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Intermittent hypoxic perconditioning improves cognitive function in a mouse model of vascular cognitive impairment and dementia with comorbidities by recovering cerebral blood flow

摘要Vascular cognitive impairment and dementia is a debilitating neurological disorder caused by chronic cerebral hypoperfusion,for which no effective causative treatments are currently available.Intermittent hypoxia has been shown to enhance cerebral blood flow in mice,but its efficacy in a model of vascular cognitive impairment and dementia remains unclear.In this study,we established a mouse model of vascular cognitive impairment and dementia by bilateral carotid artery stenosis.Intermittent hypoxia was induced before and after this stenosis.We found that intermittent hypoxia increased cerebral blood flow,oxygen saturation,and microcirculation in the prefrontal cortex and hippocampus in the model mice,without causing neurovascular damage.Additionally,intermittent hypoxia significantly improved cognitive function in the mouse model of vascular cognitive impairment and dementia,with perconditioning showing greater efficacy than preconditioning.Improvements in cerebral microcirculation and blood flow were positively correlated with cognitive recovery.Even in a mouse model of vascular cognitive impairment and dementia with comorbidities induced by a high-fat,high-fructose diet,intermittent hypoxic perconditioning demonstrated protective effects on cognitive function.Proteomic analysis indicated that mitochondrial protection is a key mechanism,particularly through upregulating NDUFB8 expression and increasing the activity of mitochondrial complex Ⅰ.These findings suggest that intermittent hypoxia is a potential non-invasive strategy for the prevention and treatment of vascular cognitive impairment and dementia.

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作者 Feiyang Jin [1] Zhengming Tian [2] Yuying Guan [2] Yuning Li [2] Yakun Gu [2] Mengyuan Guo [2] Qianqian Shao [2] Yingxia Liu [2] Xiuhai Guo [3] Zhenzhen Quan [4] Jia Liu [2] Xunming Ji [5] 学术成果认领
作者单位 Beijing Institute of Brain Disorders,Laboratory of Brain Disorders,Laboratory for Hypoxia Adaptation Translational Medicine,Ministry of Science and Technology,Collaborative Innovation Center for Brain Disorders,Beijing Advanced Innovation Center for Big Data-Based Precision Medicine,Capital Medical University,Beijing,China;Department of Neurology,Xuanwu Hospital,Capital Medical University,Beijing,China [1] Beijing Institute of Brain Disorders,Laboratory of Brain Disorders,Laboratory for Hypoxia Adaptation Translational Medicine,Ministry of Science and Technology,Collaborative Innovation Center for Brain Disorders,Beijing Advanced Innovation Center for Big Data-Based Precision Medicine,Capital Medical University,Beijing,China [2] Department of Neurology,Xuanwu Hospital,Capital Medical University,Beijing,China [3] Key Laboratory of Molecular Medicine and Biotherapy,School of Life Science,Beijing Institute of Technology,Beijing,China [4] Beijing Institute of Brain Disorders,Laboratory of Brain Disorders,Laboratory for Hypoxia Adaptation Translational Medicine,Ministry of Science and Technology,Collaborative Innovation Center for Brain Disorders,Beijing Advanced Innovation Center for Big Data-Based Precision Medicine,Capital Medical University,Beijing,China;Department of Neurosurgery,Xuanwu Hospital,Capital Medical University,Beijing,China [5]
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DOI 10.4103/NRR.NRR-D-24-00716
发布时间 2026-05-20(万方平台首次上网日期,不代表论文的发表时间)
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中国神经再生研究(英文版)

中国神经再生研究(英文版)

2026年21卷6期

2415-2424页

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