Knocking Down TMPRSS2-ERG Fusion Oncogene by siRNA Could be an Alternative Treatment to Flutamide
Giorgia Urbinati1, Isabelle de Waziers2, Mateja Slamiç1
1Vectorology and Anticancer Therapies, UMR 8203, CNRS, Univ. Paris-Sud, Gustave Roussy, Université Paris-Saclay, Villejuif, France.
Abstract:
Our purpose was to develop a new pharmacological approach for the treatment of prostate cancer (PCa), the most common neoplasia in men. Recently, we developed siRNA against the fusion oncogene TMPRSS2-ERG found in 50% of patients and showed an antitumoral activity in animal model. Herein, we want to compare or combine the developed siRNA to flutamide (FLU), one of the gold-standard treatment of PCa. Therefore, concomitant or subsequent association of FLU to siRNA TMPRSS2-ERG was performed in VCaP cells and in SCID mice bearing xenografted VCaP tumors. ERG, androgen receptor, cleaved-caspase-3 as well as phase 1 and 2 drug-metabolizing enzymes were investigated within tumors. We observed similar results in terms of TMPRSS2-ERG knock-down and cell viability impairment for all distinct schedules of administration. The association of siRNA TMPRSS2-ERG-squalene nanoparticles with flutamide displayed similar tumor growth inhibition as mice treated with siRNA TMPRSS2-ERG-squalene nanoparticles alone and was paralleled with modification of expression of ERG, androgen receptor, and cleaved-caspase-3. Phase 1 and 2 enzymes were essentially affected by FLU and reverted when combined with squalenoylated siRNA. In conclusion, these results confirm the therapeutic effectiveness of squalenoyl siRNA nanomedicine for PCa based on siRNA TMPRSS2-ERG.
Insights
This study explored combining siRNA targeting TMPRSS2-ERG with flutamide for prostate cancer (PCa) treatment. Squalenoylated siRNA showed therapeutic effectiveness in preclinical models, offering a new nanomedicine approach for PCa.
Area of Science:
- Oncology
- Nanomedicine
- Molecular Biology
Background:
- Prostate cancer (PCa) is a leading male neoplasia.
- TMPRSS2-ERG fusion oncogene is present in 50% of PCa cases.
- Current treatments like flutamide have limitations.
Purpose of the Study:
- To develop a novel pharmacological approach for PCa treatment.
- To compare and combine siRNA targeting TMPRSS2-ERG with flutamide.
- To evaluate therapeutic efficacy in vitro and in vivo.
Main Methods:
- Developed siRNA against TMPRSS2-ERG.
- Administered siRNA alone or combined with flutamide (FLU) in VCaP cells and xenografted mice.
- Analyzed ERG, androgen receptor, cleaved-caspase-3, and drug-metabolizing enzymes.
Main Results:
- All administration schedules achieved TMPRSS2-ERG knockdown and reduced cell viability.
- siRNA-flutamide combination showed similar tumor inhibition as siRNA alone.
- Squalenoylated siRNA reverted flutamide-induced changes in drug-metabolizing enzymes.
Conclusions:
- Squalenoyl siRNA nanomedicine targeting TMPRSS2-ERG is therapeutically effective for PCa.
- This approach demonstrates significant antitumoral activity in preclinical models.
- Combination therapy warrants further investigation for enhanced PCa treatment.
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