效应器
嵌合抗原受体
T细胞受体
生物
CD19
T细胞
受体
细胞生物学
细胞
细胞疗法
白细胞介素2受体
免疫学
抗原
化学
分子生物学
干细胞
遗传学
免疫系统
作者
Taylor L. Wilson,Hyunjin Kim,Ching‐Heng Chou,Deanna Langfitt,E. Kaitlynn Allen,Jean‐Yves Métais,Mikhail V. Pogorelyy,Pratibha Kottapalli,Sanchit Trivedi,Scott R. Olsen,Timothy Lockey,Catherine Willis,Michael M. Meagher,Brandon M. Triplett,Aimee C. Talleur,Stephen Gottschalk,Jeremy Chase Crawford,Paul G. Thomas
出处
期刊:Cold Spring Harbor Laboratory - medRxiv
日期:2021-12-08
被引量:2
标识
DOI:10.1101/2021.12.05.21266287
摘要
Abstract Current chimeric antigen receptor-modified (CAR) T cell therapy products are evaluated in bulk, without assessment of the possible heterogeneity in effector potential between cells. Conceivably, only a subset of the pre-infusion product differentiates into optimal effectors. We generated a comprehensive single-cell gene expression and T cell receptor (TCR) sequencing dataset using both pre- and post-infusion CD19-CAR T cells from peripheral blood and bone marrow of pediatric patients with B cell acute lymphoblastic leukemia (B-ALL). We identified potent effector post-infusion cells with identical TCRs to a subset of pre-infusion CAR T cells. Effector precursor CAR T cells exhibited a unique transcriptional profile compared to other pre-infusion cells, and the number of effector precursor cells infused correlated with peak CAR T cell expansion. Additionally, we identified an unexpected cell surface phenotype (TIGIT+, CD62L lo , CD27-), conventionally associated with inhibiting effective T cell responses, that we used to successfully enrich for subsequent effector potential. Collectively, these results demonstrate that highly diverse effector potentials are present among cells in pre-infusion cell products, which can be exploited for diagnostic and therapeutic applications. Furthermore, we provide an integrative experimental and analytical framework for elucidating the biological mechanisms underlying effector development in other CAR T cell therapy products.
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