Cross-Talk Signaling Between Non-Small Cell Lung Cancer Cell Lines and Fibroblasts Attenuates the Cytotoxic Effect of

Nouran Ebid1, Marwa Sharaky2, Abeer Elkhoely3

  • 1Pharmacology & Toxicology Department, Faculty of Pharmacy, Egyptian Russian University, Badr City, Egypt.

Insights

Fibroblasts initially enhance cisplatin

Area of Science:

  • Oncology
  • Cell Biology
  • Cancer Research

Background:

  • Fibroblasts are key components of the tumor microenvironment (TME).
  • Fibroblasts significantly influence cancer cell chemoresistance.
  • Non-small cell lung cancer (NSCLC) exhibits complex interactions within the TME.

Purpose of the Study:

  • To investigate how fibroblasts affect NSCLC response to cisplatin.
  • To analyze the time-dependent interplay between fibroblasts and NSCLC cells.
  • To explore the molecular mechanisms underlying fibroblast-mediated chemoresistance.

Main Methods:

  • Cytotoxicity assays (MTT) to determine cisplatin IC50.
  • Co-culture models (direct and indirect) of NSCLC cell lines (A549, H1299) with fibroblasts (HSF).
  • ELISA to measure biochemical markers at various time points before and after cisplatin exposure.

Main Results:

  • Short-term co-culture (24h) enhanced cisplatin cytotoxicity (decreased IC50).
  • Long-term co-culture (48-96h) induced cisplatin resistance (increased IC50).
  • Fibroblast co-culture altered expression of EGFR, FGF, VEGF, MMP2, MMP9, and caspase, indicating a phenotype switch.

Conclusions:

  • Fibroblast-cancer cell interactions are time-dependent.
  • Fibroblasts can initially enhance, then attenuate, cisplatin efficacy in NSCLC.
  • Fibroblast phenotype switching influences chemoresistance via signaling pathway activation and apoptosis inhibition.