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Updated: Jan 14, 2026

A Syngeneic Mouse B-Cell Lymphoma Model for Pre-Clinical Evaluation of CD19 CAR T Cells
Published on: October 16, 2018
Acquisition of an immunosuppressive microenvironment after anti-CD19 CAR T-cell therapy is associated with T-cell
Marianna Ponzo1,2, Lorenzo Drufuca3,4, Chiara Buracchi5
1Tettamanti Center, Fondazione IRCCS San Gerardo dei Tintori, Monza, Italy.
Background:
Chimeric antigen receptor (CAR) T cells targeting CD19 induce durable responses in B-cell acute lymphoblastic leukemia (B-ALL). However, the contribution of the tumor microenvironment to the therapeutic response after CAR T-cell treatment remains incompletely understood.
Methods:
We performed single-cell RNA sequencing and spectral flow cytometry-based analyses of bone marrow-resident immune cells from B-ALL patients before and after CAR T-cell treatment.
Results:
We observed profound changes in the microenvironment in response to CAR T-cell-mediated inflammation, including an increase in myeloid cells. Significant induction of the interferon response, hypoxia, and TGF-β signaling was accompanied by expansion of myeloid-derived suppressor cells (MDSCs) and endogenous exhausted CD8+ T cells. PD-1 expression in endogenous T cells post-treatment was associated with a lack of durable response in the cohort of patients analyzed. Further, we revealed that HIF-1α, VEGF, and TGFBR2 are key players in the intercellular communication between CAR T cells and the immune niche, potentially driving widespread T-cell dysfunction. Infusion of anti-CD19 CAR T cells led to increased accumulation of human MDSCs, exacerbation of a hypoxic environment and T-cell exhaustion in hematopoietic stem/progenitor cell-humanized mice bearing a human tumor.
Conclusions:
In conclusion, CAR T-cell-mediated myeloid activation is associated with pathways of immune dysregulation that may antagonize the effects of therapy.
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