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运用网络药理学分析和实验验证探索黄芩汤治疗乳腺癌的潜力。

Exploring the potential of Huangqin Tang in breast cancer treatment using network pharmacological analysis and experimental verification.

机构信息

School of Pharmacy, Chengdu University of Traditional Chinese Medicine, No.1166 Liutai Avenue, Chengdu, 611137, China.

Department of Clinical Research, Sichuan Clinical Research Center for Cancer, Sichuan Cancer Hospital & Institute, Sichuan Cancer Center, Affiliated Cancer Hospital of University of Electronic Science and Technology of China, Chengdu, 610041, China.

出版信息

BMC Complement Med Ther. 2024 Jun 7;24(1):221. doi: 10.1186/s12906-024-04523-0.

Abstract

AIMS OF THIS STUDY

This study aims to investigate the potential of Huangqin Tang (HQT), a traditional Chinese medicine formulation, in the treatment of breast cancer (BC) through a comprehensive approach integrating network pharmacology, molecular docking, and experimental validation.

METHODS

Chemical composition and target information of HQT were collected using the Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform (TCMSP). Disease-related target genes were obtained from the GeneCards database. Network pharmacological analysis, including construction of compound-disease-target networks and protein-protein interaction networks, was performed. Molecular docking simulations were conducted to evaluate the binding affinity between HQT components and key targets. Experimental validation was carried out using cell viability assays, clone formation assays, flow cytometry, Western blotting, and pathway analysis.

RESULTS

A total of 210 candidate targets were identified. Network analysis revealed STAT3, AKT1, MAPK3 etc. as central targets. Enrichment analysis suggested HQT may exert anti-tumor effects through regulating lipid metabolism and inflammation related pathways. Molecular docking showed that the key compounds baicalein, wogonin, kaempferol and quercetin all bound effectively to MAPK1. The binding of baicalein to IL6 and naringenin to TNF-α was also relatively stable. The experimental results demonstrated that HQT effectively inhibited the proliferation of breast cancer cells, with IC50 values of 2.334 mg/mL and 1.749 mg/mL in MCF-7 cells at 24 h and 48 h, and IC50 values of 1.286 mg/mL and 1.496 mg/mL in MDA-MB-231 cells at 24 h and 48 h, respectively. Furthermore, HQT induced cell cycle arrest at the G2/M phase in breast cancer cells and downregulated the expression of related proteins including CDK1, Cyclin B1, CDK2, and Cyclin E. Additionally, HQT promoted apoptosis in breast cancer cells by upregulating the expression of Bak and CC-3, while downregulating the expression of Bcl-2. Notably, HQT also exhibited regulatory effects on the HIF-1 signaling pathway.

CONCLUSIONS

This study provides insights into the potential multi-component and multi-target mechanisms of HQT against BC, suggesting it may achieve therapeutic effects through regulating inflammatory response and cancer-related pathways via the identified active compounds and targets. The findings highlight the importance of integrating traditional medicine with modern approaches for the development of novel cancer therapies.

摘要

本研究旨在通过整合网络药理学、分子对接和实验验证的综合方法,探讨黄芩汤(HQT)这一传统中药方剂在乳腺癌(BC)治疗中的潜力。

方法

采用中药系统药理学数据库和分析平台(TCMSP)收集 HQ T 的化学成分和靶标信息。从 GeneCards 数据库获取疾病相关靶基因。进行网络药理学分析,包括构建化合物-疾病-靶标网络和蛋白质-蛋白质相互作用网络。进行分子对接模拟,以评估 HQ T 成分与关键靶标的结合亲和力。采用细胞活力测定、克隆形成测定、流式细胞术、Western blot 分析和通路分析进行实验验证。

结果

共鉴定出 210 个候选靶标。网络分析显示 STAT3、AKT1、MAPK3 等为核心靶标。富集分析提示 HQ T 可能通过调节脂代谢和炎症相关通路发挥抗肿瘤作用。分子对接显示,关键化合物黄芩素、汉黄芩素、山奈酚和槲皮素均能有效结合 MAPK1。黄芩素与 IL6 和柚皮素与 TNF-α 的结合也相对稳定。实验结果表明 HQ T 能有效抑制乳腺癌细胞增殖,在 MCF-7 细胞中 24 h 和 48 h 的 IC50 值分别为 2.334 mg/mL 和 1.749 mg/mL,在 MDA-MB-231 细胞中 24 h 和 48 h 的 IC50 值分别为 1.286 mg/mL 和 1.496 mg/mL。此外,HQ T 诱导乳腺癌细胞周期停滞于 G2/M 期,并下调 CDK1、Cyclin B1、CDK2 和 Cyclin E 等相关蛋白的表达。此外,HQ T 通过上调 Bak 和 CC-3 的表达,下调 Bcl-2 的表达,促进乳腺癌细胞凋亡。值得注意的是,HQ T 还对 HIF-1 信号通路表现出调节作用。

结论

本研究为 HQ T 治疗 BC 的多成分、多靶点机制提供了新见解,提示其可能通过鉴定的活性化合物和靶标,调节炎症反应和癌症相关通路,从而达到治疗效果。研究结果强调了将传统医学与现代方法相结合,开发新型癌症治疗方法的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c940/11161988/37d4bb49382d/12906_2024_4523_Fig1_HTML.jpg

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