CSF1R inhibition promotes neuroinflammation and behavioral deficits during graft-versus-host disease in mice

神经炎症 小胶质细胞 免疫学 移植物抗宿主病 医学 移植 CX3CR1型 免疫系统 生物 炎症 内科学 趋化因子 趋化因子受体
作者
Rachael C. Adams,Dylan Carter‐Cusack,Genesis T. Llanes,Christopher R. Hunter,Janaki Manoja Vinnakota,Marc J. Ruitenberg,Jana Vukovic,Patrick Bertolino,Kirat K. Chand,Julie A. Wixey,Samuel Nayler,Geoffrey R. Hill,Scott N. Furlan,Robert Zeiser,Kelli P. A. MacDonald
出处
期刊:Blood [American Society of Hematology]
卷期号:143 (10): 912-929 被引量:3
标识
DOI:10.1182/blood.2023022040
摘要

Chronic graft-versus-host disease (cGVHD) remains a significant complication of allogeneic hematopoietic stem cell transplantation. Central nervous system (CNS) involvement is becoming increasingly recognized, in which brain-infiltrating donor major histocompatibility complex (MHC) class II+ bone marrow-derived macrophages (BMDM) drive pathology. BMDM are also mediators of cutaneous and pulmonary cGVHD, and clinical trials assessing the efficacy of antibody blockade of colony-stimulating factor 1 receptor (CSF1R) to deplete macrophages are promising. We hypothesized that CSF1R antibody blockade may also be a useful strategy to prevent/treat CNS cGVHD. Increased blood-brain barrier permeability during acute GVHD (aGVHD) facilitated CNS antibody access and microglia depletion by anti-CSF1R treatment. However, CSF1R blockade early after transplant unexpectedly exacerbated aGVHD neuroinflammation. In established cGVHD, vascular changes and anti-CSF1R efficacy were more limited. Anti-CSF1R-treated mice retained donor BMDM, activated microglia, CD8+ and CD4+ T cells, and local cytokine expression in the brain. These findings were recapitulated in GVHD recipients, in which CSF1R was conditionally depleted in donor CX3CR1+ BMDM. Notably, inhibition of CSF1R signaling after transplant failed to reverse GVHD-induced behavioral changes. Moreover, we observed aberrant behavior in non-GVHD control recipients administered anti-CSF1R blocking antibody and naïve mice lacking CSF1R in CX3CR1+ cells, revealing a novel role for homeostatic microglia and indicating that ongoing clinical trials of CSF1R inhibition should assess neurological adverse events in patients. In contrast, transfer of Ifngr-/- grafts could reduce MHC class II+ BMDM infiltration, resulting in improved neurocognitive function. Our findings highlight unexpected neurological immune toxicity during CSF1R blockade and provide alternative targets for the treatment of cGVHD within the CNS.
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