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Establishing Dual Resistance to EGFR-TKI and MET-TKI in Lung Adenocarcinoma Cells In Vitro with a 2-step Dose-escalation Procedure
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Combined Therapeutic Strategies Based on the Inhibition of Non-Oncogene Addiction to Improve Tumor Response in EGFR-
Luisa Amato1, Daniela Omodei2, Caterina De Rosa1
1Department of Precision Medicine, University of Campania Luigi Vanvitelli, 80131 Naples, Italy.
Background:
Oncogene-driven NSCLC is usually treated with targeted therapies using tyrosine kinase inhibitors (TKIs) to inhibit oncogene downstream signaling pathways, affecting tumor survival and proliferation. EGFR- and KRAS-mutant NSCLCs are the most represented subtypes, and they are treated in clinical practice with oncogene-targeting drugs in the first and second line, respectively. Unfortunately, the development of oncogene-independent resistant clones limits TKI efficacy. Here, we used non-oncogene addiction (NOA) as an innovative therapeutic strategy to target other essential proteins that support changes in tumor phenotype. Specifically, we tested, for the first time, a combination of inhibitors, namely ATR, involved in DNA damage response, and pyruvate dehydrogenase kinases (PDKs), involved in energy metabolism.
Methods:
Sensitive PC9 and the corresponding EGFR-TKI-resistant PC9/OR, EGFR-mutant H1975, and KRAS-mutant A549 NSCLC cells, were treated with TKIs (osimertinib and selumetinib, respectively). In parallel, cells were exposed to two combination regimens: one using the TKI with an ATR inhibitor and the other one combining the two selected NOA inhibitors (ATR inhibitor, M4344; and PDK inhibitor, DCA).
Results:
The effect of these two combined approaches, compared to TKI alone, produced similar results in terms of cell proliferation, cell death, and migration. Thus, depending on tumor biology, selecting between the proposed therapeutic strategies will be different, to maximize tumor response.
Conclusions:
The major translational relevance of this study is to exploit new targets for the development of innovative and improved therapeutic strategies with NOA drugs, over combinations including target genes within the oncogene pathway, to overcome resistance to TKI therapies in patients with NSCLC who are oncogene-addicted.
Insights
This study explores novel non-oncogene addiction (NOA) drug combinations to overcome tyrosine kinase inhibitor (TKI) resistance in non-small cell lung cancer (NSCLC). Combining ATR and PDK inhibitors shows promise for treating resistant NSCLC tumors.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Non-small cell lung cancer (NSCLC) treatment relies on tyrosine kinase inhibitors (TKIs) targeting oncogene-driven pathways.
- EGFR- and KRAS-mutant NSCLCs are common, but resistance to TKIs limits long-term efficacy.
- Non-oncogene addiction (NOA) offers a strategy to target alternative pathways essential for tumor survival.
Purpose of the Study:
- To investigate the efficacy of novel NOA drug combinations in overcoming TKI resistance in NSCLC.
- To evaluate the combination of ATR inhibitors (DNA damage response) and pyruvate dehydrogenase kinase (PDK) inhibitors (energy metabolism) as a therapeutic strategy.
Main Methods:
- Utilized sensitive and TKI-resistant NSCLC cell lines (PC9, PC9/OR, H1975, A549).
- Treated cells with TKIs (osimertinib, selumetinib) alone and in combination with ATR inhibitor (M4344) or a combination of ATR and PDK inhibitors (DCA).
Main Results:
- Both combination strategies (TKI + ATR inhibitor, and ATR + PDK inhibitors) demonstrated comparable effects to TKIs alone.
- Observed similar outcomes in cell proliferation, cell death, and migration across tested regimens.
- Tumor response may vary based on specific tumor biology, guiding therapeutic selection.
Conclusions:
- NOA drug combinations represent a promising avenue for developing innovative therapies against TKI-resistant NSCLC.
- Targeting NOA pathways offers a strategy to overcome resistance mechanisms inherent in oncogene-addicted NSCLCs.
- This approach holds translational relevance for improving treatment outcomes in NSCLC patients.
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