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.

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.