[Effect and mechanism of salt-processed Phellodendri Chinensis Cortex in improving insulin resistance based on network pharmacology and experimental verification].

Q3 Pharmacology, Toxicology and Pharmaceutics
Jin-Jie Lei, Yang-Miao Xia, Shang-Ling Zhao, Rui Tan, Ling-Ying Yu, Zhi-Min Chen
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引用次数: 0

Abstract

This study explores the therapeutic differences and mechanisms of salt-processed Phellodendri Chinensis Cortex in improving insulin resistance(IR) based on network pharmacology, molecular docking, and cellular experiments. The components and intersection targets of Phellodendri Chinensis Cortex in improving IR were collected from databases, and a "drug-component-target-disease" network and protein-protein interaction(PPI) network were constructed to screen core components and targets. A total of 29 active components and 240 intersection targets were identified, of which 13 were core targets. Gene Ontology(GO) and Kyoto Encyclopedia of Genes and Genomes(KEGG) pathway enrichment analyses were used to identify key signaling pathways, and molecular docking was performed to validate the binding activity between core components and targets. An IR model in HepG2 cells was induced using insulin combined with high glucose, and the effects of Phellodendri Chinensis Cortex before and after salt-processing on cell glucose consumption were evaluated. The expression of proteins related to the mitogen-activated protein kinase(MAPK) and phosphatidylinositol 3-kinase(PI3K)-protein kinase B(AKT) signaling pathways was detected by Western blot. The cellular experimental results showed that, compared with the model group, glucose consumption in the drug-treated groups was significantly increased(P<0.01), the phosphorylation level of extracellular regulated protein kinase(ERK) was decreased(P<0.05), the phosphorylation levels of PI3K and AKT were increased, and the expression of glucose transporter 4(GLUT4) was also upregulated(P<0.05). Furthermore, the effect of salt-processed Phellodendri Chinensis Cortex was better than that of raw Phellodendri Chinensis Cortex. The study demonstrates that Phellodendri Chinensis Cortex, both before and after salt-processing, improves IR by regulating the expression of related proteins in the MAPK and PI3K-AKT signaling pathways, with enhanced effects after salt-processing.

[盐渍黄柏皮改善胰岛素抵抗的作用及机制:基于网络药理学及实验验证]。
本研究基于网络药理学、分子对接和细胞实验,探讨盐处理黄柏皮质改善胰岛素抵抗(insulin resistance, IR)的作用差异及机制。从数据库中收集黄柏皮改善IR的成分及交叉靶点,并建立“药物成分-靶点-疾病”模型。构建蛋白相互作用网络和蛋白相互作用网络,筛选核心组分和靶点。共鉴定出活性成分29个,交叉靶点240个,其中核心靶点13个。利用基因本体(GO)和京都基因与基因组百科全书(KEGG)途径富集分析鉴定关键信号通路,并进行分子对接验证核心组分与靶点的结合活性。采用胰岛素联合高糖诱导HepG2细胞IR模型,观察盐处理前后黄柏皮对细胞葡萄糖消耗的影响。Western blot检测丝裂原活化蛋白激酶(MAPK)和磷脂酰肌醇3-激酶(PI3K)-蛋白激酶B(AKT)信号通路相关蛋白的表达。细胞实验结果显示,与模型组相比,药物处理组葡萄糖消耗显著增加(P<0.01),细胞外调节蛋白激酶(ERK)磷酸化水平降低(P<0.05), PI3K和AKT磷酸化水平升高,葡萄糖转运蛋白4(GLUT4)表达上调(P<0.05)。此外,盐处理黄柏皮的效果优于生黄柏皮。本研究表明,盐处理前后黄柏皮质均通过调控MAPK和PI3K-AKT信号通路相关蛋白的表达来改善IR,且盐处理后作用增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
自引率
0.00%
发文量
581
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