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首页> 外文期刊>RSC Advances >Network pharmacology-based study of the mechanisms of action of anti-diabetic triterpenoids from Cyclocarya paliurus
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Network pharmacology-based study of the mechanisms of action of anti-diabetic triterpenoids from Cyclocarya paliurus

机译:基于网络药理学的抗糖尿病三萜素来自环核糖菌的作用机制研究

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摘要

Diabetes is a complex illness requiring long-term therapy. Cyclocarya paliurus , a recently confirmed new food resource, shows significant hypoglycemic and hypolipidemic effects in type II diabetes. Triterpenoid saponins are considered as the effective medicinal components of C. paliurus and are useful for the treatment of diabetes mellitus. However, little is known regarding their specific mechanism of actions. In this study, we used active ingredient screening and target prediction techniques to determine the components of C. paliurus responsible for its anti-diabetic effects as well as their targets. In addition, we used bioinformatics technology and molecular docking analysis to determine the mechanisms underlying their anti-diabetic effects. A total of 39 triterpenes were identified through a literature search and 1 triterpene compound by experiments. In all, 33 potential target proteins associated with 36 pathways were predicted to be related to diabetes. Finally, 7 compounds, 15 target proteins, and 15 signaling pathways were found to play important roles in the therapeutic effects of C. paliurus against diabetes. These results provide a theoretical framework for the use of C. paliurus against diabetes. Moreover, molecular docking verification showed that more than 90% of the active ingredients had binding activity when tested against key target proteins, and a literature search showed that the active ingredients identified had anti-diabetic effects, indicating that the results were highly reliable.
机译:糖尿病是一种需要长期治疗的复杂疾病。 Cyclocarya Paliurus是最近证实的新食物资源,显示出II型糖尿病的显着降血性和低血脂作用。三萜类皂苷被认为是C. paliurus的有效药物组分,可用于治疗糖尿病。然而,对于他们的特定行动机制很少。在这项研究中,我们使用活性成分筛选和靶预测技术来确定对其抗糖尿病效应以及其靶标的C. paliurus的组分。此外,我们使用生物信息学技术和分子对接分析来确定其抗糖尿病效应的潜在机制。通过文献搜索和1个三萜化合物通过实验鉴定了总共39个三萜。总而言之,预计与36个途径相关的33种潜在的靶蛋白与糖尿病有关。最后,发现7种化合物,15个靶蛋白和15条信号途径在对糖尿病的C. paliurus的治疗作用中起重要作用。这些结果为使用C. paliurus对抗糖尿病提供了理论框架。此外,分子对接验证表明,90%的活性成分当对关键靶蛋白进行测试时具有结合活性,并且文献搜索显示鉴定的活性成分具有抗糖尿病作用,表明结果是高度可靠的。

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