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Updated: May 24, 2025

Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
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.
Abstract:
Fibroblasts represent one of the most crucial cell types in the tumor microenvironment (TME), playing a major role in chemoresistance development. This study investigated the ability of fibroblasts to alter the response of non-small cell lung cancer (NSCLC) cell lines to cisplatin exposure. A cytotoxicity assay was performed to determine the IC50 of cisplatin using MTT. The assay was performed on NSCLC cell lines A549 and H1299 monocultures and co-cultures with fibroblasts. The co-culture was performed directly with the HSF cell line and indirectly through conditioned media. The ELISA technique was then used to determine the expression of biochemical markers at various time points of co-culture before and after cisplatin exposure. We observed a time-dependent evolution in the fibroblast-cancer cell interplay. Initially, fibroblast co-culture enhanced the cytotoxic effect of cisplatin, as reflected by decreased IC50 values after 24 h of co-culture. However, prolonged co-culture durations (48-96 h) led to the emergence of cisplatin resistance, coinciding with increased IC50 values and altered expression of key biochemical markers. The findings suggest that fibroblasts undergo a potential identity switch over time, transitioning from a tumor-restrictive to a tumor-promoting phenotype. This switch was associated with the activation of EGFR and FGF signaling pathways, increased expression of angiogenic and metastasis markers (e.g., VEGF, MMP2 & MMP9), and inhibition of apoptosis (e.g., reduced caspase expression). Our results suggest that fibroblasts may initially potentiate the effect of cisplatin on NSCLC cells; however, in a time-dependent manner, fibroblast co-culture attenuates the cytotoxic efficacy of cisplatin.
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.
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