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Decade-long remissions of leukemia sustained by the persistence of activated CD4+ CAR T-cells

Melenhorst, J. J.; Chen, G. M.; Wang, M.; Porter, D. . L.; Gao, P.; Bandyopadhyay, S.; Pruteanu-Malinici, I.; Nobles, C. L.; Maji, S.; Frey, N. V.; Gill, S. I.; Tian, L.; Kulikovskaya, I.; Gupta, M.; Davis, M. M.; Fraietta, J. A.; Brogdon, J. L.; Young, R. M.; Ambrose, D. E.; Chew, A.; Levine, B. L.; Siegel, D. L.; Alanio, C.; Wherry, E. J.; Bushman, F. D.; Lacey, S. F.; Tan, K.; June, C. H.

2021-05-07 immunology
10.1101/2021.05.07.443194 bioRxiv
Show abstract

The adoptive transfer of T lymphocytes reprogrammed to target tumor cells has demonstrated significant potential in various malignancies. However, little is known about the long-term potential and the clonal stability of the infused cells. Here, we studied the longest persisting CD19-redirected chimeric antigen receptor (CAR) T cells to date in two chronic lymphocytic leukemia (CLL) patients who achieved a complete remission in 2010. CAR T-cells were still detectable up to 10+ years post-infusion, with sustained remission in both patients. Surprisingly, a prominent, highly activated CD4+ population developed in both patients during the years post-infusion, dominating the CAR T-cell population at the late time points. This transition was reflected in the stabilization of the clonal make-up of CAR T-cells with a repertoire dominated by few clones. Single cell multi-omics profiling via Cellular Indexing of Transcriptomes and Epitopes by Sequencing (CITE-Seq) with TCR sequencing of CAR T-cells obtained 9.3 years post-infusion demonstrated that these long-persisting CD4+ CAR T-cells exhibited cytotoxic characteristics along with strong evidence of ongoing functional activation and proliferation. Our data provide novel insight into the CAR T-cell characteristics associated with long-term remission in leukemia.

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