补肾益精方改善阿尔茨海默病模型鼠认知功能的机制研究OA
Mechanism of Bushen Yijing Formula improving cognitive function in Alzheimer's disease model mice
目的:探究补肾益精方对阿尔茨海默病(AD)的干预机制.方法:12只C57BL/6无特定病原体级雄性6月龄小鼠,其中4只野生型小鼠作为正常对照组,8只淀粉样前体蛋白(APP)/早老蛋白1(PS1)双转基因小鼠随机分为模型对照组和补肾益精方组,每组4只.补肾益精方组每天灌胃给予补肾益精合剂8.56 mL/kg,模型对照组和正常对照组灌胃给予相同体积的生理盐水,均连续灌胃12周.通过行为学实验和免疫组织化学染色实验评估小鼠认知功能及其海马β淀粉样蛋白(Aβ)沉积,采集小鼠脑组织标本进行转录组测序,筛选差异表达基因,并进行基因本体(GO)、京都基因和基因组数据库(KEGG)富集分析以及基因集富集分析(GSEA).同时,通过中药系统药理学数据库和分析平台以及PubChem数据库筛选补肾益精方的活性成分,结合GeneCards等数据库获取AD相关靶点,进一步将上述靶点与转录组学差异表达基因进行交叉比对,筛选出共同作用的核心靶点.运用分子对接和分子动力学模拟验证活性成分与核心靶点之间的结合能力.最后采用实时荧光定量聚合酶链反应(qPCR)检测核心靶点基因的表达水平.结果:补肾益精方可改善小鼠认知功能及其海马Aβ沉积.补肾益精方组与模型对照组间存在73个差异表达基因,GO富集分析发现上述差异表达基因富集于281种生物学过程、104种细胞组分和120种分子功能,KEGG富集分析得到110条通路,GSEA进一步补充了322条富集通路,主要涉及免疫系统、神经退行性疾病及相关信号通路(如Th17细胞分化、NF-κB等).筛选出补肾益精方治疗AD的10个核心靶点,补肾益精方活性成分与这些靶点具有良好结构稳定性和结合亲和力.补肾益精方能下调Aurkb、Nr1i3、Ttk表达和上调Apob、Ces1d表达,该变化趋势与转录组测序结果一致.结论:补肾益精方可能通过多成分、多靶点、多通路的方式调节免疫炎症反应、减轻神经元损伤,从而改善AD模型鼠认知功能.
Objective:To explore the mechanism of Bushen Yijing Formula(BSYJF)in the treatment of Alzheimer's disease(AD)through an integrated approach combining transcriptomics,network pharmacology,and molecular docking.Methods:Twelve specific pathogen-free male C57BL/6 mice,aged 6 months,were used in this study.Among them,four wild-type mice served as the normal control group,and eight amyloid precursor protein(APP)/presenilin 1(PS1)double-transgenic mice were randomly divided into a model control group and a BSYJF group,with four mice in each group.Mice in the BSYJF group were orally administered 8.56 mL/kg BSYJF by gavage once daily,while those in the model control and normal control groups received an equal volume of normal saline by gavage.All treatments were continued for 12 consecutive weeks.Cognitive function and hippocampal amyloid β-protein(Aβ)deposition were assessed using behavioral tests and immunohisto-chemistry.Mouse brain tissue samples were subjected to transcriptomic sequencing to identify differentially expressed genes(DEGs).Functional enrichment analyses were performed using Gene Ontology(GO),Kyoto Encyclopedia of Genes and Genomes(KEGG),and gene set enrichment analysis(GSEA).In parallel,active compounds of BSYJF were screened via the TCMSP and PubChem databases,and AD-related targets were retrieved from GeneCards and other disease databases.Core targets were identified by intersecting these targets with transcriptomic DEGs.Molecular docking and molecular dynamics simulations were employed to evaluate binding affinity between active compounds and core targets,and quantitative polymerase chain reaction(qPCR)was used to validate expression changes of core target genes.Results:BSYJF treatment improved cognitive function and reduced hippocampal Aβ deposition in APP/PS1 mice.Transcriptomic analysis revealed 73 DEGs between the model and BSYJF groups.GO analysis identified enrichment in 281 biological processes,104 cellular components,and 120 molecular functions.KEGG analysis highlighted 110 pathways,and GSEA supplemented 322 enriched gene sets,many related to the immune system,neurodegenerative diseases,and signaling pathways such as Th17 cell differentiation and NF-κB.Integrated analysis with network pharmacology prioritized 10 core targets.Molecular docking and molecular dynamics simulations indicated strong structural stability and binding affinity of BSYJF bioactive constituents to these core targets.qPCR results confirmed that BSYJF down-regulated the expression of Aurkb,Nr1i3,and Ttk,while upregulating Apob and Ces1d,consistent with the transcriptomic findings.Conclusion:BSYJF may regulate immune-inflammatory responses and alleviate neuronal damage through a multi-component,multi-target,and multi-pathway approach,thereby improving cognitive function in AD model mice.
张哲祚;李德雨;刘晶;鲁磊;蔡文慧;于顾然
南京中医药大学附属医院神经内科,江苏 南京 210029南京中医药大学附属医院神经内科,江苏 南京 210029南京中医药大学附属医院神经内科,江苏 南京 210029南京中医药大学附属医院神经内科,江苏 南京 210029南京中医药大学附属医院神经内科,江苏 南京 210029南京中医药大学附属医院神经内科,江苏 南京 210029
医药卫生
阿尔茨海默病补肾益精方转录组学网络药理学认知功能海马β淀粉样蛋白APP/PS1小鼠
Alzheimer's diseaseBushen Yijing FormulaTranscriptomicsNetwork pharmacologyCognitive functionHippocampal AβAPP/PS1 mice
《浙江大学学报(医学版)》 2026 (5)
437-448,12
国家重点研发计划(2022YFC3501403)江苏省院士工作站(BM2024101)This study was supported by National Key R&D Program of China(2022YFC3501403),and Jiangsu Provincial Academician Workstation(BM2024101)
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