Alzheimer's disease is the most common memory loss disease among the elderly. This disease affects the patient's memory, language, attention, and behavioral abilities. Current research has found that in the early stages of the disease, synaptic connections between brain nerve cells become abnormal, but the specific cause is still unclear. Investigators' previous research discovered that in the brains of diseased mice, certain special substances (the miR 342 5p/AnkG-mediated pathway) might be related to this abnormality, and these substances can be detected in both blood and cerebrospinal fluid. Therefore, investigators want to further explore the specific mechanisms of abnormal nerve cell connections, seek biomarkers for early detection of the disease, and provide new ideas for early diagnosis in the future.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
40
Collect peripheral blood, and if the patient consents, also collect cerebrospinal fluid.
The Fourth Affiliated Hospital of Zhejiang University School of Medicine
Yiwu, Zhejiang, China
RECRUITINGCorrelation between miR-342-5p/AnkG Pathway and Synaptic Proteins
Quantitative Reverse Transcription-Polymerase Chain Reaction (QT-PCR) detection of microRNA-342-5p (miR-342-5p), Cytometric Bead Array (CBA) method detection of Ankyrin-G (AnkG), and Electrochemiluminescence (ECL) technology detection of neurogranin. Then analyze the correlation between miR-342-5p/AnkG and the synaptic protein neurogranin
Time frame: Within 12 weeks after enrollment
The correlation between miR-342-5p/AnkG pathway and cognitive function and brain atrophy
miR-342-5p was detected by qRT-PCR, AnkG was measured by CBA method, cognitive function was evaluated using neuropsychological scales, and hippocampal atrophy was assessed by structural MRI.Then analyze the correlation between miR-342-5p/AnkG and cognitive function and hippocampal atrophy
Time frame: Within 12 weeks after enrollment
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