Adaptive Resistance to EGFR-Targeted Therapy by Calcium Signaling in NSCLC Cells

Celine Mulder1, Nadine Prust1, Sander van Doorn1

  • 1Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, Utrecht, the Netherlands.

Insights

Targeted therapies for lung cancer face resistance. Early adaptive resistance involves calcium signaling, suggesting combined therapies could improve treatment efficacy.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Targeted therapies like EGFR inhibitors show initial promise for non-small cell lung cancer (NSCLC).
  • Therapeutic resistance, particularly early adaptive resistance, limits long-term treatment efficacy.
  • Understanding early resistance mechanisms is crucial for developing more effective cancer treatments.

Purpose of the Study:

  • To investigate the early proteomic and phosphoproteomic changes in NSCLC cells during targeted therapy.
  • To identify key signaling pathways involved in rapid adaptive resistance to EGFR inhibitors.
  • To explore therapeutic strategies combining EGFR inhibition with targeting identified resistance pathways.

Main Methods:

  • Proteomic, kinomic, and phosphoproteomic profiling of NSCLC PC9 cells using mass spectrometry during afatinib treatment.
  • Analysis of signaling pathway reactivation, including mTOR and MAPK.
  • Validation studies using additional NSCLC cell lines and inhibitors, assessing the role of calcium signaling.

Main Results:

  • NSCLC cells rapidly adapt to afatinib, regaining proliferation capacity within days despite ongoing target inhibition.
  • Reactivation of mTOR and MAPK signaling pathways was observed, along with increased cytoskeleton and calcium signaling proteins.
  • Pharmacologic inhibition of reactivated pathways and restriction of extracellular calcium significantly enhanced afatinib efficacy.

Conclusions:

  • Early adaptive resistance to targeted therapy in NSCLC involves rapid signaling pathway reactivation and calcium signaling.
  • Combined targeting of calcium signaling pathways with EGFR inhibitors shows potential to overcome or prevent drug resistance.
  • This approach may improve treatment outcomes for NSCLC patients.

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