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基于网络药理学探讨天麻素对快速老化小鼠SAMP8脑衰老相关基因表达的影响

Effects of gastrodin on the expression of brain aging-related genes in SAM/P-8 mice based on network pharmacology.

作者信息

Zhao Nan, Jiang Rui, Cheng Jun-Jie, Xiao Qiu-Xia

机构信息

Department of Anesthesia, Hospital of Stomatology Zunyi Medical University Zunyi China.

Department of Anesthesia Affiliated Hospital of Zunyi Medical University Zunyi China.

出版信息

Ibrain. 2022 Nov 6;9(2):157-170. doi: 10.1002/ibra.12076. eCollection 2023 Summer.

Abstract

BACKGROUND

Gastrodin can reduce neuronal damage through multiple targets and pathways, and can be useful in preventing and treating degenerative lesions of the central nervous system, but the specific mechanism has not been elucidated.

METHODS

The aging-related genes in the hippocampus and the frontal cortex were detected in adult and aged mice treated with gastrodin or not. In addition, we collected the target genes of gastrodin and aging from a network database, and a Venn diagram was created to obtain the intersection target genes of gastrodin and aging. Then, the String database was used to analyze the protein-protein interactions (PPIs) between aging-related genes and the target genes of gastrodin and aging. The "drug-disease-target-pathway" network was constructed using Cytoscape 3.7.2 software, and the main mechanism and pathway of key genes were analyzed by Kyoto Encyclopedia of Genes and Genomes (KEGG) and Gene Ontology (GO). Finally, the reliability of these key genes was further verified by molecular docking technology.

RESULTS

The results showed that 6 out of 10 genes related to brain aging were differentially expressed after gastrodin intervention. Moreover, there were 11 key genes between gastrodin and differentially expressed genes related to brain aging. GO and KEGG results suggested that material metabolism and carbohydrate digestion and absorption were associated with the pathological mechanism of gastrodin antiaging. Molecular docking results also confirmed the good binding activity of gastrodin to the key genes.

CONCLUSION

Gastrodin plays a potential role in antiaging by regulating substance metabolism and carbohydrate digestion and absorption.

摘要

背景

天麻素可通过多个靶点和途径减轻神经元损伤,对预防和治疗中枢神经系统退行性病变具有一定作用,但其具体机制尚未阐明。

方法

检测给予或未给予天麻素的成年和老年小鼠海马及额叶皮质中的衰老相关基因。此外,我们从网络数据库收集天麻素和衰老的靶基因,并绘制韦恩图以获得天麻素和衰老的交集靶基因。然后,利用String数据库分析衰老相关基因与天麻素和衰老靶基因之间的蛋白质-蛋白质相互作用(PPI)。使用Cytoscape 3.7.2软件构建“药物-疾病-靶点-途径”网络,并通过京都基因与基因组百科全书(KEGG)和基因本体论(GO)分析关键基因的主要机制和途径。最后,通过分子对接技术进一步验证这些关键基因的可靠性。

结果

结果显示,天麻素干预后,10个与脑衰老相关的基因中有6个差异表达。此外,天麻素与脑衰老相关差异表达基因之间存在11个关键基因。GO和KEGG结果表明,物质代谢以及碳水化合物消化与吸收与天麻素抗衰老的病理机制相关。分子对接结果也证实了天麻素与关键基因具有良好的结合活性。

结论

天麻素通过调节物质代谢以及碳水化合物消化与吸收发挥潜在的抗衰老作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0e2/10529193/fd6cfe099e4e/IBRA-9-157-g001.jpg

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