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Analysis of Human T Cell Activity in an Allogeneic Co-Culture Setting of Pre-Treated Tumor Cells
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Therapy of Established Tumors with Rationally Designed Multiple Agents Targeting Diverse Immune-Tumor Interactions:
Kellsye P Fabian1, Anthony S Malamas1, Michelle R Padget1
1Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland.
Abstract:
Immunotherapy of immunologically cold solid tumors may require multiple agents to engage immune effector cells, expand effector populations and activities, and enable immune responses in the tumor microenvironment (TME). To target these distinct phenomena, we strategically chose five clinical-stage immuno-oncology agents, namely, (i) a tumor antigen-targeting adenovirus-based vaccine (Ad-CEA) and an IL15 superagonist (N-803) to activate tumor-specific T cells, (ii) OX40 and GITR agonists to expand and enhance the activated effector populations, and (iii) an IDO inhibitor (IDOi) to enable effector-cell activity in the TME. Flow cytometry, T-cell receptor (TCR) sequencing, and RNA-sequencing (RNA-seq) analyses showed that in the CEA-transgenic murine colon carcinoma (MC38-CEA) tumor model, Ad-CEA + N-803 combination therapy resulted in immune-mediated antitumor effects and promoted the expression of costimulatory molecules on immune subsets, OX40 and GITR, and the inhibitory molecule IDO. Treatment with Ad-CEA + N-803 + OX40 + GITR + IDOi, termed the pentatherapy regimen, resulted in the greatest inhibition of tumor growth and protection from tumor rechallenge without toxicity. Monotherapy with any of the agents had little to no antitumor activity, whereas combining two, three, or four agents had minimal antitumor effects. Immune analyses demonstrated that the pentatherapy combination induced CD4+ and CD8+ T-cell activity in the periphery and tumor, and antitumor activity associated with decreased regulatory T-cell (Treg) immunosuppression in the TME. The pentatherapy combination also inhibited tumor growth and metastatic formation in 4T1 and LL2-CEA murine tumor models. This study provides the rationale for the combination of multimodal immunotherapy agents to engage, enhance, and enable adaptive antitumor immunity.
Insights
Combining five immunotherapy agents (pentatherapy) effectively treats solid tumors by engaging, enhancing, and enabling immune responses. This combination therapy demonstrated significant antitumor activity and protection against tumor rechallenge without toxicity.
Area of Science:
- Oncology
- Immunology
- Cancer Research
Background:
- Solid tumors often evade immune detection, necessitating combination immunotherapies.
- Current strategies struggle to overcome the immunosuppressive tumor microenvironment (TME).
Purpose of the Study:
- To evaluate a novel pentatherapy regimen combining five immuno-oncology agents.
- To assess the efficacy and immune effects of this combination in preclinical solid tumor models.
Main Methods:
- Utilized a multimodal approach with an adenovirus-based vaccine (Ad-CEA), IL15 superagonist (N-803), OX40 and GITR agonists, and an IDO inhibitor (IDOi).
- Employed flow cytometry, T-cell receptor sequencing, and RNA sequencing in MC38-CEA, 4T1, and LL2-CEA murine models.
Main Results:
- Pentatherapy significantly inhibited tumor growth and prevented tumor rechallenge, outperforming monotherapy or combinations of fewer agents.
- The combination therapy induced robust CD4+ and CD8+ T-cell activity and reduced regulatory T-cell (Treg) immunosuppression in the TME.
- Pentatherapy demonstrated efficacy across multiple tumor models, including inhibition of metastatic formation.
Conclusions:
- Combination immunotherapy is crucial for overcoming immune suppression in solid tumors.
- The pentatherapy regimen shows promise for engaging, enhancing, and enabling adaptive antitumor immunity.
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