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Immune evasion mediated by PD-L1 on glioblastoma-derived extracellular vesicles

Authors :
Jeffrey M. Treiber
Ichiro Nakano
Manfred Westphal
Quazim A. Alayo
Tyler Steed
Leonora Balaj
Hiroshi Nakashima
Franz Ricklefs
Jakub Godlewski
Hakho Lee
Harald Krenzlin
Gordon J. Freeman
Arun K. Rooj
Kyungheon Lee
Ahmad Bakur Mahmoud
Carmela Passaro
Katrin Lamszus
Ralph Weissleder
Clark C. Chen
Bob S. Carter
Scott J. Rodig
Agnieszka Bronisz
Susanne Krasemann
Sean E. Lawler
Josie Hayes
Katherine Yang
E. Antonio Chiocca
Maria C. Speranza
Xandra O. Breakefield
Source :
Science Advances
Publication Year :
2018
Publisher :
American Association for the Advancement of Science (AAAS), 2018.

Abstract

Glioblastoma can suppress immunity by using surface PD-L1 on extracellular vesicles to block T cell receptor–mediated T cell activation.<br />Binding of programmed death ligand-1 (PD-L1) to programmed cell death protein-1 (PD1) leads to cancer immune evasion via inhibition of T cell function. One of the defining characteristics of glioblastoma, a universally fatal brain cancer, is its profound local and systemic immunosuppression. Glioblastoma has also been shown to generate extracellular vesicles (EVs), which may play an important role in tumor progression. We thus hypothesized that glioblastoma EVs may be important mediators of immunosuppression and that PD-L1 could play a role. We show that glioblastoma EVs block T cell activation and proliferation in response to T cell receptor stimulation. PD-L1 was expressed on the surface of some, but not of all, glioblastoma-derived EVs, with the potential to directly bind to PD1. An anti-PD1 receptor blocking antibody significantly reversed the EV-mediated blockade of T cell activation but only when PD-L1 was present on EVs. When glioblastoma PD-L1 was up-regulated by IFN-γ, EVs also showed some PD-L1–dependent inhibition of T cell activation. PD-L1 expression correlated with the mesenchymal transcriptome profile and was anatomically localized in the perinecrotic and pseudopalisading niche of human glioblastoma specimens. PD-L1 DNA was present in circulating EVs from glioblastoma patients where it correlated with tumor volumes of up to 60 cm3. These results suggest that PD-L1 on EVs may be another mechanism for glioblastoma to suppress antitumor immunity and support the potential of EVs as biomarkers in tumor patients.

Details

ISSN :
23752548
Volume :
4
Database :
OpenAIRE
Journal :
Science Advances
Accession number :
edsair.doi.dedup.....23d2659579f32e16357b212b44a70788
Full Text :
https://doi.org/10.1126/sciadv.aar2766