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Ubiquitin-Specific Protease 6 mRNA Lipid Nanoparticles Ignite Antitumor Immunity and Suppress Tumorigenesis in Ewing
Margaret M Chou1, Ian C Henrich2, Margaret M Billingsley3
1Merlin Biotech/Baruch S. Blumberg Institute, Philadelphia, Pennsylvania.
Abstract:
Ewing sarcoma is an aggressive pediatric cancer that has remained refractory to current therapeutics. Immunotherapy has been unsuccessful in Ewing sarcoma, largely due to poor understanding of how its immune tumor microenvironment is regulated. We recently demonstrated that ubiquitin-specific protease 6 (USP6) can remodel the Ewing sarcoma immune landscape to engender an antitumorigenic tumor microenvironment. USP6 expression in Ewing sarcoma cells enhances surface expression of immunostimulatory ligands and receptors and induces production of multiple chemokines, driving recruitment and activation of tumor-suppressive immune lineages, including NK cells. We sought to harness this multifaceted immunostimulatory function into a novel therapeutic by delivering in vitro transcribed USP6 mRNA via ionizable lipid nanoparticles (LNP). Treatment of Ewing sarcoma cells with USP6 mRNA in vitro is capable of inducing the aforementioned antitumorigenic and immunostimulatory responses. In addition, USP6 mRNA-treated Ewing sarcoma cells elicit cytolytic activation of primary human CD8+ and CD4+ T lymphocytes and NK cells in vitro. Intratumoral delivery of USP6 mRNA LNPs suppresses growth of Ewing sarcoma xenografts, coincident with increased immune infiltration and activation. We further demonstrate that USP6 mRNA is capable of igniting an immunostimulatory program in other cancer types (including acute myeloid leukemia, melanoma, prostate cancer, head and neck cancer, and osteosarcoma) in vitro and suppressing acute myeloid leukemia xenograft growth in vivo. Treatment with USP6 mRNA LNPs was well-tolerated, with no observed gross toxicity. Together, these preclinical studies provide proof-of-concept for the immunogenic and antitumorigenic efficacy of USP6 mRNA LNPs and support its promise as a novel immunotherapeutic in diverse cancer types.
Insights
This study shows that delivering ubiquitin-specific protease 6 (USP6) mRNA using lipid nanoparticles (LNPs) can reprogram the tumor microenvironment (TME) to fight pediatric Ewing sarcoma (ES) and other cancers.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Ewing sarcoma (ES) is a pediatric cancer with limited therapeutic options.
- Current immunotherapies are ineffective in ES due to a poorly understood immune tumor microenvironment (TME).
- Ubiquitin-specific protease 6 (USP6) was previously shown to modulate the ES TME towards an anti-tumorigenic state.
Purpose of the Study:
- To develop a novel immunotherapy by delivering USP6 mRNA via ionizable lipid nanoparticles (LNPs).
- To evaluate the efficacy of USP6 mRNA LNPs in reprogramming the TME and eliciting anti-tumor immune responses.
- To assess the potential of USP6 mRNA LNPs in other cancer types.
Main Methods:
- In vitro transcription of USP6 mRNA and formulation into LNPs.
- Treatment of ES cells and other cancer cell lines with USP6 mRNA LNPs.
- Assessment of immune cell activation (CD8+ T cells, CD4+ T cells, NK cells) in vitro.
- Intratumoral (IT) delivery of USP6 mRNA LNPs in ES xenograft models.
- In vivo efficacy studies in AML xenograft models.
Main Results:
- USP6 mRNA treatment induced anti-tumorigenic and immunostimulatory responses in ES cells.
- USP6 mRNA-treated cells activated human CD8+ T cells, CD4+ T cells, and NK cells.
- IT delivery of USP6 mRNA LNPs suppressed ES xenograft growth with increased immune infiltration and activation.
- USP6 mRNA demonstrated potential in other cancer types in vitro and suppressed AML xenograft growth in vivo.
- USP6 mRNA LNP treatment was well-tolerated with no observed toxicity.
Conclusions:
- USP6 mRNA delivered via LNPs shows pre-clinical proof-of-concept for immunogenic and anti-tumorigenic efficacy.
- This approach holds promise as a novel immunotherapeutic for Ewing sarcoma and other cancers.
- Further clinical investigation of USP6 mRNA LNPs is warranted.

