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Profiling Sensitivity to Targeted Therapies in EGFR-Mutant NSCLC Patient-Derived Organoids
Published on: November 22, 2021
Suppressing c-FOS expression by G-quadruplex ligands inhibits osimertinib-resistant non-small cell lung cancer
Kai Lu1, Hsin-Chiao Wang1, Yi-Chen Tu1
1Institute of Biochemistry and Molecular Biology, National Taiwan University College of Medicine, Taipei, Taiwan.
Background:
Osimertinib is the first-line therapy for patients with non-small cell lung cancer harboring epidermal growth factor receptor-activating alterations. Although osimertinib has been shown to elicit profound patient responses, cancer cells frequently develop additional alterations that sustain their proliferation capacity. This acquired resistance represents a substantial hurdle in precision medicine for patients with lung cancer.
Methods:
The biological and cellular properties of the G-quadruplex ligand BMVC-8C3O and its anticancer activities were evaluated in non-small cell lung carcinomas. In addition, combined treatment with BMVC-8C3O and osimertinib was evaluated for its effects on the growth of osimertinib-resistant tumors in vivo.
Results:
We demonstrate that BMVC-8C3O effectively suppresses c-FOS expression by stabilizing G-rich sequences located at the c-FOS promoter. The suppression c-FOS expression by BMVC-8C3O increases the sensitivity of acquired resistant cancer cells to osimertinib. Combining BMVC-8C3O and osimertinib has a synergistic effect in inhibiting the growth of acquired resistant cancers both in vitro and in mouse models. The combined inhibitory effect is not limited to BMVC-8C3O, either: several G-quadruplex ligands show varying levels of inhibition activity. We also show that simultaneous inhibition of both the c-FOS and PI3K/AKT pathways by BMVC-8C3O and osimertinib synergistically inhibits the growth of acquired resistant cancer cells.
Conclusion:
These findings unveil a synthetic lethal strategy to prevent and inhibit epidermal growth factor receptor-altered lung cancers with acquired osimertinib resistance. G-quadruplex ligands have the potential to be integrated into current osimertinib-based treatment regimens.
Insights
A novel G-quadruplex ligand, BMVC-8C3O, resensitizes osimertinib-resistant non-small cell lung cancer to treatment by suppressing c-FOS. Combined therapy shows synergistic tumor growth inhibition, offering a new strategy for overcoming resistance.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Osimertinib is a first-line therapy for non-small cell lung cancer (NSCLC) with EGFR-activating alterations.
- Acquired resistance to osimertinib, driven by new genetic alterations, limits its long-term efficacy in precision medicine.
- Developing strategies to overcome this resistance is crucial for improving patient outcomes.
Purpose of the Study:
- To evaluate the anticancer properties of the G-quadruplex ligand BMVC-8C3O in NSCLC.
- To investigate the efficacy of combining BMVC-8C3O with osimertinib in preclinical models of acquired osimertinib resistance.
- To elucidate the molecular mechanisms underlying the combined treatment's effects.
Main Methods:
- Assessed the biological and cellular effects of BMVC-8C3O in NSCLC models.
- Evaluated the in vitro and in vivo efficacy of combined BMVC-8C3O and osimertinib treatment on resistant tumors.
- Investigated the impact of BMVC-8C3O on c-FOS expression and its interaction with osimertinib.
Main Results:
- BMVC-8C3O suppresses c-FOS expression by stabilizing G-quadruplex structures in the c-FOS promoter region.
- This suppression enhances the sensitivity of osimertinib-resistant NSCLC cells to osimertinib.
- Combined treatment with BMVC-8C3O and osimertinib demonstrated synergistic inhibition of resistant cancer growth in vitro and in vivo, also affecting the PI3K/AKT pathway.
Conclusions:
- BMVC-8C3O acts as a synthetic lethal agent, overcoming acquired osimertinib resistance in EGFR-mutant NSCLC.
- G-quadruplex ligands represent a promising therapeutic approach to be integrated into current osimertinib-based regimens.
- This strategy offers a potential solution for patients with lung cancer who develop resistance to targeted therapies.
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