结合网络药理学和实验验证,解读参悟益智胶囊对血管性痴呆大鼠认知功能障碍的改善作用及其机制。

IF 3.5 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Yilan Zhen, Xueqing Wang, Jingwen Niu, Daokang Chen, Cunbao He, Guoqi Zhu, Wenming Ban
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引用次数: 0

摘要

参五益智胶囊作为一种广泛应用于血管性痴呆(VD)治疗的药物,其治疗机制尚不清楚。本研究将网络药理学与实验方法相结合,探讨黄心参对VD大鼠认知功能的影响及其机制。通过双侧颈总动脉闭塞(2-VO)建立VD模型。采用Morris水迷宫(MWM)评估认知功能,采用苏木精-伊红(HE)染色评估海马神经元形态。SWYZC的活性化合物和靶点通过TCMSP、PubChem和Swiss Target Prediction数据库进行鉴定,而vd相关靶点则通过OMIM、TTD和GeneCards进行检索。Venny 2.1.0确定了SWYZC和VD之间的重叠靶点。STRING数据库分析蛋白质-蛋白质相互作用(PPI)网络,DAVID数据库进行基因本体(GO)和京都基因与基因组百科全书(KEGG)途径富集分析。观察细胞凋亡和树突功能,探讨其治疗机制。使用AutoDock Vina进行分子对接。SWYZC显著改善认知缺陷和海马神经元损伤。PPI网络分析确定了SWYZC与VD之间的20个关键靶点,包括TP53、SRC、CASP3等。GO和KEGG分析表明,凋亡、炎症和突触损伤靶点是SWYZC对VD治疗作用的核心。此外,实验验证表明,SWYZC显著上调PSD95和PGC-1α的表达,下调Cleaved Caspase-3、Bax和connexin43 (CX43)的表达。分子对接表明,celabenzine与Bax和CX43有较强的结合。综上所述,SWYZC通过抑制细胞凋亡和促进突触形成,改善VD大鼠的记忆功能,减轻海马神经元损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating network pharmacology and experimental validation deciphers the improving effect and mechanisms of Shenwu Yizhi capsule on cognitive impairment in vascular dementia rats.

The therapeutic mechanisms of Shenwu Yizhi Capsule (SWYZC), a widely used treatment for vascular dementia (VD), remain unclear. This study integrated network pharmacology and experimental methods to elucidate the effects and mechanisms of SWYZC on cognitive function in VD rats. A VD model was established via bilateral common carotid artery occlusion (2-VO). Cognitive function was evaluated using the Morris water maze (MWM), and hippocampal neuronal morphology was assessed via hematoxylin-eosin (HE) staining. Active compounds and targets of SWYZC were identified using the TCMSP, PubChem, and Swiss Target Prediction databases, while VD-related targets were retrieved from OMIM, TTD, and GeneCards. Venny 2.1.0 identified overlapping targets between SWYZC and VD. The STRING database analyzed protein-protein interaction (PPI) networks, and the DAVID database conducted Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analyses. Apoptosis and dendritic function were evaluated to explore therapeutic mechanisms. Molecular docking was performed using AutoDock Vina. SWYZC significantly ameliorated cognitive deficits and hippocampal neuronal damage. PPI network analysis identified 20 key targets between SWYZC and VD, including TP53, SRC, CASP3, etc. GO and KEGG analyses indicated that apoptosis, inflammation, and synaptic injury targets were central to SWYZC's therapeutic effects on VD. Moreover, experimental validation demonstrated that SWYZC significantly upregulated PSD95 and PGC-1α expression while downregulated Cleaved Caspase-3, Bax, and connexin43 (CX43) levels. Molecular docking indicated that celabenzine exhibited strong binding to Bax and CX43. Collectively, SWYZC improves memory function and mitigates hippocampal neuronal damage in VD rats by inhibiting apoptosis and promoting synapse formation.

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来源期刊
Metabolic brain disease
Metabolic brain disease 医学-内分泌学与代谢
CiteScore
5.90
自引率
5.60%
发文量
248
审稿时长
6-12 weeks
期刊介绍: Metabolic Brain Disease serves as a forum for the publication of outstanding basic and clinical papers on all metabolic brain disease, including both human and animal studies. The journal publishes papers on the fundamental pathogenesis of these disorders and on related experimental and clinical techniques and methodologies. Metabolic Brain Disease is directed to physicians, neuroscientists, internists, psychiatrists, neurologists, pathologists, and others involved in the research and treatment of a broad range of metabolic brain disorders.
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