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Effect of a small molecule BCL-2 inhibitor on immune function and use with a recombinant vaccine
Benedetto Farsaci1, Helen Sabzevari, Jack P Higgins
1Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
Small molecule BCL-2 inhibitors are being examined as monotherapy in phase I/II clinical trials for several types of tumors. However, few data are available about the effect of BCL-2 inhibitors on immune function. The aims of our study were to investigate the effect of a small molecule BCL-2 inhibitor on immune function and determine the most effective way of combining this inhibitor with a recombinant vaccine to treat tumors. The in vitro effect of the pan-BCL-2 inhibitor GX15-070 was assessed in mouse CD8 T lymphocytes at 2 different stages of activation as well as regulatory T lymphocytes (Treg). The in vivo effect of GX15-070 after recombinant vaccinia/fowlpox CEA-TRICOM vaccination was analyzed in tumor-infiltrating lymphocytes, and in splenocytes of mice bearing subcutaneous tumors. The therapeutic efficacy of such sequential therapy was measured as a reduction of pulmonary tumor nodules. Activated mature CD8 T lymphocytes were more resistant to GX15-070 as compared to early-activated cells. Treg function was significantly decreased after treatment with the BCL-2 inhibitor. In vivo, GX15-070 was given after vaccination so as to not negatively impact the induction of vaccine-mediated immunity, resulting in increased intratumoral activated CD8:Treg ratio and significant reduction of pulmonary tumor nodules. Our study is the first to show the effect of a small molecule BCL-2 inhibitor on the immune system and following a vaccine. It is also the first to demonstrate the efficacy of this sequence in reducing tumors in mouse models, providing a rationale for the design of combinational clinical studies.
Insights
Small molecule BCL-2 inhibitors impact immune cells, decreasing regulatory T lymphocytes (Treg). Combining GX15-070 with a vaccine after T cell activation effectively reduced tumors in mice.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Small molecule BCL-2 inhibitors are under investigation for cancer therapy.
- Limited data exist on BCL-2 inhibitors' effects on immune function.
- Understanding these effects is crucial for combination therapies.
Purpose of the Study:
- To investigate the impact of a BCL-2 inhibitor (GX15-070) on immune cells.
- To determine the optimal combination strategy of GX15-070 with a recombinant vaccine for tumor treatment.
Main Methods:
- In vitro assessment of GX15-070 on mouse CD8 T lymphocytes and regulatory T lymphocytes (Treg).
- In vivo analysis of GX15-070 post-vaccination in tumor-bearing mice.
- Evaluation of therapeutic efficacy by measuring pulmonary tumor nodule reduction.
Main Results:
- Activated mature CD8 T lymphocytes showed resistance to GX15-070.
- GX15-070 significantly reduced Treg function.
- Sequential in vivo therapy (vaccination followed by GX15-070) increased intratumoral CD8:Treg ratio and reduced tumor nodules.
Conclusions:
- This study is the first to demonstrate the immunomodulatory effects of a small molecule BCL-2 inhibitor.
- The sequential administration of GX15-070 after vaccination shows efficacy in reducing tumors in mouse models.
- Findings provide a rationale for clinical trials combining BCL-2 inhibitors with vaccines.
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