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Updated: Aug 25, 2025

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
VISTA Targeting of T-cell Quiescence and Myeloid Suppression Overcomes Adaptive Resistance
Evelien Schaafsma1,2, Walburga Croteau1, Mohamed ElTanbouly1,3
1Department of Microbiology and Immunology, Dartmouth Cancer Center, Geisel School of Medicine at Dartmouth, Lebanon, New Hampshire.
Abstract:
V domain immunoglobulin suppressor of T-cell activation (VISTA) is a premier target for cancer treatment due to its broad expression in many cancer types and enhanced expression upon development of adaptive immune checkpoint resistance. In the CT26 colorectal cancer model, monotherapy of small tumors with anti-VISTA resulted in slowed tumor growth. In a combination therapy setting, large CT26 tumors showed complete adaptive resistance to anti-PD-1/CTLA-4, but inclusion of anti-VISTA led to rejection of half the tumors. Mechanisms of enhanced antitumor immunity were investigated using single-cell RNA sequencing (scRNA-seq), multiplex image analysis, and flow cytometry of the tumor immune infiltrate. In both treatment models, anti-VISTA upregulated stimulated antigen presentation pathways and reduced myeloid-mediated suppression. Imaging revealed an anti-VISTA stimulated increase in contacts between T cells and myeloid cells, further supporting the notion of increased antigen presentation. scRNA-seq of tumor-specific CD8+ T cells revealed that anti-VISTA therapy induced T-cell pathways highly distinct from and complementary to those induced by anti-PD-1 therapy. Whereas anti-CTLA-4/PD-1 expanded progenitor exhausted CD8+ T-cell subsets, anti-VISTA promoted costimulatory genes and reduced regulators of T-cell quiescence. Notably, this is the first report of a checkpoint regulator impacting CD8+ T-cell quiescence, and the first indication that quiescence may be a target in the context of T-cell exhaustion and in cancer. This study builds a foundation for all future studies on the role of anti-VISTA in the development of antitumor immunity and provides important mechanistic insights that strongly support use of anti-VISTA to overcome the adaptive resistance seen in contemporary treatments involving PD-1 and/or CTLA-4. See related Spotlight by Wei, p. 3.
Insights
Anti-VISTA therapy shows promise in overcoming adaptive resistance to cancer immunotherapies like anti-PD-1/CTLA-4. This approach enhances T-cell activation and antigen presentation, leading to tumor rejection in preclinical models.
Area of Science:
- Immunology
- Cancer Biology
- Drug Discovery
Background:
- V domain immunoglobulin suppressor of T-cell activation (VISTA) is a key immune checkpoint target in cancer.
- VISTA expression increases with adaptive immune checkpoint resistance, limiting current therapies.
- CT26 colorectal cancer models demonstrate VISTA's role in tumor growth and immune evasion.
Discussion:
- Anti-VISTA monotherapy slowed growth in small CT26 tumors.
- In large tumors resistant to anti-PD-1/CTLA-4, adding anti-VISTA led to rejection in 50% of cases.
- Mechanisms involve enhanced antigen presentation and reduced myeloid suppression.
Key Insights:
- Anti-VISTA upregulates antigen presentation and T-cell/myeloid cell interactions.
- It uniquely promotes costimulatory genes and reduces T-cell quiescence regulators.
- This is the first report linking checkpoint regulators to CD8+ T-cell quiescence.
Outlook:
- Anti-VISTA therapy offers a complementary approach to anti-PD-1/CTLA-4, overcoming adaptive resistance.
- Targeting T-cell quiescence presents a novel strategy in cancer immunotherapy.
- Further research into VISTA's role in antitumor immunity is warranted.
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