+/NADH ratio was reduced. The administration of NAD+ alleviated the spatial learning and memory of APP/PS1 mice and reduced senile plaques. Administration of NAD+ may also increase the expression of the key protein NAMPT and its related protein sirtuin 1 as well as the synthesis of NAD+. Therefore, increasing NAMPT expression levels may promote NAD+ production. Their regulation could form the basis for a new therapeutic strategy.

摘要

阿尔茨海默病(AD)是一种中枢神经系统的神经退行性疾病,其特征是进行性认知功能障碍,最终导致痴呆。研究表明,能量代谢障碍对多种与衰老相关的疾病和神经退行性疾病的发病机制有重要贡献,包括 AD。因此,研究的一个重点是如何调节烟酰胺磷酸核糖转移酶(NAMPT)的表达,以预防神经退行性疾病。本研究使用 6 月龄 APPswe/PS1ΔE9(APP/PS1)转基因小鼠作为早期 AD 小鼠模型,评估烟酰胺腺嘌呤二核苷酸(NAD+)和 FK866(NAMPT 抑制剂)处理 APP/PS1 小鼠,以研究 AD 过程中 NAMPT 代谢紊乱,并阐明其潜在机制。结果显示,NAMPT 表达降低,ATP 和 NAD+的合成不足,NAD+/NADH 比值降低。给予 NAD+可缓解 APP/PS1 小鼠的空间学习记忆障碍,减少老年斑。给予 NAD+还可能增加关键蛋白 NAMPT 及其相关蛋白 Sirtuin 1 的表达以及 NAD+的合成。因此,增加 NAMPT 表达水平可能促进 NAD+的产生。它们的调节可能为新的治疗策略提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b5e/6854586/76a6550b99a4/MMR-20-06-5163-g00.jpg

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