The solid tumor microenvironment changes the hierarchy of CD155 and CD112 receptors, shaping checkpoint blockade outcome
Carannante, V.; Olofsson, K.; Zhang, H.; Sandström, N.; Fontana, J.; Toullec, D.; Turyasingura, G.; Hell, B.; Wagner, A. K.; Sandoz, P. A.; Van Ooijen, H.; Lundqvist, A.; Viklund, M.; Önfelt, B.
Show abstract
Reproducing a physiologically relevant tumor microenvironment in vitro is essential for developing effective immunotherapeutic treatments. By integrating the use of combinatorial receptor blockade and organoid models we provide a deep functional understanding of CD155 and CD112 receptors in solid tumors and their impact on cellular immunotherapy and infiltration. CD226 showed plasticity in response to the environment, being able to switch between CD155 and CD112 depending on the ligand availability. In addition, CD226 drove NK cell infiltration into tumor tissues via CD155 and CD112 ligation, with CD226-CD112 interaction specifically promoting migration from the periphery to the core. Downregulation of CD155 and TIGIT induced by the tumor microenvironment and previous drug exposure reduced the long-term efficacy of TIGIT blockade. Taken together, our findings point towards using CD112R blockade in primary tumors to simultaneously enhance NK cell killing activity and promote infiltration into the tumor core via CD226 and CD112 interaction. ONE SENTENCE SUMMARYTumors shape the hierarchy of CD155-CD112 receptors, reducing TIGIT blockade efficacy, while CD226 drives NK infiltration and shows binding plasticity
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Intratumor Childhood Vaccine-Specific CD4+ T cell Recall Coordinates Antitumor CD8+ T cells and Eosinophils 95%
- Deep immune profiling reveals targetable mechanisms of immune evasion in checkpoint blockade-refractory glioblastoma 94%
- Distinct sets of molecular characteristics define tumor-rejecting neoantigens 94%
Similar papers in this journal
- Neoantigen Cancer Vaccines and Different Immune Checkpoint Therapies Each Utilize Both Converging and Distinct Mechanisms that in Combination Enable Synergistic Therapeutic Efficacy 95%
- Cancer-cell-derived cGAMP limits the activity of tumor-associated CD8+ T cells 94%
- Stromal remodeling regulates dendritic cell abundance and activity in the tumor microenvironment 94%
Similar papers in this journal
- Rapid establishment of a tumor-retained state curtails the contribution of conventional NK cells to anti-tumor immunity in solid cancers 94%
- Single-cell profiling guided combinatorial immunotherapy for fast-evolving CDK4/6 inhibitor resistant HER2-positive breast cancer 94%
- Immune cell topography predicts response to PD-1 blockade in cutaneous T cell lymphoma 94%
Similar papers in this journal
Similar papers in this journal
- Microenvironmental correlates of immune checkpoint inhibitor response in human melanoma brain metastases revealed by T cell receptor and single-cell RNA sequencing 94%
- Single-cell clonal lineage tracing identifies the transcriptional program controlling the cell fate decisions by neoantigen-specific CD8+ T cells 93%
- Lung cancer-intrinsic SOX2 expression mediates resistance to checkpoint blockade therapy by inducing Treg-dependent CD8+ T cell exclusion 93%
"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.