P957: AN INDIRECT COMPARISON OF ELRANATAMAB’S (ELRA) OBJECTIVE RESPONSE RATE (ORR) FROM MAGNETISMM-3 (MM-3) VERSUS REAL-WORLD EXTERNAL CONTROL ARMS IN TRIPLE-CLASS REFRACTORY (TCR) MULTIPLE MYELOMA (MM)

P957:MAGNETISMM-3 (MM-3) 研究中 ELRANATAMAB (ELRA) 客观缓解率 (ORR) 与真实世界外部对照组在三级难治性 (TCR) 多发性骨髓瘤 (MM) 中的间接比较

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Abstract

Neuroinflammation is a recognized complication of immunotherapeutic approaches such as immune checkpoint inhibitor treatment, chimeric antigen receptor therapy, and graft versus host disease (GVHD) occurring after allogeneic hematopoietic stem cell transplantation. While T cells and inflammatory cytokines play a role in this process, the precise interplay between the adaptive and innate arms of the immune system that propagates inflammation in the central nervous system remains incompletely understood. Using a murine model of GVHD, we demonstrate that type 2 cannabinoid receptor (CB2R) signaling plays a critical role in the pathophysiology of neuroinflammation. In these studies, we identify that CB2R expression on microglial cells induces an activated inflammatory phenotype which potentiates the accumulation of donor-derived proinflammatory T cells, regulates chemokine gene regulatory networks, and promotes neuronal cell death. Pharmacological targeting of this receptor with a brain penetrant CB2R inverse agonist/antagonist selectively reduces neuroinflammation without deleteriously affecting systemic GVHD severity. Thus, these findings delineate a therapeutically targetable neuroinflammatory pathway and has implications for the attenuation of neurotoxicity after GVHD and potentially other T cell-based immunotherapeutic approaches.

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