Increasing evidence suggests that mitochondrial functions are altered in AD and play an important role in AD pathogenesis. It has been established that H2S homeostasis is balanced in AD. The emerging mitochondrial roles of H2S include antioxidation, antiapoptosis, and the modulation of cellular bioenergetics. Here, using primary neurons from the well-characterized APP/PS1 transgenic mouse model, we studied the effects of AP39 (a newly synthesized mitochondrially targeted H2S donor) on mitochondrial function. AP39 increased intracellular H2S levels, mainly in mitochondrial regions. AP39 exerted dose-dependent effects on mitochondrial activity in APP/PS1 neurons, including increased cellular bioenergy metabolism and cell viability at low concentrations (25-100ânM) and decreased energy production and cell viability at a high concentration (250ânM). Furthermore, AP39 (100ânM) increased ATP levels, protected mitochondrial DNA, and decreased ROS generation. AP39 regulated mitochondrial dynamics, shifting from fission toward fusion. After 6 weeks, AP39 administration to APP/PS1 mice significantly ameliorated their spatial memory deficits in the Morris water maze and NORT and reduced Aβ deposition in their brains. Additionally, AP39 inhibited brain atrophy in APP/PS1 mice. Based on these results, AP39 was proposed as a promising drug candidate for AD treatment, and its anti-AD mechanism may involve protection against mitochondrial damage.
AP39, a Mitochondria-Targeted Hydrogen Sulfide Donor, Supports Cellular Bioenergetics and Protects against Alzheimer's Disease by Preserving Mitochondrial Function in APP/PS1 Mice and Neurons.
AP39 是一种线粒体靶向硫化氢供体,它通过维持 APP/PS1 小鼠和神经元中的线粒体功能来支持细胞生物能量学并预防阿尔茨海默病
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作者:Zhao Feng-Li, Fang Fang, Qiao Pei-feng, Yan Ning, Gao Dan, Yan Yong
| 期刊: | Oxidative Medicine and Cellular Longevity | 影响因子: | 0.000 |
| 时间: | 2016 | 起止号: | 2016;2016:8360738 |
| doi: | 10.1155/2016/8360738 | 研究方向: | 神经科学 |
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