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A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
In vitro modeling of HER2-targeting therapy in disseminated prostate cancer
Jennie Andersson1, Maria Rosestedt1, Veronika Asplund1
1Preclinical PET Platform, Uppsala University, Uppsala, Sweden.
Abstract:
Prostate cancer (PCa) is the most common cancer type among men. Treatments against advanced PCa are limited and in many cases only palliative. In a later, androgent independent, stage of PCa androgen receptors can be activated without interaction with ligand, i.e., by receptors of tyrosine kinase (RTK) family in the outlaw pathway. Human epidermal growth factor receptors HER2 and EGFR belong to RTK-family. HER2 is one of the main actors in the outlaw pathway with EGFR as the preferable heterodimerizing partner. We hypothesized that information on HER2 expression in advanced PCa could be useful for selection of patients for anti-RTK therapy and monitoring of therapy response. A panel of PCa cell lines (LNCap, PC3, DU-145) was subjected to a 8-week treatment using drugs influencing the RTK: trastuzumab (anti‑HER2), 17-DMAG (Hsp90 inhibitor), alone or in combination, and their HER2 and EGFR expressions were compared with non-treated cells. Treatment with trastuzumab decreased proliferation of LNCap and DU-145 cell lines, while 17-DMAG and trastuzumab/17‑DMAG combination affected all three cell lines. HER2 expression was significantly increased in PC3 cells, the most resistant cell line. On the contrary, in responding cells (LNCap and DU-145) HER2 expression decreased, accompanied by increased EGFR expression. However, additional treatment of cells with cetuximab (anti‑EGFR) did not give any additive effect to trastuzumab. In this study the response to anti-RTK therapy proved to vary between different PCa cell lines. We have demonstrated that RTK targeting treatments may affect the phenotypic profile of PCa tumor cells that correlates with therapy outcome. Observation of such changes during treatment could be used for monitoring and an improved therapy outcome.
Insights
Targeting tyrosine kinase receptors (RTKs) in advanced prostate cancer (PCa) shows varied responses. Monitoring HER2 and EGFR expression changes can help predict and manage anti-RTK therapy outcomes in PCa patients.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Advanced prostate cancer (PCa) has limited treatment options, often palliative.
- The "outlaw pathway" in androgen-independent PCa involves tyrosine kinase receptors (RTKs), including HER2 and EGFR.
- HER2 plays a key role in this pathway, often partnering with EGFR.
Purpose of the Study:
- To investigate the utility of HER2 expression for selecting patients for anti-RTK therapy in advanced PCa.
- To evaluate the impact of RTK-targeting drugs on HER2 and EGFR expression.
- To explore the correlation between phenotypic changes and therapy response for monitoring treatment.
Main Methods:
- Prostate cancer cell lines (LNCap, PC3, DU-145) were treated for 8 weeks with trastuzumab (anti-HER2), 17-DMAG (Hsp90 inhibitor), or a combination.
- HER2 and EGFR expression levels were compared between treated and non-treated cells.
- The effect of adding cetuximab (anti-EGFR) to trastuzumab treatment was assessed.
Main Results:
- Trastuzumab reduced proliferation in LNCap and DU-145 cells; 17-DMAG and combination therapy affected all three lines.
- HER2 expression increased in resistant PC3 cells but decreased in sensitive LNCap and DU-145 cells.
- Responding cells showed increased EGFR expression, but adding cetuximab did not improve outcomes with trastuzumab.
Conclusions:
- Response to anti-RTK therapy varies significantly across different PCa cell lines.
- RTK-targeting treatments can alter PCa cell phenotype in ways that correlate with treatment outcomes.
- Monitoring these phenotypic changes during therapy may improve patient management and outcomes.

