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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Anti-PD-1 cancer immunotherapy induces central nervous system immune-related adverse events by microglia activation
Janaki Manoja Vinnakota1,2, Rachael C Adams1,3,4, Dimitrios Athanassopoulos1
1Department of Medicine I-Medical Center, Faculty of Medicine, University of Freiburg, 79106 Freiburg, Germany.
Abstract:
Cancer treatment with anti-PD-1 immunotherapy can cause central nervous system immune-related adverse events (CNS-irAEs). The role of microglia in anti-PD-1 immunotherapy-induced CNS-irAEs is unclear. We found that anti-PD-1 treatment of mice caused morphological signs of activation and major histocompatibility complex (MHC) class II up-regulation on microglia. Functionally, anti-PD-1 treatment induced neurocognitive deficits in mice, independent of T cells, B cells, and natural killer cells. Instead, we found that microglia mediated these CNS-irAEs. Single-cell RNA sequencing revealed major transcriptional changes in microglia upon anti-PD-1 treatment. The anti-PD-1 effects were mediated by anti-PD-1 antibodies interacting directly with microglia and were not secondary to peripheral T cell activation. Using a proteomics approach, we identified spleen tyrosine kinase (Syk) as a potential target in activated microglia upon anti-PD-1 treatment. Syk inhibition reduced microglia activation and improved neurocognitive function without impairing anti-melanoma effects. Moreover, we analyzed CNS tissue from a patient cohort that had received anti-PD-1 treatment. Imaging mass cytometry revealed that anti-PD-1 treatment of patients was associated with increased surface marker expression indicative of microglia activation. In summary, we identified a disease-promoting role for microglia in CNS-irAEs driven by Syk and provide an inhibitor-based approach to interfere with this complication after anti-PD-1 immunotherapy.
Insights
Anti-PD-1 immunotherapy can trigger central nervous system immune-related adverse events (CNS-irAEs). This study reveals microglia mediate these effects via spleen tyrosine kinase (Syk), offering a potential therapeutic target.
Area of Science:
- Neuroimmunology
- Cancer Immunotherapy
- Oncology
Background:
- Anti-PD-1 immunotherapy is a vital cancer treatment.
- Central nervous system immune-related adverse events (CNS-irAEs) are a known complication.
- The specific role of microglia in CNS-irAEs remains poorly understood.
Purpose of the Study:
- To investigate the role of microglia in anti-PD-1 immunotherapy-induced CNS-irAEs.
- To identify molecular mechanisms underlying microglia-mediated CNS-irAEs.
- To explore potential therapeutic strategies targeting microglia activation.
Main Methods:
- Utilized mouse models of anti-PD-1 treatment.
- Performed single-cell RNA sequencing and proteomics.
- Analyzed human patient CNS tissue using imaging mass cytometry.
- Investigated the effect of spleen tyrosine kinase (Syk) inhibition.
Main Results:
- Anti-PD-1 treatment activated microglia and induced neurocognitive deficits in mice, independent of adaptive immunity.
- Microglia directly mediated CNS-irAEs through antibody interaction.
- Syk was identified as a key mediator in activated microglia.
- Syk inhibition ameliorated neurocognitive deficits and microglia activation without compromising anti-tumor effects.
- Human patient data showed increased microglia activation markers post-anti-PD-1 therapy.
Conclusions:
- Microglia play a critical, disease-promoting role in anti-PD-1-induced CNS-irAEs.
- Syk signaling in microglia is a key driver of these neurotoxic effects.
- Targeting Syk in microglia presents a promising therapeutic avenue to mitigate CNS-irAEs during anti-PD-1 immunotherapy.
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