Curcumin suppresses metastasis, invasion, and proliferation in osteosarcoma cells by regulating the EGFR/Src signaling axis.

Huiying Liu, Zhiqiang Li, Binwu Xu, Zhipeng Li, Xili Yang, Jun Luo
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Abstract

We explored the biological mechanisms by which curcumin (Cur) confronts osteosarcoma (OS) tumorigenesis and potential drug gene targets based on network pharmacology and in vitro cell experiments. Cur has been recognized for its significant role in combating various types of tumors. However, the intrinsic molecular mechanisms through which it affects OS remain uncharted. In this study, we performed network pharmacology methods including protein-protein interaction (PPI) and core target screening, Functional Enrichment Analysis and Network Construction, Molecular Docking, which obtained the potential target of Cur. Meanwhile, cell experiments (wound healing assay, Transwell assay, Western blots, immunofluorescence, et al.) in vitro were performed to verify the targets, and reveal the biological mechanisms. A total of 18 hub genes were identified through our network pharmacological analysis. In vitro studies show that Cur inhibits the proliferation, migration, invasion capabilities of MG63 and U2OS cells. Western blot reveals a down-regulation of p-PI3K, PI3K, p-Akt, Akt, EGFR, Src, p-Src (Tyr416) and STAT3 expression when treated with Cur. Additionally, Cur upregulated epithelial proteins (E-cadherin and Occludin) while decreasing the expression of the mesenchymal protein (N-cadherin). In addition, Cur treatment decreases the EGFR/Src signaling pathway in the presence of active Src overexpression. Cur inhibits the proliferation, migration, invasion, epithelial-mesenchymal transition (EMT) by down-regulating EGFR/Src signaling axis, also resulting in coordinated weakening of its downstream regulatory genes, including Akt, STAT3, Bcl2, ERK1/2, among others signal axis (PI3K/Akt signaling pathway).

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姜黄素通过调节EGFR/Src信号轴抑制骨肉瘤细胞的转移、侵袭和增殖。
基于网络药理学和体外细胞实验,探讨姜黄素(curcumin, Cur)对抗骨肉瘤(osteosarcoma, OS)发生的生物学机制和潜在药物基因靶点。Cur因其在对抗各种类型肿瘤中的重要作用而得到认可。然而,其影响OS的内在分子机制仍是未知的。本研究通过蛋白-蛋白相互作用(protein-protein interaction, PPI)及核心靶点筛选、功能富集分析及网络构建、分子对接等网络药理学方法获得了Cur的潜在靶点,并在体外进行细胞实验(伤口愈合实验、Transwell实验、Western blots、免疫荧光等)对靶点进行了验证,揭示了其生物学机制。通过网络药理分析共鉴定出18个枢纽基因。体外研究表明,Cur可抑制MG63和U2OS细胞的增殖、迁移和侵袭能力。Western blot结果显示,Cur可下调p-PI3K、PI3K、p-Akt、Akt、EGFR、Src、p-Src (Tyr416)和STAT3的表达,同时上调上皮蛋白(E-cadherin和Occludin),同时降低间质蛋白(N-cadherin)的表达。此外,在Src过表达活跃的情况下,Cur治疗会降低EGFR/Src信号通路。Cur通过下调EGFR/Src信号轴抑制增殖、迁移、侵袭、上皮间质转化(epithelial-mesenchymal transition, EMT),也导致其下游调控基因包括Akt、STAT3、Bcl2、ERK1/2等信号轴(PI3K/Akt信号通路)协同减弱。
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来源期刊
International Journal of Immunopathology and Pharmacology
International Journal of Immunopathology and Pharmacology Immunology and Microbiology-Immunology
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期刊介绍: International Journal of Immunopathology and Pharmacology is an Open Access peer-reviewed journal publishing original papers describing research in the fields of immunology, pathology and pharmacology. The intention is that the journal should reflect both the experimental and clinical aspects of immunology as well as advances in the understanding of the pathology and pharmacology of the immune system.
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