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Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
Cellular response to cetuximab in PTEN-silenced head and neck squamous cell carcinoma cell line
Jihane Mriouah1, Cedric Boura, Sophie Pinel
1EA 4421 SiGReTO Signalisation, Genomique et Recherche Translationnelle en Oncologie, UHP-Nancy 1, Nancy-Universite, 54505 Vandoeuvre-les-Nancy, France.
Abstract:
The implication of loss of PTEN expression in resistance to targeted therapy has already been described in many tumor types. The absence of response to anti-EGFR agents in PTEN-deficient tumors relies on persistent activation of signaling pathways downstream of pEGFR. To investigate the role of PTEN loss of expression in head and neck squamous cell carcinoma (HNSCC) response to cetuximab, we used siRNA in Cal 27 cells and then evaluated key signaling protein activation (pAKT and pERK 1/2) as well as cell viability and proliferation. PTEN silencing in Cal 27 cells led to a constitutive activation of signaling pathways evidenced by a strong increase in pAKT and pERK 1/2 expression. Moreover, PTEN-silenced cells did not show any significant changes either in cell viability or proliferation, only slight modifications on cell cycle. Additionally and unpredictably, our results indicated that PTEN silencing, led to a drastic reduction in pEGFR expression whereas total EGFR level did not significantly vary. Strikingly, despite this overactivation of signaling pathways ruling cell survival and proliferation in siPTEN cells, cetuximab fully exerted pAKT and pERK 1/2 inhibition of expression, similarly to its effect in untransfected Cal 27 cells. In conclusion, our study established that in Cal 27 cells, cetuximab keeps full ability to inhibit EGFR-dependent mechanisms, as shown by a decreased pAKT and pERK 1/2 level of expression, despite a strong PTEN silencing-induced overactivation. In Cal 27 cells, loss of PTEN expression does not lead to a loss of cetuximab efficacy in inhibiting EGFR-downstream signaling pathways, contrarily to data shown in previous works conducted in other tumor types.
Insights
Loss of PTEN expression in head and neck cancer cells did not affect cetuximab efficacy. Despite PTEN silencing, cetuximab still inhibited EGFR-downstream signaling, contrary to findings in other tumor types.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Loss of PTEN expression is linked to targeted therapy resistance in various cancers.
- EGFR inhibitors like cetuximab are crucial in treating head and neck squamous cell carcinoma (HNSCC).
- Understanding PTEN's role in HNSCC response to cetuximab is vital for optimizing treatment strategies.
Purpose of the Study:
- To investigate the impact of PTEN loss of expression on HNSCC response to cetuximab.
- To evaluate the effects of PTEN silencing on key signaling pathways (pAKT, pERK 1/2) and cellular behavior in HNSCC cells.
Main Methods:
- Utilized siRNA to silence PTEN expression in Cal 27 HNSCC cells.
- Assessed activation of pAKT and pERK 1/2 signaling proteins.
- Monitored cell viability, proliferation, and cell cycle progression.
- Quantified pEGFR and total EGFR levels before and after cetuximab treatment.
Main Results:
- PTEN silencing led to constitutive activation of pAKT and pERK 1/2 signaling pathways.
- PTEN-silenced cells showed minimal changes in viability and proliferation.
- Unexpectedly, PTEN silencing reduced pEGFR levels while total EGFR remained stable.
- Cetuximab effectively inhibited pAKT and pERK 1/2 in PTEN-silenced cells, similar to control cells.
Conclusions:
- In Cal 27 HNSCC cells, PTEN loss does not impair cetuximab's ability to inhibit EGFR-downstream signaling.
- Cetuximab maintains efficacy in blocking EGFR-dependent pathways even with PTEN deficiency.
- These findings contrast with previous studies in other tumor types, highlighting context-specific roles of PTEN in targeted therapy resistance.
