Dual checkpoint blockade of glioblastoma with Anti-PD-1 and Anti-LAG-3 promotes expansion of tumor-reactive T cell clones along a unique pathway of differentiation
Wang, M.; Fu, Y.; Bom, S.; Ning, Y.; Matthews, D.; Zhang, M.; Lucas, C.-H.; Choi, J.; Zeng, Z.; Zhang, T.; Ji, H.; Yegnasubramanian, V.; Weingart, J.; Bettegowda, C.; Smith, K. N.; Lim, M.; Pardoll, D.; Zhang, N. R.; Jackson, C.
Show abstract
IDH-wildtype grade IV glioblastoma is the most aggressive adult primary brain tumor and remains refractory to anti-PD-1 monotherapy despite evidence of limited tumor-specific T cell induction. To determine the impact of immune checkpoint inhibitors (ICIs) on glioblastoma T cell transcriptional landscape and repertoire, we conducted paired single-cell RNA sequencing (scRNA-seq) and T cell receptor sequencing (TCR-seq) of tumor-infiltrating lymphocytes (TILs) from patients with untreated, newly diagnosed glioblastoma and from recurrent glioblastoma treated with dual checkpoint blockade targeting PD-1 and LAG-3. Using a validated transcriptional signature, we found that predicted tumor-reactive T cells (TRC) in untreated glioblastomas reside almost exclusively in a clonally expanded GZMKhi population with developmental plasticity, affording them the potential to differentiate into both tissue-resident and terminal effector T cells. Dual ICI therapy induced substantial clonal remodeling, characterized by the recruitment of new TRC from the periphery into the tumor microenvironment (TME) and differentiation into transitional effectors and ultimately terminal effectors along a gradient characterized by simultaneous acquisition of cytotoxic and exhaustion genes, regulated by specific transcriptional, metabolic, and epigenetic programs. Longitudinal clonal tracking in peripheral blood confirmed that with ICI treatment, most TRC expand transiently in circulation prior to tumor infiltration, with peripherally derived clones becoming the major contributor to the GZMKhi TRC that further expand in the tumor. Our study provides the first comprehensive map of T cell clonal dynamics and differentiation in glioblastoma following dual ICIs and highlights a potential mechanism of immune activation and peripheral recruitment of TRC in glioblastoma not previously described. Our results suggest that therapeutic strategies to sustain these GZMKhi early effector and transitional effector T cells may further enhance ICI therapeutic efficacy in glioblastoma.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- LAG-3 blockade reactivates the CD8+ T cell expansion program to re-expand contracted clones in the tumor 98%
- Agonistic CD40 antibody therapy induces tertiary lymphoid structures but impairs the response to immune checkpoint blockade in glioma 98%
- Time-, tissue- and treatment-associated heterogeneity in tumour-residing migratory DCs 98%
Similar papers in this journal
- Spatial analysis of human lung cancer reveals organized immune hubs enriched for stem-like CD8 T cells and associated with immunotherapy response 98%
- Repertoire analyses reveal TCR sequence features that influence T cell fate 97%
- NFAT5 induction by the tumor microenvironment enforces CD8 T cell exhaustion 97%
Similar papers in this journal
Similar papers in this journal
- Single cell view of tumor microenvironment gradients in pleural mesothelioma 96%
- PTP1B is an intracellular checkpoint that limits T cell and CAR T cell anti-tumor immunity 96%
- Multimodal Spatial Profiling Reveals Immune Suppression and Microenvironment Remodeling in Fallopian Tube Precursors to High-Grade Serous Ovarian Carcinoma 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.