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A Syngeneic Mouse B-Cell Lymphoma Model for Pre-Clinical Evaluation of CD19 CAR T Cells
Published on: October 16, 2018
Trispecific CD19-CD20-CD22-targeting duoCAR-T cells eliminate antigen-heterogeneous B cell tumors in preclinical
Dina Schneider1, Ying Xiong2, Darong Wu2
1Lentigen, a Miltenyi Biotec Company, Gaithersburg, MD 20878, USA. boro.dropulic@caringcross.org dina.schneider@miltenyi.com.
Abstract:
A substantial number of patients with leukemia and lymphoma treated with anti-CD19 or anti-CD22 monoCAR-T cell therapy relapse because of antigen loss or down-regulation. We hypothesized that B cell tumor antigen escape may be overcome by a chimeric antigen receptor (CAR) design that simultaneously targets three B cell leukemia antigens. We engineered trispecific duoCAR-T cells with lentiviral vectors encoding two CAR open reading frames that target CD19, CD20, and CD22. The duoCARs were composed of a CAR with a tandem CD19- and CD20-targeting binder, linked by the P2A self-cleaving peptide to a second CAR targeting CD22. Multiple combinations of intracellular T cell signaling motifs were evaluated. The most potent duoCAR architectures included those with ICOS, OX40, or CD27 signaling domains rather than those from CD28 or 4-1BB. We identified four optimal binder and signaling combinations that potently rejected xenografted leukemia and lymphoma tumors in vivo. Moreover, in mice bearing a mixture of B cell lymphoma lines composed of parental triple-positive cells, CD19-negative, CD20-negative, and CD22-negative variants, only the trispecific duoCAR-T cells rapidly and efficiently rejected the tumors. Each of the monoCAR-T cells failed to prevent tumor progression. Analysis of intracellular signaling profiles demonstrates that the distinct signaling of the intracellular domains used may contribute to these differential effects. Multispecific duoCAR-T cells are a promising strategy to prevent antigen loss-mediated relapse or the down-regulation of target antigen in patients with B cell malignancies.
Insights
Trispecific duoCAR-T cells targeting CD19, CD20, and CD22 overcome antigen loss in B cell malignancies. This novel approach shows potent tumor rejection, preventing relapse in leukemia and lymphoma patients.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Relapse in B cell malignancies after CAR-T therapy often occurs due to antigen loss.
- Current monoCAR-T therapies targeting single antigens (CD19 or CD22) are limited by antigen escape.
Purpose of the Study:
- To engineer trispecific CAR-T cells (duoCAR-T) simultaneously targeting CD19, CD20, and CD22.
- To overcome antigen loss-mediated relapse in B cell leukemia and lymphoma.
Main Methods:
- Engineered trispecific duoCAR-T cells using lentiviral vectors with tandem CD19/CD20 and CD22 targeting CARs.
- Evaluated various intracellular T cell signaling motifs (ICOS, OX40, CD27 vs. CD28, 4-1BB).
- Assessed efficacy in xenograft models with mixed B cell lymphoma lines exhibiting antigen-negative variants.
Main Results:
- Identified four optimal duoCAR architectures with potent anti-tumor activity in vivo.
- Trispecific duoCAR-T cells effectively rejected tumors composed of mixed antigen-positive and negative B cell lymphoma variants.
- MonoCAR-T cells failed to prevent tumor progression in antigen-loss models.
Conclusions:
- Trispecific duoCAR-T cells represent a promising strategy to prevent relapse caused by antigen downregulation.
- Specific intracellular signaling domains (ICOS, OX40, CD27) enhance duoCAR-T cell efficacy.
- Multispecific CAR-T cell design is crucial for overcoming antigen escape in B cell malignancies.
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