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March 14, 2026Applied Biological Chemistry0 citationsOpen Access

Artesunate suppresses nasopharyngeal carcinoma progression by directly targeting MMP2

XWXiaoyan WangJiangxi Pingxiang People's HospitalWHWenhao HuangMinistry of Natural ResourcesSHShibin HuangChongqing Three Gorges Central Hospital

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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