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Modeling anti-CD19 CAR T cell therapy in humanized mice with human immunity and autologous leukemia
Chun-Hui Jin1, Jinxing Xia2, Sarwish Rafiq3
1Institute of Translational Medicine, The First Hospital, Jilin University, Changchun, China; International Center of Future Science, Jilin University, Changchun, China; Columbia Center for Translational Immunology, Department of Medicine, Columbia University College of Physicians and Surgeons, New York, NY, United States.
Background:
Adoptive immunotherapy using T cells expressing chimeric antigen receptors (CARs) targeting CD19 has produced remarkable clinical outcomes. However, much of the mechanisms of action, such as the development of memory responses and sources of immune cytokines, remain elusive largely due to the challenge of characterizing human CAR T cell function in vivo. The lack of a suitable in vivo model also hinders the development of new CAR T cell therapies.
Methods:
We established a humanized mouse (hu-mouse) model with a functional human immune system and genetically-matched (autologous) primary acute B-lymphoblastic leukemia (B-ALL) that permits modeling of CD19-targeted CAR T cell therapy in immunocompetent hosts without allogeneic or xenogeneic immune responses.
Findings:
Anti-CD19 CAR T cells were detected in blood of leukemic hu-mice with kinetics and levels similar to those seen in patients receiving CAR T cell therapy. The levels of CAR T cells were correlated inversely with the burden of leukemia cells and positively with the survival times in anti-CD19 CAR T cell-treated leukemic hu-mice. Infusion of anti-CD19 CAR T cells also resulted in rapid production of T cell- and monocyte/macrophage-derived cytokines and an increase in frequency of regulatory T cells as reported in clinical studies.
Interpretation:
These results provide a proof-of-principle that this novel preclinical model has the potential to be used to model human CAR T cell therapy and facilitate the design of new CARs with improved antitumor activity.
Insights
A new humanized mouse model allows researchers to study chimeric antigen receptor (CAR) T cell therapy for acute B-lymphoblastic leukemia (B-ALL) in vivo. This model mimics patient responses, aiding the development of more effective CAR T cell treatments.
Area of Science:
- Immunology
- Oncology
- Cell Therapy
Background:
- Chimeric antigen receptor (CAR) T cell therapy targeting CD19 shows promise in treating B-cell malignancies.
- Understanding CAR T cell mechanisms, like memory responses and cytokine production, is crucial but challenging in vivo.
- Existing models limit the study of human CAR T cell function and the development of novel therapies.
Purpose of the Study:
- To establish a preclinical model for evaluating CD19-targeted CAR T cell therapy.
- To investigate the in vivo behavior and efficacy of CAR T cells in a humanized setting.
- To facilitate the design of improved CAR T cell therapies.
Main Methods:
- Development of a humanized mouse model with a functional human immune system.
- Engraftment of genetically-matched (autologous) primary acute B-lymphoblastic leukemia (B-ALL) in the humanized mice.
- Administration of anti-CD19 CAR T cells to leukemic humanized mice.
Main Results:
- CAR T cells were detected in leukemic humanized mice, mirroring patient kinetics and levels.
- CAR T cell levels correlated inversely with leukemia burden and positively with survival.
- CAR T cell infusion induced cytokine production and increased regulatory T cells, consistent with clinical observations.
Conclusions:
- The developed humanized mouse model serves as a proof-of-principle for studying human CAR T cell therapy.
- This model can advance the design of novel CARs with enhanced antitumor activity.
- It facilitates a deeper understanding of CAR T cell mechanisms in vivo.
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