ArticleClinical and experimental immunology2026
Optimization of a parallel CAR for B-cell lymphoma via ITAM attenuation and target specificity validation.
Article in Clinical and experimental immunology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Second-generation CAR T-cells have transformed the management of B-cell malignancy. However, in vivo functional persistence is often limited, highlighting a key mechanism of treatment failure. We have engineered a parallel (p)CAR platform that delivers dual CD28 and 4-1BB co-stimulation via a co-expressed CAR and chimeric co-stimulatory receptor (CCR). To target CD19, we employed an avidity-optimized FMC63 scFv to direct CAR specificity while utilizing an unmodified FMC63 scFv to target the CCR. Here, we describe the late-stage optimization of this system for Phase 1 clinical evaluation. First, we confirmed that the avidity-optimized scFv lacked off-target specificity. To minimize risk of insertional mutagenesis and immunogenicity, respectively, we transitioned from a gammaretrovirus to a third-generation lentiviral expression vector and removed epitope tags used to discriminate between CAR and CCR expression. Most strikingly, we found that inactivation of immune tyrosine activation motif 2 and 3 within our pCAR prototype markedly potentiated efficacy in xenograft-bearing NSG mice. Mechanistically, this resulted from increased pCAR T-cell functional persistence and organ infiltration, with enhanced local clearance of malignant B-cells. These data set the scene for evaluation of this iteratively honed pCAR candidate in a clinical trial in relapsed/refractory B-cell non-Hodgkin's lymphoma.
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