Serine-Driven Metabolic Plasticity Drives Adaptive Resilience in Pancreatic Cancer Cells

Marcella Bonanomi1, Sara Mallia1,2, Mariafrancesca Scalise3

  • 1Institute of Molecular Bioimaging and Complex Biological Systems (IBSBC), National Research Council (CNR), 20054 Segrate, MI, Italy.

Insights

Pancreatic cancer cells adapt their metabolism to resist treatment. Targeting serine metabolism, a key adaptive pathway, may improve therapeutic outcomes for this lethal malignancy.

Area of Science:

  • Metabolic pathways in oncology
  • Cancer drug resistance mechanisms

Background:

  • Pancreatic cancer is highly lethal, often due to metabolic adaptability leading to drug resistance.
  • Understanding metabolic rewiring is crucial for overcoming therapeutic failure.

Purpose of the Study:

  • To investigate metabolic adaptations in pancreatic cancer cells resistant to treatment.
  • To identify key metabolic pathways involved in therapeutic resilience.

Main Methods:

  • Systems metabolomics approach to analyze metabolic changes.
  • Exposure to erastin, methotrexate, and alpelisib.
  • Metabolic tracing and gene expression profiling.

Main Results:

  • Erastin revealed vulnerabilities but not lasting suppression.
  • Combinatorial treatments induced metabolic shifts.
  • Serine metabolism was identified as a central adaptive pathway supporting redox homeostasis, biosynthesis, and epigenetics in resilient cells.
  • Resilient cells showed increased serine biosynthesis and uptake.
  • Post-treatment recovery involved serine-driven transcriptional reprogramming.

Conclusions:

  • Serine metabolism is a critical adaptive axis in pancreatic cancer resilience.
  • Increased serine metabolism supports survival, proliferation, and migration.
  • Targeting serine metabolism offers a potential strategy to enhance pancreatic cancer therapy.