Evidence map›Paper›PMID 41510069›Full record

ArticleTranslational cancer research2025

Warfarin and bevacizumab suppress tumor progression in pancreatic ductal adenocarcinoma by targeting EGFR-PI3K-Akt signaling: inhibition of proliferation/migration and apoptosis induction.

Jingjing Chen, Jianjie Ju, Jingting Wang, Limei Yang

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Article in Translational cancer research, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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4 · The record

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5 · Who and what money

Authors and funding

4 authors.

Jingjing Chen *School of Pharmacy, Fujian Medical University, Fuzhou, China.
Jianjie Ju *School of Pharmacy, Fujian Medical University, Fuzhou, China.
Jingting WangDepartment of Pharmacy, Provincial Clinical College of Fujian Medical University/Fujian Provincial Hospital/Fuzhou University Affiliated Provincial Hospital, Fuzhou, China.
Limei YangDepartment of Pharmacy, Provincial Clinical College of Fujian Medical University/Fujian Provincial Hospital/Fuzhou University Affiliated Provincial Hospital, Fuzhou, China.ORCID https://orcid.org/0000-0002-6486-9077

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

Background: Pancreatic ductal adenocarcinoma (PDAC) exhibits aggressive progression, dense stromal remodeling, and resistance to chemotherapy, resulting in extremely poor survival. Although bevacizumab-mediated vascular endothelial growth factor (VEGF) inhibition can suppress angiogenesis, clinical efficacy is limited by compensatory activation of alternative signaling pathways. Meanwhile, PDAC-associated hypercoagulability supports tumor progression, and warfarin has been reported to exert anti-tumor effects partly through inhibition of the growth arrest-specific protein 6 (Gas6)/Axl-phosphoinositide 3-kinase (PI3K)-protein kinase B (Akt) axis. Given that epidermal growth factor receptor (EGFR) also converges on the PI3K-Akt pathway, combining warfarin with bevacizumab may enhance therapeutic efficacy by co-targeting angiogenic and oncogenic signaling. This study aimed to evaluate the synergistic effects of warfarin and bevacizumab in PDAC and to elucidate the underlying molecular mechanisms. Methods: An integrated approach combining network pharmacology, molecular docking, and in vitro assays was used. Bioinformatics tools identified key targets and pathways, with docking simulations assessing warfarin-target binding. Functional assays, including the Cell Counting Kit-8 (CCK-8), wound healing, flow cytometry, quantitative real-time polymerase chain reaction (qRT-PCR), and Western blot, evaluated cell proliferation, migration, apoptosis, and gene/protein expression related to EGFR-PI3K-Akt pathway. Results: Integrated bioinformatics identified 70 overlapping targets between warfarin and pancreatic cancer, with EGFR, PI3K isoforms, and AKT1 as core hubs in the protein-protein interaction (PPI) network. Molecular docking demonstrated strong warfarin binding to EGFR, PI3K catalytic isoforms, and AKT1 (ΔG <-7.0 kcal/mol), while exhibiting moderate interaction with the PI3K regulatory subunit phosphoinositide-3-kinase regulatory subunit 1 (PIK3R1, -6.1 kcal/mol). In vitro validation showed that 0.8 mmol/L warfarin combined with 500 mg/L bevacizumab exhibited optimal anti-proliferative synergy (24-h Bliss score: 0.335; 48-h inhibition: 50.5%), while reducing wound closure versus blank (P<0.001). The combination elevated apoptosis to 10.11% (P<0.001 Conclusions: The warfarin-bevacizumab combination synergistically impaired PDAC progression via multi-tiered EGFR-PI3K-Akt suppression and mitochondrial apoptosis activation, providing a rationale for clinical translation against oncogenic pathway plasticity.

Indexed as

BevacizumabEGFR-PI3K-Akt signaling pathwaypancreatic ductal adenocarcinoma (PDAC)warfarin

Identifiers

PMID41510069
PMCPMC12776193

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