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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
OncoVEXmGM-CSFexpands tumor antigen-specific CD8+ T-cell response in preclinical models
Juan Estrada1, Jinghui Zhan1, Petia Mitchell1
1Amgen Inc, Thousand Oaks, California, USA.
Background:
Checkpoint inhibitors targeting cytotoxic T-lymphocyte-associated protein 4 (CTLA-4) and programmed cell death protein 1 (PD-1)/programmed cell death ligand 1 (PD-L1) have demonstrated clinical efficacy in advanced melanoma, but only a subset of patients with inflamed tumors are responsive. Talimogene laherparepvec (T-VEC), a modified herpes simplex virus type 1 (HSV-1) expressing granulocyte-macrophage colony-stimulating factor (GM-CSF), is a first-in-class oncolytic immunotherapy approved for the treatment of melanoma and has been shown to inflame the tumor microenvironment. To evaluate the potential and mechanisms of T-VEC to elicit systemic antitumor immunity and overcome resistance to checkpoint inhibitors in murine tumor models, OncoVEXmGM-CSF was developed similarly to T-VEC, except the human GM-CSF transgene was replaced with murine GM-CSF. Previous work had demonstrated that OncoVEXmGM-CSF generated systemic antitumor immunity dependent on CD8+ T cells in an immune checkpoint-sensitive tumor cell model.
Methods:
A novel B16F10 syngeneic tumor model with both HSV-1-permissive subcutaneous tumors and HSV-1-refractory experimental lung metastasis was used to study the local and systemic effects of OncoVEXmGM-CSF treatment alone or in combination with checkpoint inhibitors.
Results:
Intratumoral injection of OncoVEXmGM-CSF in combination with an anti-CTLA-4 or anti-PD-1 blocking antibody led to increased tumor growth inhibition, a reduction in the number of lung metastases, and prolonged animal survival. OncoVEXmGM-CSF induced both neoantigen-specific and tumor antigen-specific T-cell responses. Furthermore, cured mice from the combination treatment of OncoVEXmGM-CSF and anti-CTLA-4 antibody rejected tumor rechallenges.
Conclusions:
These data support the concept that T-VEC and checkpoint inhibition may be an effective combination to treat patients with advanced melanoma.
Insights
Oncolytic immunotherapy OncoVEXmGM-CSF combined with checkpoint inhibitors enhanced antitumor immunity and survival in melanoma models. This combination therapy may overcome resistance to current treatments for advanced melanoma.
Area of Science:
- Oncology
- Immunotherapy
- Virology
Background:
- Checkpoint inhibitors (anti-CTLA-4, anti-PD-1) show efficacy in advanced melanoma but benefit only a subset of patients.
- Talimogene laherparepvec (T-VEC), an oncolytic virus, is approved for melanoma and can modify the tumor microenvironment.
- OncoVEXmGM-CSF, a modified T-VEC, was developed to study its potential in eliciting systemic antitumor immunity.
Purpose of the Study:
- To evaluate the efficacy of OncoVEXmGM-CSF in combination with checkpoint inhibitors in murine melanoma models.
- To investigate the mechanisms by which this combination elicits systemic antitumor immunity and overcomes resistance.
- To assess the potential of this combination therapy for treating advanced melanoma.
Main Methods:
- A B16F10 syngeneic tumor model with subcutaneous tumors and lung metastases was utilized.
- OncoVEXmGM-CSF was administered intratumorally, alone or combined with anti-CTLA-4 or anti-PD-1 antibodies.
- Tumor growth, metastasis, animal survival, T-cell responses, and tumor rechallenge were analyzed.
Main Results:
- Combination treatment of OncoVEXmGM-CSF with checkpoint inhibitors significantly inhibited tumor growth and reduced lung metastases.
- The combination therapy led to prolonged animal survival and induced both neoantigen-specific and tumor antigen-specific T-cell responses.
- Mice cured by combination therapy rejected subsequent tumor rechallenges, indicating durable immune memory.
Conclusions:
- OncoVEXmGM-CSF in combination with checkpoint inhibitors demonstrates significant antitumor activity in preclinical melanoma models.
- This combination approach shows promise for overcoming resistance to single-agent therapies and enhancing systemic antitumor immunity.
- The findings support the clinical investigation of T-VEC-based oncolytic immunotherapy combined with checkpoint inhibitors for advanced melanoma treatment.
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