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Updated: Apr 12, 2026

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
IFNγ producing CD8+ T cells modified to resist major immune checkpoints induce regression of MHC class I-deficient
Michel Buferne1, Lionel Chasson1, Magali Grange1
1Centre d'Immunologie de Marseille-Luminy (CIML); UM2 Aix-Marseille Université ; Marseille, France ; Institut National de la Santé et de la Recherche Médicale (INSERM) ; Marseille; France ; Centre National de la Recherche Scientifique (CNRS) ; Marseille; France.
Abstract:
Tumors with reduced expression of MHC class I (MHC-I) molecules may be unrecognized by tumor antigen-specific CD8+ T cells and thus constitute a challenge for cancer immunotherapy. Here we monitored development of autochthonous melanomas in TiRP mice that develop tumors expressing a known tumor antigen as well as a red fluorescent protein (RFP) reporter knock in gene. The latter permits non-invasive monitoring of tumor growth by biofluorescence. One developing melanoma was deficient in cell surface expression of MHC-I, but MHC-I expression could be rescued by exposure of these cells to IFNγ. We show that CD8+ T cells specific for tumor antigen/MHC-I were efficient at inducing regression of the MHC-I-deficient melanoma, provided that the T cells were endowed with properties permitting their migration into the tumor and their efficient production of IFNγ. This was the case for CD8+ T cells transfected to express an active form of STAT5 (STAT5CA). The amount of IFNγ produced ex vivo from T cells present in tumors after adoptive transfer of the CD8+ T cells was correlated with an increase in surface expression of MHC-I molecules by the tumor cells. We also show that these CD8+ T cells expressed PD-1 and upregulated its ligand PDL-1 on melanoma cells within the tumor. Despite upregulation of this immunosuppressive pathway, efficient IFNγ production in the melanoma microenvironment was found associated with resistance of STAT5CA-expressing CD8+ T cells to inhibition both by PD-1/PDL-1 engagement and by TGFβ1, two main immune regulatory mechanisms hampering the efficiency of immunotherapy in patients.
Insights
Tumors evading immune detection by downregulating MHC-I can be targeted. Engineered CD8+ T cells expressing STAT5CA successfully mediated melanoma regression by enhancing IFNγ production and overcoming immune suppression.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Biology
Background:
- Reduced MHC class I (MHC-I) expression on tumors hinders recognition by CD8+ T cells, posing a challenge for cancer immunotherapy.
- Autochthonous melanomas in TiRP mice, expressing a tumor antigen and RFP reporter, allow for non-invasive growth monitoring.
Purpose of the Study:
- To investigate the efficacy of engineered CD8+ T cells in overcoming MHC-I deficient melanoma.
- To determine if STAT5 activation in CD8+ T cells can enhance anti-tumor immunity and overcome immune evasion mechanisms.
Main Methods:
- Monitoring melanoma development in TiRP mice with varying MHC-I expression.
- Adoptive transfer of CD8+ T cells engineered to express STAT5CA into tumor-bearing mice.
- Assessing T cell migration, IFNγ production, and tumor regression.
- Analyzing MHC-I expression on tumor cells and immune checkpoint molecule (PD-1/PD-L1) expression.
Main Results:
- MHC-I deficient melanomas could be regressed by CD8+ T cells engineered to express STAT5CA, which enhanced IFNγ production.
- IFNγ production by transferred CD8+ T cells correlated with increased surface MHC-I expression on tumor cells.
- Engineered CD8+ T cells exhibited resistance to PD-1/PD-L1 and TGFβ1 mediated immunosuppression.
Conclusions:
- STAT5CA-engineered CD8+ T cells demonstrate potent anti-tumor activity against MHC-I deficient melanoma.
- Enhanced IFNγ production by engineered T cells can restore MHC-I expression and overcome immune evasion.
- These findings suggest a promising strategy for improving cancer immunotherapy by enhancing T cell effector function and resilience.
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