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Updated: Aug 19, 2026

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Tumor-reactive LAG3+CD8+ T cells diverge into terminally exhausted cells and long-lived memory T cells
Vaishali Aggarwal1,2, Yangxi Sun1,2,3, Chang Liu1,2
1Department of Immunology, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA.
Abstract:
Chronic T cell stimulation in tumors and chronic viral infections leads to T cell exhaustion, a state of dysfunction. As LAG3 marks a prominent subset of exhausted T (TEX) cells in mid-to-late stage tumors, we generated a Lag3 lineage-tracing mouse model (Lag3iCreERT2Rosa26LSL-tdTomato) to fate map and characterize tumor-reactive LAG3+CD8+ TEX cells. In tumor-bearing mice, two distinct tumor-specific tdTomato+ CD8+ T cell subsets stratified by LAG3 surface expression (LAG3+tdT+ and LAG3-tdT+) exhibited contrasting anatomical distributions, functionality and transcriptional profiles, yet shared TCR clonotypes, suggesting a common origin. While LAG3+tdT+ CD8+ TEX cells were restricted to the tumor microenvironment and predominantly terminally exhausted, LAG3-tdT+ CD8+ TEX cells were progenitors that persisted in vivo and are required for anti-tumor immunity against a secondary tumor challenge. This study highlights TEX cell functional heterogeneity and plasticity and characterizes a unique fate-flexible LAG3-tdT+ progenitor TEX subset that drives an anti-tumor memory response, supporting antibody-based therapeutic targeting of LAG3+ TEX cells to unleash anti-tumor immunity and promote durability.
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