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血清CLU、NRG-1水平與血管性癡呆患者認知功能障礙嚴重程度的關系及對預后的價值分析

    血管性癡呆;簇集素;神經(jīng)調節(jié)蛋白-1;認知功能障礙;預后;預測價值...[繼續(xù)閱讀]

現(xiàn)代生物醫(yī)學進展2024-06-15

阿爾茨海默病患者血清IL-10、IL-17、IL-33與腸道菌群相對豐度和認知功能的相關性分析

    阿爾茨海默病;IL-10;IL-17;IL-33;腸道菌群相對豐度;認知功能;相關性...[繼續(xù)閱讀]

現(xiàn)代生物醫(yī)學進展2024-05-30

阿爾茨海默病患者血清淀粉樣蛋白A、膽堿酯酶、載脂蛋白A1水平與認知功能的關系研究

    阿爾茨海默病;淀粉樣蛋白A;膽堿酯酶;載脂蛋白A1;認知功能;相關性...[繼續(xù)閱讀]

現(xiàn)代生物醫(yī)學進展2024-04-15

Making bridges between preclinical and clinical insights into age-related cognitive decline

    Making bridges between preclinical and clinical insights into age-related cognitive decline...[繼續(xù)閱讀]

Neural Regeneration Research2024-09-24

Brain age estimation:premise, promise, and problems

    and problems;Brain age estimation:premise;promise...[繼續(xù)閱讀]

Neural Regeneration Research2024-09-24

Decoding molecular mechanisms:brain aging and Alzheimeru0027s disease

    Alzheimeru0027s disease;brain aging;cognitive health;dementia;molecular mechanisms;neuronal activity;neuroplasticity;neurotransmission...[繼續(xù)閱讀]

Neural Regeneration Research2024-09-24

Glycolytic dysregulation in Alzheimeru0027s disease:unveiling new avenues for understanding pathogenesis and improving therapy

    Alzheimeru0027s disease;glial cells;glycolysis;neuronal metabolism;pathogenesis;therapeutic targets...[繼續(xù)閱讀]

Neural Regeneration Research2024-09-24

Gamma-glutamyl transferase 5 overexpression in cerebrovascular endothelial cells improves brain pathology, cognition, and behavior in APP/PS1 mice

    Alzheimeru0027s disease;amyloid-β;APP/PS1 mice;cerebrovascular endothelial cells;cognitive deficits;gamma-glutamyl transferase 5;neurovascular unit;nuclear factor-kappa B;synaptic plasticity;β-site AP...[繼續(xù)閱讀]

Neural Regeneration Research2024-06-05

P2Y1 receptor in Alzheimeru0027s disease

    astrocytes;neuroinflammation;P2Y1 receptor;purinergic receptor...[繼續(xù)閱讀]

Neural Regeneration Research2024-06-05

Nanomaterials-mediated lysosomal regulation: a robust protein-clearance approach for the treatment of Alzheimeru0027s disease

    Alzheimeru0027s disease;autophagy dysfunction;lysosomal acidification;lysosomal system;nanomaterials;neurodegenerative diseases...[繼續(xù)閱讀]

Neural Regeneration Research2024-06-05