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March 14, 2026Applied Biological Chemistry0 citationsOpen Access

Artesunate suppresses nasopharyngeal carcinoma progression by directly targeting MMP2

XWXiaoyan WangWHWenhao HuangSHShibin Huang

Key Points

  • To define the mechanisms by which artesunate inhibits nasopharyngeal carcinoma (NPC) progression with a focus on MMP2.
  • In vitro assessment of artesunate effects on NPC cells including proliferation, apoptosis, migration, invasion, and angiogenesis.
  • Network pharmacology analysis using NPC-related differentially expressed genes and predicted targets of artesunate.
  • Molecular docking to confirm binding between artesunate and MMP2.
  • Validation through qRT-PCR, Western blot, and gelatin zymography, alongside in vivo experiments using a xenograft model.
  • Artesunate significantly inhibited NPC cell proliferation, migration, invasion, and angiogenesis, while promoting apoptosis.
  • MMP2 identified as a core target through network pharmacology and confirmed by molecular docking.
  • Knockdown of MMP2 reduced malignant characteristics in NPC cells, while overexpression reverted ART effects.
  • In vivo treatments with ART reduced tumor growth and lowered levels of MMP2 and Ki67.

Abstract

Abstract Background Nasopharyngeal carcinoma (NPC) is characterized by its aggressive behavior and a pronounced tendency for metastasis. Artesunate (ART), an antimalarial drug, has demonstrated anticancer properties; yet, the underlying mechanisms of its action in NPC are poorly defined. Methods The anti-tumor effects of ART on NPC cells (proliferation, apoptosis, migration, invasion, and angiogenesis) were assessed in vitro. An integrated approach combining network pharmacology (using NPC-related DEGs from dataset GSE118719 and predicted ART targets) and molecular docking identified potential targets. Key findings were validated through qRT-PCR, WB, gelatin zymography, loss/gain-of-function assays, and an in vivo xenograft model. Results ART significantly inhibited NPC cell proliferation, migration, invasion, and angiogenesis, while inducing apoptosis. Network pharmacology identified MMP2 as a core target, and molecular docking confirmed high-affinity binding between ART and MMP2. MMP2 was upregulated in NPC tissues and cells. Knockdown of MMP2 suppressed malignant phenotypes, while its overexpression reversed ART-induced inhibition. In vivo, ART treatment reduced tumor growth and downregulated the expression of MMP2 and Ki67. Conclusion ART exerts potent anti-NPC effects by directly targeting and inhibiting MMP2, highlighting its potential as a therapeutic agent for NPC.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69b4fb9db39f7826a300bdf4https://doi.org/10.1186/s13765-026-01087-0
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