在阿尔茨海默氏症小鼠模型中,Se-甲基硒代半胱氨酸通过靶向线粒体吞噬和自噬改善线粒体功能

IF 5.4 1区 农林科学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Food & Function Pub Date : 2024-03-12 DOI:10.1039/D4FO00520A
Yongli Xie, Xiaoshan Ke, Zhencong Ye, Xuexia Li, Zetao Chen, Jiantao Liu, Ziyi Wu, Qiong Liu and Xiubo Du
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引用次数: 0

摘要

背景:阿尔茨海默病(AD)病因不明,缺乏有效的治疗方案,给家庭和社会带来巨大压力。我们之前的研究表明,Se-甲基硒代半胱氨酸(SMC)可改善三转基因 AD(3 × Tg-AD)小鼠的认知能力和突触可塑性,并缓解相关病理指标。我们致力于研究 SMC 对 3 × Tg-AD 小鼠线粒体功能的治疗作用和分子机制。研究方法采用透射电子显微镜(TEM)、Western blot(WB)、线粒体膜电位(ΔΨm)、线粒体肿胀试验和线粒体耗氧量试验评估线粒体形态和功能。用免疫荧光、TEM和WB评估线粒体吞噬通量和自噬通量。应用莫里斯水迷宫试验检测小鼠的行为能力。结果在 3 × Tg-AD 小鼠体内,SMC 通过改善线粒体能量代谢、线粒体生物生成和线粒体融合/分裂平衡,修复了被破坏的线粒体形态和功能。此外,SMC 通过 BNIP3/NIX 通路激活线粒体吞噬通量,并通过抑制 Ras/Raf/MEK/ERK/mTOR 通路引发自噬通量,从而改善线粒体。SMC 显著提高了 AD 小鼠的认知能力。结论该研究表明,SMC可通过保护线粒体对3×Tg-AD小鼠发挥治疗作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Se-methylselenocysteine ameliorates mitochondrial function by targeting both mitophagy and autophagy in the mouse model of Alzheimer's disease†

Se-methylselenocysteine ameliorates mitochondrial function by targeting both mitophagy and autophagy in the mouse model of Alzheimer's disease†

Background: Alzheimer's disease (AD) exerts tremendous pressure on families and society due to its unknown etiology and lack of effective treatment options. Our previous study had shown that Se-methylselenocysteine (SMC) improved the cognition and synaptic plasticity of triple-transgenic AD (3 × Tg-AD) mice and alleviated the related pathological indicators. We are dedicated to investigating the therapeutic effects and molecular mechanisms of SMC on mitochondrial function in 3 × Tg-AD mice. Methods: Transmission electron microscopy (TEM), western blotting (WB), mitochondrial membrane potential (ΔΨm), mitochondrial swelling test, and mitochondrial oxygen consumption test were used to evaluate the mitochondrial morphology and function. Mitophagy flux and autophagy flux were assessed with immunofluorescence, TEM and WB. The Morris water maze test was applied to detect the behavioral ability of mice. Results: The destroyed mitochondrial morphology and function were repaired by SMC through ameliorating mitochondrial energy metabolism, mitochondrial biogenesis and mitochondrial fusion/fission balance in 3 × Tg-AD mice. In addition, SMC ameliorated mitochondria by activating mitophagy flux via the BNIP3/NIX pathway and triggering autophagy flux by suppressing the Ras/Raf/MEK/ERK/mTOR pathway. SMC remarkably increased the cognitive ability of AD mice. Conclusions: This research indicated that SMC might exert its therapeutic effect by protecting mitochondria in 3 × Tg-AD mice.

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来源期刊
Food & Function
Food & Function BIOCHEMISTRY & MOLECULAR BIOLOGY-FOOD SCIENCE & TECHNOLOGY
CiteScore
10.10
自引率
6.60%
发文量
957
审稿时长
1.8 months
期刊介绍: Food & Function provides a unique venue for physicists, chemists, biochemists, nutritionists and other food scientists to publish work at the interface of the chemistry, physics and biology of food. The journal focuses on food and the functions of food in relation to health.
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