ArticleMolecular and cellular biochemistry2024
Relevance and mechanism of STAT3/miR-221-3p/Fascin-1 axis in EGFR TKI resistance of triple-negative breast cancer.
Article in Molecular and cellular biochemistry, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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10 citing papers in PubMed, 7 citations in OpenAlex.
- Fascin-1 expression in non-small cell lung cancer and its diagnostic implications.Discover oncology · 2026Article
- Tumor-infiltrating lymphocytes in triple-negative breast cancer: molecular mechanisms, spatial regulation, and therapeutic implications.Breast cancer research : BCR · 2026Review
- Effects of luteolin on proliferation and apoptosis of breast cancer cells by regulating EGFR/STAT3/AKt pathway.Open life sciences · 2026Article
- Upregulation of Caveolin-1 in breast cancer and its potential value in distinguishing TNBC from non-TNBC: an immunohistochemical study.Frontiers in oncology · 2026Article
- Isoform-Specific Transcriptomic Effects ofGenes · 2025Article
- MiR-518c-5p/miR-4524a-3p can mediate immune escape and chemotherapy resistance in triple-negative breast cancer and predict its outcome.Hereditas · 2025Article
- Cardiovascular protective effects of natural flavonoids on intestinal barrier injury.Molecular and cellular biochemistry · 2025Review
- Article
- miR-221 is a prognostic marker and promotes the proliferation and migration of esophageal squamous cell carcinoma by inhibiting autophagy.Discover oncology · 2025Article
- STAT3: Key targets of growth-promoting receptor positive breast cancer.Cancer cell international · 2024Review
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Authors and funding
9 authors at 2 institutions in 1 country.
Funding
Abstract
The epidermal growth factor receptor 1 (EGFR) plays a crucial role in the progression of various malignant tumors and is considered a potential target for treating triple-negative breast cancer (TNBC). However, the effectiveness of representative tyrosine kinase inhibitors (TKIs) used in EGFR-targeted therapy is limited in TNBC patients. In our study, we observed that the TNBC cell lines MDA-MB-231 and MDA-MB-468 exhibited resistance to Gefitinib. Treatment with Gefitinib caused an upregulation of Fascin-1 (FSCN1) protein expression and a downregulation of miR-221-3p in these cell lines. However, sensitivity to Gefitinib was significantly improved in both cell lines with either inhibition of FSCN1 expression or overexpression of miR-221-3p. Our luciferase reporter assay confirmed that FSCN1 is a target of miR-221-3p. Moreover, Gefitinib treatment resulted in an upregulation of phosphorylated signal transducer and activator of transcription 3 (p-STAT3) in MDA-MB-231 cells. Using Stattic, a small-molecule inhibitor of STAT3, we observed a significant enhancement in the inhibitory effect of Gefitinib on the growth, migration, and invasion of MDA-MB-231 cells. Additionally, Stattic treatment upregulated miR-221-3p expression and downregulated FSCN1 mRNA and protein expression. A strong positive correlation was noted between the expression of STAT3 and FSCN1 in breast cancer tissues. Furthermore, patients with high expression levels of both STAT3 and FSCN1 had a worse prognosis. Our findings suggest that elevated FSCN1 expression is linked to primary resistance to EGFR TKIs in TNBC. Moreover, we propose that STAT3 regulates the expression of miR-221-3p/FSCN1 and therefore modulates resistance to EGFR TKI therapy in TNBC. Combining EGFR TKI therapy with inhibition of FSCN1 or STAT3 may offer a promising new therapeutic option for TNBC.
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