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Profiling Sensitivity to Targeted Therapies in EGFR-Mutant NSCLC Patient-Derived Organoids
Published on: November 22, 2021
Acquired Resistance to EGFR TKIs Mediated by TGFβ1/Integrin β3 Signaling in EGFR-Mutant Lung Cancer
Caiyun Wang1, Tao Wang1, Dacheng Lv1
1Department of Pharmacology and Chemical Biology, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Abstract:
Investigation of novel molecular mechanisms is essential to develop strategies to overcome acquired resistance to EGFR tyrosine kinase inhibitors (TKI). Integrin has been demonstrated as a regulator of cancer progression. The aim of this study was to identify which specific integrins are involved and regulated in acquired resistance to EGFR TKIs in EGFR-mutant lung cancer. The expression levels of integrin subunits were examined in EGFR-mutant lung cancer cells and xenograft tumors with acquired resistance to EGFR TKIs. Manipulation of integrin β3 was performed to explore whether integrin β3 overexpression was associated with TKI resistance, anoikis resistance, EMT, and cancer stemness in resistant lung cancer. To explore the mechanism, TGFβ1 level was examined, and TGFβ1 inhibitor was then used. Integrin β3 was dramatically and consistently overexpressed in acquired gefitinib- or osimertinib-resistant lung cancer in vitro and in vivo Integrin β3 was also involved in the progression of lung adenocarcinoma. Antagonizing integrin β3 increased the TKI sensitivity and delayed the occurrence of TKI resistance in vitro and in vivo, as well as suppressed proliferation, anoikis resistance, and EMT phenotype in lung cancer cells. Overexpression of integrin β3 was also associated with the enhanced cancer stemness that was acquired in the development of resistance and suppressed by antagonizing integrin β3. Mechanistically, integrin β3 was induced by increased TGFβ1 levels in acquired TKI-resistant lung cancer. Our study identified the TGFβ1/integrin β3 axis as a promising target for combination therapy to delay or overcome acquired resistance to EGFR TKIs in EGFR-mutant lung cancer.
Insights
Overcoming acquired resistance to EGFR tyrosine kinase inhibitors (TKI) in lung cancer is crucial. Targeting the TGFβ1/integrin β3 axis shows promise for combination therapy, enhancing TKI sensitivity and delaying resistance.
Area of Science:
- Oncology
- Molecular Biology
- Drug Resistance
Background:
- Acquired resistance to EGFR tyrosine kinase inhibitors (TKI) limits treatment efficacy in EGFR-mutant lung cancer.
- Integrins play a role in cancer progression, but their specific involvement in TKI resistance is not fully understood.
Purpose of the Study:
- To identify specific integrins involved in acquired resistance to EGFR TKIs in EGFR-mutant lung cancer.
- To investigate the role of integrin β3 in TKI resistance, anoikis resistance, epithelial-mesenchymal transition (EMT), and cancer stemness.
- To elucidate the underlying molecular mechanisms, including the TGFβ1 pathway.
Main Methods:
- Examined integrin subunit expression in resistant lung cancer cells and xenografts.
- Manipulated integrin β3 expression and activity.
- Assessed effects on TKI sensitivity, proliferation, anoikis resistance, EMT, and cancer stemness.
- Investigated TGFβ1 levels and utilized TGFβ1 inhibitors.
Main Results:
- Integrin β3 was significantly overexpressed in acquired TKI-resistant lung cancer.
- Antagonizing integrin β3 restored TKI sensitivity, delayed resistance, and suppressed proliferation, anoikis resistance, and EMT.
- Integrin β3 overexpression correlated with enhanced cancer stemness, which was reversed by integrin β3 antagonism.
- Increased TGFβ1 levels induced integrin β3 in resistant cells.
Conclusions:
- The TGFβ1/integrin β3 axis is a key mechanism driving acquired resistance to EGFR TKIs in lung cancer.
- Targeting integrin β3, potentially in combination with TGFβ1 inhibition, offers a therapeutic strategy to overcome or delay TKI resistance.
- Integrin β3 antagonism can reverse resistance-associated phenotypes, including EMT and cancer stemness.
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