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Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
Enhanced antitumor immunity through sequential targeting of PI3Kδ and LAG3
Sarah Nicol Lauder1, Kathryn Smart2, Veerle Kersemans3
1Infection and Immunity, Cardiff University Department of Medicine, Cardiff, UK LauderSN@cardiff.ac.uk.
Background:
Despite striking successes, immunotherapies aimed at increasing cancer-specific T cell responses are unsuccessful in most patients with cancer. Inactivating regulatory T cells (Treg) by inhibiting the PI3Kδ signaling enzyme has shown promise in preclinical models of tumor immunity and is currently being tested in early phase clinical trials in solid tumors.
Methods:
Mice bearing 4T1 mammary tumors were orally administered a PI3Kδ inhibitor (PI-3065) daily and tumor growth, survival and T cell infiltrate were analyzed in the tumor microenvironment. A second treatment schedule comprised PI3Kδ inhibitor with anti-LAG3 antibodies administered sequentially 10 days later.
Results:
As observed in human immunotherapy trials with other agents, immunomodulation by PI3Kδ-blockade led to 4T1 tumor regressor and non-regressor mice. Tumor infiltrating T cells in regressors were metabolically fitter than those in non-regressors, with significant enrichments of antigen-specific CD8+ T cells, T cell factor 1 (TCF1)+ T cells and CD69- T cells, compatible with induction of a sustained tumor-specific T cell response. Treg numbers were significantly reduced in both regressor and non-regressor tumors compared with untreated tumors. The remaining Treg in non-regressor tumors were however significantly enriched with cells expressing the coinhibitory receptor LAG3, compared with Treg in regressor and untreated tumors. This striking difference prompted us to sequentially block PI3Kδ and LAG3. This combination enabled successful therapy of all mice, demonstrating the functional importance of LAG3 in non-regression of tumors on PI3Kδ inhibition therapy. Follow-up studies, performed using additional cancer cell lines, namely MC38 and CT26, indicated that a partial initial response to PI3Kδ inhibition is an essential prerequisite to a sequential therapeutic benefit of anti-LAG3 antibodies.
Conclusions:
These data indicate that LAG3 is a key bottleneck to successful PI3Kδ-targeted immunotherapy and provide a rationale for combining PI3Kδ/LAG3 blockade in future clinical studies.
Insights
Combining PI3Kδ inhibition with anti-LAG3 antibodies overcomes tumor resistance to immunotherapy. This sequential blockade strategy enhances anti-tumor T cell responses and is crucial for improving cancer immunotherapy efficacy.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Cancer immunotherapies aiming to boost T cell responses often fail in most patients.
- Inhibiting the PI3Kδ signaling enzyme to inactivate regulatory T cells (Treg) shows promise in preclinical tumor immunity models.
- This approach is currently under investigation in early-phase clinical trials for solid tumors.
Purpose of the Study:
- To investigate the efficacy of PI3Kδ inhibition alone and in combination with anti-LAG3 antibodies in a preclinical model of breast cancer.
- To analyze the impact of these treatments on tumor growth, survival, and T cell infiltration within the tumor microenvironment.
Main Methods:
- Mice with 4T1 mammary tumors were treated daily with a PI3Kδ inhibitor (PI-3065).
- A sequential treatment involved administering the PI3Kδ inhibitor followed by anti-LAG3 antibodies 10 days later.
- Tumor growth, survival, and T cell populations (including Treg, CD8+ T cells, TCF1+ T cells, and CD69- T cells) were analyzed.
Main Results:
- PI3Kδ inhibition alone resulted in partial tumor regression in some mice (regressors) but not others (non-regressors).
- Tumor-infiltrating T cells in regressors were metabolically fitter, with increased antigen-specific CD8+ T cells, TCF1+ T cells, and CD69- T cells.
- While Treg numbers decreased in both groups, non-regressor tumors showed increased LAG3 expression on remaining Treg, indicating its role in resistance.
- Sequential blockade of PI3Kδ and LAG3 led to complete tumor eradication in all treated mice.
- Partial response to PI3Kδ inhibition was a prerequisite for therapeutic benefit from subsequent anti-LAG3 antibody treatment in other cancer models (MC38, CT26).
Conclusions:
- LAG3 is a critical factor limiting the effectiveness of PI3Kδ-targeted immunotherapy.
- Combining PI3Kδ and LAG3 blockade offers a promising strategy for overcoming immunotherapy resistance in cancer.
- These findings provide a strong rationale for clinical trials investigating combined PI3Kδ/LAG3 blockade.
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