Comprehensive Testing of Chemotherapy and Immune Checkpoint Blockade in Preclinical Cancer Models Identifies Additive
Nicola Principe1,2,3, Wayne J Aston1, Danika E Hope1
1National Centre for Asbestos Related Diseases, University of Western Australia, Perth, WA, Australia.
Abstract:
Antibodies that target immune checkpoints such as cytotoxic T lymphocyte antigen 4 (CTLA-4) and the programmed cell death protein 1/ligand 1 (PD-1/PD-L1) are now a treatment option for multiple cancer types. However, as a monotherapy, objective responses only occur in a minority of patients. Chemotherapy is widely used in combination with immune checkpoint blockade (ICB). Although a variety of isolated immunostimulatory effects have been reported for several classes of chemotherapeutics, it is unclear which chemotherapeutics provide the most benefit when combined with ICB. We investigated 10 chemotherapies from the main canonical classes dosed at the clinically relevant maximum tolerated dose in combination with anti-CTLA-4/anti-PD-L1 ICB. We screened these chemo-immunotherapy combinations in two murine mesothelioma models from two different genetic backgrounds, and identified chemotherapies that produced additive, neutral or antagonistic effects when combined with ICB. Using flow cytometry and bulk RNAseq, we characterized the tumor immune milieu in additive chemo-immunotherapy combinations. 5-fluorouracil (5-FU) or cisplatin were additive when combined with ICB while vinorelbine and etoposide provided no additional benefit when combined with ICB. The combination of 5-FU with ICB augmented an inflammatory tumor microenvironment with markedly increased CD8+ T cell activation and upregulation of IFNγ, TNFα and IL-1β signaling. The effective anti-tumor immune response of 5-FU chemo-immunotherapy was dependent on CD8+ T cells but was unaffected when TNFα or IL-1β cytokine signaling pathways were blocked. Our study identified additive and non-additive chemotherapy/ICB combinations and suggests a possible role for increased inflammation in the tumor microenvironment as a basis for effective combination therapy.
Insights
Combining chemotherapy with immune checkpoint blockade (ICB) shows promise. Certain chemotherapies like 5-fluorouracil (5-FU) enhance ICB efficacy by increasing T cell activity, while others offer no added benefit.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Immune checkpoint blockade (ICB) targeting CTLA-4 and PD-1/PD-L1 is a cancer treatment.
- Monotherapy ICB response rates are limited in many patients.
- Chemotherapy is often combined with ICB, but optimal choices are unclear.
Purpose of the Study:
- To identify chemotherapies that enhance ICB efficacy.
- To evaluate the effects of chemo-immunotherapy combinations on the tumor immune microenvironment.
- To understand the mechanisms underlying effective chemo-immunotherapy.
Main Methods:
- Screened 10 chemotherapies combined with anti-CTLA-4/anti-PD-L1 ICB in murine mesothelioma models.
- Assessed additive, neutral, or antagonistic effects of combinations.
- Characterized the tumor immune milieu using flow cytometry and bulk RNAseq.
Main Results:
- 5-fluorouracil (5-FU) and cisplatin showed additive effects with ICB.
- Vinorelbine and etoposide provided no additional benefit with ICB.
- 5-FU plus ICB increased CD8+ T cell activation and inflammatory signaling (IFNγ, TNFα, IL-1β).
Conclusions:
- Identified additive and non-additive chemotherapy/ICB combinations.
- Increased tumor microenvironment inflammation correlates with effective chemo-immunotherapy.
- 5-FU chemo-immunotherapy efficacy depends on CD8+ T cells but not TNFα or IL-1β signaling.
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