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Crizotinib sensitizes the erlotinib resistant HCC827GR5 cell line by influencing lysosomal function
Nele Van Der Steen1,2,3, Kaylee Keller3, Henk Dekker3
1Center for Oncological Research, University of Antwerp, Antwerp, Belgium.
Abstract:
In non-small cell lung cancer, sensitizing mutations in epidermal growth factor receptor (EGFR) or cMET amplification serve as good biomarkers for targeted therapies against EGFR or cMET, respectively. Here we aimed to determine how this different genetic background would affect the interaction between the EGFR-inhibitor erlotinib and the cMET-inhibitor crizotinib. To unravel the mechanism of synergy we investigated the effect of the drugs on various parameters, including cell cycle arrest, migration, protein phosphorylation, kinase activity, the expression of drug efflux pumps, intracellular drug concentrations, and live-cell microscopy. We observed additive effects in EBC-1, H1975, and HCC827, and a strong synergism in the HCC827GR5 cell line. This cell line is a clone of the HCC827 cells that harbor an EGFR exon 19 deletion and has been made resistant to the EGFR-inhibitor gefitinib, resulting in cMET amplification. Remarkably, the intracellular concentration of crizotinib was significantly higher in HCC827GR5 compared to the parental HCC827 cell line. Furthermore, live-cell microscopy with a pH-sensitive probe showed a differential reaction of the pH in the cytoplasm and the lysosomes after drug treatment in the HCC827GR5 in comparison with the HCC827 cells. This change in pH could influence the process of lysosomal sequestration of drugs. These results led us to the conclusion that lysosomal sequestration is involved in the strong synergistic reaction of the HCC827GR5 cell line to crizotinib-erlotinib combination. This finding warrants future clinical studies to evaluate whether genetic background and lysosomal sequestration could guide tailored therapeutic interventions.
Insights
The combination of erlotinib and crizotinib showed synergistic effects in non-small cell lung cancer cells with cMET amplification. Lysosomal sequestration of drugs, influenced by pH changes, was identified as a key mechanism driving this synergy.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- EGFR mutations and cMET amplification are key biomarkers for targeted therapies in non-small cell lung cancer (NSCLC).
- Erlotinib targets EGFR, while crizotinib targets cMET, but their combined effects based on genetic background are not fully understood.
Purpose of the Study:
- To investigate the interaction between erlotinib and crizotinib in NSCLC cells with different genetic profiles.
- To elucidate the mechanisms underlying drug synergy or additivity, focusing on genetic background and drug accumulation.
Main Methods:
- Cell-based assays measuring cell cycle, migration, protein phosphorylation, and kinase activity.
- Analysis of drug efflux pump expression, intracellular drug concentrations, and live-cell microscopy using pH-sensitive probes.
Main Results:
- Additive effects were observed in cell lines with EGFR mutations or cMET amplification.
- Strong synergism was found in a gefitinib-resistant cell line (HCC827GR5) with acquired cMET amplification.
- Higher intracellular crizotinib concentrations and altered lysosomal pH dynamics were noted in HCC827GR5 cells.
Conclusions:
- Lysosomal sequestration, influenced by altered pH, plays a critical role in the synergistic response to combined crizotinib and erlotinib in specific NSCLC genetic contexts.
- Genetic background and lysosomal drug sequestration are potential factors for guiding personalized therapeutic strategies in NSCLC.
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