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Functional Characterization of Regulatory Macrophages That Inhibit Graft-reactive Immunity
Published on: June 7, 2017
Monocyte Galectin-9 is associated with CD8⁺ T-cell dysfunction and early relapse after haploidentical hematopoietic
Weiqian Dai1, Xueying Zhao1, Linjie Wu1
1State Key Laboratory of Experimental Hematology, National Clinical Research Center for Blood Diseases, Haihe Laboratory of Cell Ecosystem, Institute of Hematology and Blood Diseases Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Tianjin, China.
Background:
Acute myeloid leukemia (AML) is the most common acute leukemia in adults. Haploidentical hematopoietic stem cell transplantation (haplo-HSCT) stands as a leading curative approach for AML in China. However, relapse remains a major challenge for patient survival, often occurring within six months post-transplant and associated with a five-year mortality rate of up to 80%. Here, we characterized early immune reconstitution after haplo-HSCT and investigated immune features associated with early relapse (ER) in AML.
Methods:
We analyzed two clinical cohorts: patients with AML (n = 44) and aplastic anemia (AA; n = 38), and AML patients with continuous complete remission (CCR, n = 55) versus ER (n = 38). Single-cell RNA sequencing was performed on longitudinal peripheral blood and bone marrow samples from AML and AA patients (n = 3 and 4), while single-cell RNA/TCR sequencing was performed on bone marrow samples from CCR and ER patients (n = 3 each). Flow cytometry assessed monocyte Galectin-9 surface expression and CD8⁺ T-cell phenotypes. Galectin-9-associated monocyte-T-cell interactions and the effects of the TIM-3 inhibitor MG-T-19 were evaluated in vitro and in a murine AML model.
Results:
AML and AA patients showed different patterns of early immune reconstitution after haplo-HSCT, including differences in monocyte and T-cell recovery. Within AML, ER patients exhibited increased T-cell representation but reduced basal TNF-α expression and altered exhaustion-associated CD8⁺ T-cell phenotypes before relapse. Monocytes represented a prominent Galectin-9-expressing compartment, and surface Galectin-9 on monocytes was elevated in ER compared with CCR patients as early as day 30 post-transplantation. Exogenous Galectin-9 induced dose-dependent functional and exhaustion-associated changes in CD8⁺ T cells, while Galectin-9-high IFN-conditioned monocytes impaired CD8⁺ T-cell responses in vitro. MG-T-19 partially reversed these alterations, increased CD8⁺ T-cell TNF-α production, and enhanced leukemia-cell apoptosis. In the MLL-AF9 murine AML model, MG-T-19 reduced leukemia burden and prolonged survival.
Conclusions:
Increased monocyte Galectin-9 during early immune reconstitution is associated with subsequent early relapse and CD8⁺ T-cell dysfunction after haplo-HSCT. Further Galectin-9-specific mechanistic studies and prospective clinical validation are warranted to establish its causal relevance and potential utility as an early relapse biomarker.
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