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Lipid nanoparticles to silence androgen receptor variants for prostate cancer therapy
Joslyn Quick1, Nancy Dos Santos2, Miffy H Y Cheng1
1Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada.
Abstract:
Advanced-stage prostate cancer remains an incurable disease with poor patient prognosis. There is an unmet clinical need to target androgen receptor (AR) splice variants, which are key drivers of the disease. Some AR splice variants are insensitive to conventional hormonal or androgen deprivation therapy due to loss of the androgen ligand binding domain at the C-terminus and are constitutively active. Here we explore the use of RNA interference (RNAi) to target a universally conserved region of all AR splice variants for cleavage and degradation, thereby eliminating protein level resistance mechanisms. To this end, we tested five siRNA sequences designed against exon 1 of the AR mRNA and identified several that induced potent knockdown of full-length and truncated variant ARs in the 22Rv1 human prostate cancer cell line. We then demonstrated that 2'O methyl modification of the top candidate siRNA (siARvm) enhanced AR and AR-V7 mRNA silencing potency in both 22Rv1 and LNCaP cells, which represent two different prostate cancer models. For downstream in vivo delivery, we formulated siARvm-LNPs and functionally validated these in vitro by demonstrating knockdown of AR and AR-V7 mRNA in prostate cancer cells and loss of AR-mediated transcriptional activation of the PSA gene in both cell lines following treatment. We also observed that siARvm-LNP induced cell viability inhibition was more potent compared to LNP containing siRNA targeting full-length AR mRNA (siARfl-LNP) in 22Rv1 cells as their proliferation is more dependent on AR splice variants than LNCaP and PC3 cells. The in vivo biodistribution of siARvm-LNPs was determined in 22Rv1 tumor-bearing mice by incorporating 14C-radiolabelled DSPC in LNP formulation, and we observed a 4.4% ID/g tumor accumulation following intravenous administration. Finally, treatment of 22Rv1 tumor bearing mice with siARvm-LNP resulted in significant tumor growth inhibition and survival benefit compared to siARfl-LNP or the siLUC-LNP control. To best of our knowledge, this is the first report demonstrating therapeutic effects of LNP-siRNA targeting AR splice variants in prostate cancer.
Insights
Advanced prostate cancer treatment is improved by targeting androgen receptor (AR) splice variants using RNA interference (RNAi) delivered via lipid nanoparticles (LNPs). This novel LNP-siRNA therapy effectively inhibits tumor growth and enhances survival in preclinical models.
Area of Science:
- Oncology
- Molecular Biology
- Biotechnology
Background:
- Advanced prostate cancer is largely incurable, with androgen receptor (AR) splice variants driving treatment resistance.
- Current therapies are often ineffective against AR splice variants lacking the ligand-binding domain.
Purpose of the Study:
- To develop and evaluate RNA interference (RNAi) targeting a conserved region in AR splice variants for therapeutic application.
- To assess the efficacy of modified siRNA encapsulated in lipid nanoparticles (LNPs) for prostate cancer treatment.
Main Methods:
- Designed and tested siRNAs against AR mRNA exon 1, identifying potent sequences.
- Optimized siRNA (siARvm) with 2'O methyl modifications for enhanced silencing.
- Formulated siARvm into LNPs (siARvm-LNPs) for in vitro and in vivo delivery.
- Evaluated in vitro knockdown, PSA gene transcriptional activity, and cell viability.
- Assessed in vivo tumor accumulation, growth inhibition, and survival in mouse models.
Main Results:
- Identified siRNAs effectively knocking down full-length AR and splice variants in prostate cancer cells.
- siARvm-LNPs demonstrated potent AR and AR-V7 mRNA silencing and reduced PSA gene activity.
- siARvm-LNPs showed greater inhibition of cell viability in AR splice variant-dependent cells compared to siARfl-LNPs.
- In vivo studies showed significant tumor growth inhibition and improved survival in mice treated with siARvm-LNPs.
Conclusions:
- siARvm-LNPs represent a promising therapeutic strategy for advanced prostate cancer by targeting AR splice variants.
- This study demonstrates the first therapeutic effect of LNP-siRNA targeting AR splice variants in prostate cancer, offering a new treatment avenue.
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