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Published on: February 24, 2023
Developing a therapeutic elastase that stimulates anti-tumor immunity by selectively killing cancer cells
Ravindra Gujar1, Chang Cui1, Maria Fumagalli1
1Onchilles Pharma Inc., San Diego, CA, USA.
Abstract:
Recent clinical studies highlight the effectiveness of combining cytotoxic agents with immunotherapies, emphasizing the need for next-generation treatments that integrate both therapeutic approaches. Here, we use 30 cancer cell lines, 15 tumor models, and 45 patient samples to develop N17350, a therapeutic elastase that targets the "neutrophil elastase pathway" to induce tumor regression and stimulate anti-tumor immunity. N17350 leverages linker histone H1.0 and H1.2, proteins elevated in many cancers, to trigger immunogenic cancer cell death while preserving immune cells. Intra-tumoral N17350 administration induces rapid, genotype-independent tumor regression, triggering CD8+ T cell activation to promote durable responses and enable checkpoint inhibitor efficacy in refractory models. N17350 maintains potency with repeated dosing and across diverse treatment histories, including resistance to chemotherapies and checkpoint inhibitors. These findings support the advancement of N17350 to first-in-human clinical trials as a cytotoxic agent designed to stimulate anti-tumor immunity by selectively killing cancer cells.
Insights
A novel therapeutic elastase, N17350, effectively targets the neutrophil elastase pathway to induce tumor regression and stimulate anti-tumor immunity. This approach shows promise for enhancing cancer immunotherapies and overcoming treatment resistance.
Area of Science:
- Oncology
- Immunology
- Drug Development
Background:
- Clinical studies show combined cytotoxic agents and immunotherapies are effective.
- There is a need for novel treatments integrating cytotoxic and immune approaches.
Purpose of the Study:
- To develop N17350, a therapeutic elastase targeting the neutrophil elastase pathway.
- To evaluate N17350's efficacy in inducing tumor regression and stimulating anti-tumor immunity.
Main Methods:
- Utilized 30 cancer cell lines, 15 tumor models, and 45 patient samples.
- Developed N17350, a therapeutic elastase leveraging linker histones H1.0 and H1.2.
- Administered N17350 intra-tumorally.
Main Results:
- N17350 induced rapid, genotype-independent tumor regression.
- Triggered immunogenic cancer cell death while preserving immune cells.
- Activated CD8+ T cells, enhancing durable responses and checkpoint inhibitor efficacy in refractory models.
Conclusions:
- N17350 demonstrates potential as a novel cytotoxic agent stimulating anti-tumor immunity.
- N17350 maintains potency with repeated dosing and across diverse treatment histories.
- Supports advancement of N17350 to first-in-human clinical trials.
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