首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Identify the Key Active Ingredients and Pharmacological Mechanisms of Compound XiongShao Capsule in Treating Diabetic Peripheral Neuropathy by Network Pharmacology Approach
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Identify the Key Active Ingredients and Pharmacological Mechanisms of Compound XiongShao Capsule in Treating Diabetic Peripheral Neuropathy by Network Pharmacology Approach

机译:鉴别网络药理学方法治疗糖尿病外周神经病治疗糖尿病外周神经病变的关键活性成分和药理机制

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Compound XiongShao Capsule (CXSC), a traditional herb mixture, has shown significant clinical efficacy against diabetic peripheral neuropathy (DPN). However, its multicomponent and multitarget features cause difficulty in deciphering its molecular mechanisms. Our study aimed to identify the key active ingredients and potential pharmacological mechanisms of CXSC in treating DPN by network pharmacology and provide scientific evidence of its clinical efficacy. CXSC active ingredients were identified from both the Traditional Chinese Medicine Systems Pharmacology database, with parameters of oral bioavailability ≥ 30% and drug-likeness ≥ 0.18, and the Herbal Ingredients’ Targets (HIT) database. The targets of those active ingredients were identified using ChemMapper based on 3D-structure similarity and using HIT database. DPN-related genes were acquired from microarray dataset GSE95849 and five widely used databases (TTD, Drugbank, KEGG, DisGeNET, and OMIM). Next, we obtained candidate targets with therapeutic effects against DPN by mapping active ingredient targets and DPN-related genes and identifying the proteins interacting with those candidate targets using STITCH 5.0. We constructed an “active ingredients-candidate targets-proteins” network using Cytoscape 3.61 and identified key active ingredients and key targets in the network. We identified 172 active ingredients in CXSC, 898 targets of the active ingredients, 110 DPN-related genes, and 38 candidate targets with therapeutic effects against DPN. Three key active ingredients, namely, quercetin, kaempferol, and baicalein, and 25 key targets were identified. Next, we input all key targets into ClueGO plugin for KEGG enrichment and molecular function analyses. The AGE-RAGE signaling pathway in diabetic complications and MAP kinase activity were determined as the main KEGG pathway and molecular function involved, respectively. We determined quercetin, kaempferol, and baicalein as the key active ingredients of CXSC and the AGE-RAGE signaling pathway and MAP kinase activity as the main pharmacological mechanisms of CXSC against DPN, proving the clinical efficacy of CXSC against DPN.
机译:复合熊肠胶囊(CXSC),一种传统的草本混合物,表明了针对糖尿病外周神经病变(DPN)的显着临床疗效。然而,其多组分和多元特征导致解密其分子机制的困难。我们的研究旨在通过网络药理学识别CXSC的关键活性成分和潜在的药理学机制,并提供其临床疗效的科学证据。 CXSC活性成分从中药系统药理学数据库中鉴定,口腔生物利用度参数≥30%和药物象征≥0.18,以及草药成分的目标(命中)数据库。使用ChemMapper基于3D结构相似性和使用命中数据库来识别这些活性成分的靶标。从微阵列数据集GSE95849和五个广泛使用的数据库中获得了与DPN相关基因(TTD,Drugbank,Kegg,Disgenet和OMIM)。接下来,我们通过绘制活性成分靶标和DPN相关基因并通过使用针脚5.0鉴定与这些候选靶相互作用的蛋白质来获得对DPN的治疗效果的候选靶。我们使用Cytoscape 3.61构建了“活性成分候选目标 - 蛋白”网络,并确定了网络中的关键有效成分和关键目标。我们在CXSC中鉴定了172个活性成分,898个靶标,110个与患有110例相关基因的靶标和38个候选靶标,其具有针对DPN的治疗作用。鉴定了三个关键的活性成分,即槲皮素,kaempferol和Baicalin,和25个关键目标。接下来,我们将所有关键目标输入到ClueGo插件中,用于Kegg富集和分子功能分析。糖尿病并发症中的年龄愤怒信号通路分别被确定为涉及的主要KEGG途径和分子功能。我们确定了槲皮素,Kaempferol和Baicaline作为CXSC的关键活性成分和年龄 - 愤怒信号通路,并将激酶活性作为CXSC对DPN的主要药理学机制,证明CXSC对DPN的临床疗效。

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