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首页> 外文期刊>Clinical Phytoscience >Network pharmacology-based assessment to elucidate the molecular mechanism of anti-diabetic action of Tinospora cordifolia
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Network pharmacology-based assessment to elucidate the molecular mechanism of anti-diabetic action of Tinospora cordifolia

机译:基于网络药理学的评估,以阐明Tinospora Cordifolia抗糖尿病作用的分子机制

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摘要

Tinospora cordifolia is used traditionally for the treatment of diabetes and is used in various formulations. Scientific evidence is also available for its anti-diabetic potency under various animal models. However, the probable molecular mechanism of Tinospora cordifolia in the treatment of diabetes has not been illuminated yet. Hence, the present study dealt to?elucidate the probable molecular mechanism of anti-diabetic effect of Tinospora cordifolia using network pharmacology approach. The structural information of bioactive phytoconstituents was retrieved from different open source databases. Compounds were then predicted for their hits with the probable targets involved in the diabetes mellitus. Phytoconstituents were also predicted for their druglikeness score, probable side effects, and ADMET profile. The modulated protein pathways were identified by using the Kyoto Encyclopedia of Genes and Genomes pathway analysis. The interaction between the compounds, proteins, and pathways was interpreted based on the edge count. The docking study was performed using Autodock4.0. Nine phytoconstituents from Tinospora cordifolia were identified to modulate the pathogenic protein molecules involved in diabetes mellitus. Among them, tembetarine scored highest druglikeness hit and had the maximum interaction with proteins?involved in diabetes. Further, neuroactive ligand-receptor interaction was predicted as majorly modulated pathway. The current study identified an important antidiabetic constituent, tembetarine which modulated the majority of diabetic proteins majorly modulating neuroactive ligand-receptor interaction.
机译:Tinospora Cordifolia通常用于治疗糖尿病并用于各种配方。科学证据也可用于各种动物模型的抗糖尿病效力。然而,Tinospora Cordifolia在治疗糖尿病中的可能分子机制尚未被照亮。因此,本研究涉及使用网络药理学方法阐明Tinospora Cordifolia抗糖尿病效应的可能分子机制。从不同的开源数据库中检索生物活性植物组织的结构信息。然后预测化合物的命中,伴随着糖尿病患者的可能靶标。还预测了植物植物证,他们的药物性得分,可能的副作用和招舱概况。通过使用基因和基因组途径分析的kyoto百科全书来鉴定调制的蛋白质途径。基于边缘计数解释化合物,蛋白质和途径之间的相互作用。使用Autodock4.0进行对接研究。鉴定来自Tinospora Cordifolia的九种植物主量,以调节糖尿病患者的致病蛋白质分子。其中,Tembetarine击中了最高的药物,并且与蛋白质相互作用?参与糖尿病。此外,预测神经活性配体 - 受体相互作用是主要调节途径。目前的研究发现了一种重要的抗糖尿病成分,Tembetarine,其调节大多数糖尿病蛋白主要调节神经活性配体 - 受体相互作用。

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