酸枣精治疗抽动秽语综合征的作用机制。

Degenerative Neurological and Neuromuscular Disease Pub Date : 2022-07-15 eCollection Date: 2022-01-01 DOI:10.2147/DNND.S370278
Fei Fan, Fei Han, Long Hao
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引用次数: 0

摘要

背景:酸枣仁是一种广泛用于镇静、安定剂的中草药。虽然SZR对抽动秽语综合征(TS)的临床治疗很重要,但其作用机制尚不清楚。因此,我们利用网络药理学和系统生物学的方法研究了SZR在TS治疗中的药理机制。方法:利用TCMSP数据库筛选SZR的生物活性成分和潜在靶点。UniProt通过绘制已知的SZR相关基因图谱来鉴定靶点。已知与TS相关的基因通过GeneCards和OMIM数据库进行鉴定。利用STRING 11.0数据库中的信息构建蛋白-蛋白互作网络。利用Cytoscape 3.8.0软件和生物信息学在线平台绘制该网络。使用metscape进行基因本体和KEGG富集分析。最后使用AutoDock验证分子对接。结果:SZR中含有10种活性化合物。TS和SZR之间有30个重叠的靶基因。这些基因与几种信号传导和代谢途径有关。AChE、SLC6A4和HTR3A是排在前三位的枢纽基因。SZR中的活性成分对关键靶点具有较高的结合亲和力。结论:SZR治疗TS可通过中药各种活性成分对不同靶点的作用实现网络调控,并通过与潜在靶点的相互作用产生复杂的调控关系,从而起到治疗作用。因此,SZR是治疗TS的潜在候选者,因为它调节神经系统功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mechanisms of Action of <i>Semen Ziziphi spinosae</i> in the Treatment of Tourette Syndrome.

Mechanisms of Action of <i>Semen Ziziphi spinosae</i> in the Treatment of Tourette Syndrome.

Mechanisms of Action of <i>Semen Ziziphi spinosae</i> in the Treatment of Tourette Syndrome.

Mechanisms of Action of Semen Ziziphi spinosae in the Treatment of Tourette Syndrome.

Background: Semen Ziziphi spinosae, known as Suanzaoren (SZR) in Chinese, is a Chinese herbal medicine widely used in sedatives and tranquilizers. Although SZR is important for the clinical treatment of Tourette syndrome (TS), its mechanism of action remains unclear. Therefore, we investigated the pharmacological mechanisms of SZR in TS treatment using network pharmacology and systems biology approaches.

Methods: The bioactive components and potential targets of SZR were screened using the TCMSP database. UniProt was used to identify targets by mapping the known genes related to SZR. The known genes related to TS were identified by GeneCards and OMIM databases. A protein-protein interaction network was constructed using information from STRING 11.0 database. Cytoscape 3.8.0 software and Bioinformatics online platform were used for plotting this network. Gene ontology and KEGG enrichment analyses were performed using Metascape. Finally, AutoDock was used to verify the molecular docking.

Results: We found that SZR had 10 active compounds. There were 30 overlapping target genes between TS and SZR. These genes were associated with several signaling and metabolic pathways. AChE, SLC6A4, and HTR3A were the top three hub genes. The active components in SZR had a high binding affinity for the key targets.

Conclusion: SZR therapy for TS could achieve network regulation through the action of various active components of Chinese medicine on different targets and generate a complex regulatory relationship via interaction with potential targets, thereby playing a therapeutic role. Thus, SZR is a potential candidate for treating TS because it regulates nervous system functions.

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