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Updated: Jun 22, 2025

Modeling Chemotherapy Resistant Leukemia In Vitro
Published on: February 9, 2016
ALK Inhibitor and Chemotherapy Combinations in Models of ALK-Translocated NSCLC
Milla E K Luukkainen1,2,3, Jussi P Koivunen4,2,3
1Department of Oncology and Radiotherapy, Oulu University Hospital, Oulu, Finland.
Background/Aim:
Randomized trials have shown the benefit of combining tyrosine kinase inhibitors (TKI) and chemotherapy in the treatment of epidermal growth factor receptor-mutant non-small-cell lung cancer (NSCLC). For anaplastic lymphoma kinase-rearranged (ALK+) NSCLC, prospective trial results of the combination are not available and have not even been thoroughly investigated in vitro. In this study, we investigated combinations of TKI and chemotherapy using in vitro models of ALK+ NSCLC.
Materials And Methods:
ALK+ cell line models H3122, H2228, and DFCI032 with differing primary resistance to ALK receptor TKIs were used. We investigated short-(viability assay) and long-term (colony-formation assay) cytotoxicity, apoptosis, and cell signaling in response to the combinations of agents. We selected the most commonly used agents, alectinib, cisplatin, and pemetrexed, to investigate the combination effects.
Results:
In the combination experiments with short-term exposure, synergism between TKI and pemetrexed was observed, while cisplatin had antagonistic effects. In the long-term experiments, the combination of cisplatin and TKI was synergistic in all lines, while no synergism was observed with pemetrexed. Among the chemotherapy and TKI sequences, cisplatin followed by TKI was more cytotoxic than the opposite in two out of the three models. In the TKI-sensitive H3122 cell line, the combination of chemotherapy and TKI combination increased apoptosis. Interestingly, pemetrexed treatment resulted in the activation of ALK, which was abolished with TKI.
Conclusion:
Combining TKI and chemotherapy in ALK+ models has some synergistic effects that overcome primary TKI resistance. However, the synergy varies depending on the chemotherapeutic agent, cytotoxic assay, and the cell line used. Prospective clinical trials are warranted to fully characterize the potential of combination chemotherapy with TKIs in ALK+ NSCLC.
Insights
Combining tyrosine kinase inhibitors (TKI) with chemotherapy shows synergistic effects in anaplastic lymphoma kinase-positive (ALK+) non-small cell lung cancer models. Results vary by drug and cell line, warranting further clinical trials for ALK+ NSCLC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Epidermal growth factor receptor-mutant non-small cell lung cancer (NSCLC) benefits from tyrosine kinase inhibitor (TKI) and chemotherapy combinations.
- Anaplastic lymphoma kinase-rearranged (ALK+) NSCLC lacks prospective data on TKI-chemotherapy combinations, with limited in vitro investigation.
Purpose of the Study:
- To investigate the in vitro efficacy of combining TKIs with chemotherapy in ALK+ NSCLC models.
- To evaluate short-term and long-term cytotoxicity, apoptosis, and cell signaling effects of these combinations.
Main Methods:
- Utilized ALK+ NSCLC cell lines (H3122, H2228, DFCI032) with varying TKI resistance.
- Assessed cytotoxicity (viability, colony formation), apoptosis, and signaling pathways.
- Tested combinations of alectinib (TKI) with cisplatin and pemetrexed (chemotherapy).
Main Results:
- Short-term: Pemetrexed showed synergism with TKI; cisplatin was antagonistic.
- Long-term: Cisplatin combined with TKI demonstrated synergism across all cell lines; pemetrexed did not.
- Cisplatin followed by TKI was more cytotoxic than the reverse sequence in two of three models.
- Combination therapy increased apoptosis in TKI-sensitive cells; pemetrexed activated ALK, which TKI abolished.
Conclusions:
- Combination of TKI and chemotherapy can overcome primary TKI resistance in ALK+ NSCLC models.
- Synergistic effects are dependent on the specific chemotherapeutic agent, assay used, and cell line.
- Further prospective clinical trials are necessary to confirm the therapeutic potential in ALK+ NSCLC.
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