Glioblastoma and other intracranial tumors elicit systemic sympathetic hyperactivity that limits immunotherapeutic responses
Lorrey, S. J.; Wachsmuth, L.; Finlay, J.; Neff, C.; Ayasoufi, K.; Waibl Polania, J.; Hoyt-Miggelbrink, A.; Price, M.; Rein, L.; Dell, S.; Reesman, R.; Cui, X.; Hawley, A.; Lerner, E.; Wilkinson, D.; Srinivasan, E.; Walsh, K.; Patel, A.; Ostrom, Q. T.; Fecci, P. E.
Show abstract
Intracranial tumors present unique challenges for immunotherapy. These can include both local and systemic modes of immune suppression whose mechanistic underpinnings are incompletely understood. Here, we reveal that tumors harbored intracranially elicit systemic increases to circulating catecholamine levels, with the resultant chronic sympathetic hyperactivity driving T cell dysfunction and limiting immunotherapeutic success. Conversely, treatment with {beta}-adrenergic blockade increases NF-{kappa}B activity in immune cells, restores T cell polyfunctionality, modifies the tumor microenvironment, and licenses immune-based therapies in murine models of glioblastoma (GBM) to extend survival. Extended survival is also observed in GBM patients having received {beta}-adrenergic blockade, as well as in patients with melanoma and lung cancer brain metastases who received {beta}-blockade alongside concomitant immune checkpoint inhibition. While {beta}-blockade also impacts outcomes in the setting of extracranial disease, the benefits are especially pronounced in patients harboring intracranial disease burdens. These data suggest that sympathetic hyperactivity facilitates systemic immune dysfunction in the setting of intracranial tumors, specifically and advance a role for {beta}-adrenergic blockade in licensing immunotherapeutic responses within the intracranial compartment.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- GD2-targeting CAR-T cells enhanced by transgenic IL-15 expression are an effective and clinically feasible therapy for glioblastoma 97%
- Deep immune profiling reveals targetable mechanisms of immune evasion in checkpoint blockade-refractory glioblastoma 97%
- Oncolytic HSV-IL27 expression improves CD8 T cell function and therapeutic activity in syngeneic glioma models 97%
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 97%
- The conventional dendritic cell 1 subset primes CD8+ T cells and traffics tumor antigen to drive anti-tumor immunity in the brain 96%
- Holistic Characterization of Tumor Monocyte-to-Macrophage Differentiation Integrates Distinct Immune Phenotypes in Kidney Cancer 95%
Similar papers in this journal
- Distinct tumor immune microenvironmental (TIME) landscapes drive divergent immunotherapy responses in glioblastoma 96%
- Stable isotope tracing in human plasma-like medium reveals metabolic and immune modulation of the glioblastoma microenvironment 96%
- Spatial profiling of longitudinal glioblastoma reveals consistent changes in cellular architecture, post-treatment 96%
Similar papers in this journal
- Tumor cell-derived spermidine promotes a pro-tumorigenic immune microenvironment in glioblastoma via CD8+ T cell inhibition 98%
- SLIT2-ROBO signaling in tumor-associated microglia/macrophages drives glioblastoma immunosuppression and vascular dysmorphia 97%
- IL-7-mediated expansion of autologous lymphocytes increases CD8+ VLA-4 expression and accumulation in glioblastoma models 97%
"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.