ArticleCellular oncology (Dordrecht, Netherlands)2025
Lenvatinib-activated NDUFA4L2/IL33/PADI4 pathway induces neutrophil extracellular traps that inhibit cuproptosis in hepatocellular carcinoma.
Article in Cellular oncology (Dordrecht, Netherlands), 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 22 papers.
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Who cites it
22 citing papers in PubMed.
- Immune response to DNA and RNA: structural insights, molecular mechanisms, and therapeutic targeting.Molecular biomedicine · 2026Review
- The emerging role of neutrophil extracellular traps in liver diseases: a narrative review.Medical molecular morphology · 2026Review
- Cell death crosstalk in NET-Driven inflammation: mechanisms, disease contexts, and therapeutic perspectives.Biomarker research · 2026Review
- Protein modification systems as cancer biomarkers and therapeutic targets.Precision clinical medicine · 2026Review
- HSP90AA1 inhibits the Jun/Fos pathway to rescue hepatocytes from cuproptosis during ischemia-reperfusion injury.Clinical and experimental medicine · 2026Article
- Neutrophil extracellular traps in the tumor microenvironment, metastasis, therapy, and beyond: advances, challenges, and perspectives.Journal of hematology & oncology · 2026Review
- Histidine alleviates Hashimoto's thyroiditis via the neutrophil extracellular traps-NF-κB signaling pathway.Scientific reports · 2026Article
- Tudor domain-containing protein 9-targeting siRNA nanoparticles alleviate Pseudomonas aeruginosa lung injury in preclinical models by promoting neutrophil cuproptosis.Nature communications · 2026Article
- The Molecular Network of Neutrophil Extracellular Traps in Hepatocellular Carcinoma: Biogenesis, Function, and Therapeutic Implications.Molecules (Basel, Switzerland) · 2026Review
- Multi-tyrosine kinase inhibitors: exploring immunomodulatory effects on various immune cell types in cancer.Cancer cell international · 2026Review
- HBV reprograms the tumor microenvironment in hepatocellular carcinoma: mechanisms and therapeutic implications.Clinical and experimental medicine · 2026Review
- Cuproptosis: Biomarkers, Mechanisms and Treatments in Diseases.Molecules (Basel, Switzerland) · 2026Review
- Post-Translational Modification Networks in Ferroptosis: Orchestrating Defense, Drug Resistance, and Therapeutic Opportunities in Hepatocellular Carcinoma.Journal of hepatocellular carcinoma · 2026Review
- miR-320d Is Associated with Reduced Nasopharyngeal Carcinoma Progression, Potentially through the NF-κB/IL-8 Axis-Mediated Inhibition of Neutrophil Extracellular Trap Formation.Oncology research · 2026Article
- Bibliometric and visualization analysis of arginine deiminase research from 2006 to 2025: trends, collaboration networks and emerging frontiers.Frontiers in immunology · 2026Article
- Neutrophils in the hepatocellular carcinoma microenvironment: orchestrators of progression and immunity.Frontiers in immunology · 2026Review
- A reliable prognostic model for hepatocellular carcinoma using neutrophil extracellular traps and immune related genes.Scientific reports · 2025Article
- Identification and validation of a lenvatinib resistance-related prognostic signature in HCC, in which PFKFB4 contributes to tumor progression and lenvatinib resistance.BMC gastroenterology · 2025Article
- Proteogenomic verifies targets underlying erythromycin alleviate neutrophil extracellular traps-induced inflammation.Respiratory research · 2025Article
- Identification of novel neutrophil-extracellular-traps-related genes as biomarkers for breast cancer prognosis and immunotherapy.Translational cancer research · 2025Article
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5 authors.
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Abstract
backgroundLenvatinib is a potent first-line therapy for patients with hepatocellular carcinoma (HCC), but it also increased the number of neutrophils in HCC tumor microenvironment.
methodsCitH3, MPO-DNA, elastase and MPO activity were measured for assessing neutrophil extracellular traps (NETs) in vivo and in vitro. Cell cuproptosis was assessed by measurement of copper content, FDX1, and pyruvate. The functions of lenvatinib, DNase I, interleukin 33 (IL33) neutralizing antibody and GPX4 in tumor growth were explored in mice.
resultsLenvatinib induced NETs in the HCC tumor microenvironment via HCC cells, but not through the direct stimulation of neutrophils. In addition, NET clearance by DNase I improves the efficacy of lenvatinib therapy in HCC mouse models. Mechanistically, lenvatinib promoted the expression and secretion of IL33 by HCC cells that triggered NET formation. Moreover, IL33 knockdown in Hepa1-6 cells improved lenvatinib efficacy in Hepa1-6-bearing HCC model mice and reduced NET formation in the tumor microenvironment. Subsequently, lenvatinib increased IL33 production by increasing the NDUFA4L2 expression in HCC cells. Furthermore, we found that IL33 triggered NET formation in neutrophils by increasing the protein expression of PADI4 via the Akt/mTOR signaling pathway. Rapamycin inhibition of mTOR reduced PADI4 expression and NET formation. Consistently, PADI4 inhibition by the selective PAD4 inhibitor GSK484 hydrochloride (GSK484) improved lenvatinib response to HCC therapy. Importantly, NETs contribute to lenvatinib resistance by inhibiting cuproptosis, but not apoptosis, pyroptosis, or ferroptosis in HCC cells. Treatment with GSK484 reversed the inhibitory effects of NETs on cuproptosis and sensitized the HCC cells to lenvatinib.
conclusionsOur study revealed that lenvatinib-induced NETs inhibited the cuproptosis of HCC cells, suggesting that targeting the IL33/PADI4/NET axis represents a promising therapeutic strategy for ameliorating lenvatinib resistance in HCC.
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