• Home
  • Publications
  • Activation priming and cytokine polyfunctionality modulate the enhanced functionality of low-affinity CD19 CAR T cells

Activation priming and cytokine polyfunctionality modulate the enhanced functionality of low-affinity CD19 CAR T cells

Authors:

  • I. Michelozzi, E. Gomez-Castaneda, R. V. C. Pohle, F. Cardoso Rodriguez, J. Sufi, P. Puigdevall Costa, M. Subramaniyam, E. Kirtsios, A. Eddaoudi, S. W. Wu, A. Guvenel, J. Fisher, S. Ghorashian, M. A. Pule, C. J. Tape, S. Castellano, P. J. Amrolia,
  • Giustacchini A.

Abstract:

We recently described a low-affinity second-generation CD19 chimeric antigen receptor (CAR) CAT that showed enhanced expansion, cytotoxicity, and antitumor efficacy compared with the high-affinity (FMC63-based) CAR used in tisagenlecleucel, in preclinical models. Furthermore, CAT demonstrated an excellent toxicity profile, enhanced in vivo expansion, and long-term persistence in a phase 1 clinical study. To understand the molecular mechanisms behind these properties of CAT CAR T cells, we performed a systematic in vitro characterization of the transcriptomic (RNA sequencing) and protein (cytometry by time of flight) changes occurring in T cells expressing low-affinity vs high-affinity CD19 CARs following stimulation with CD19-expressing cells. Our results show that CAT CAR T cells exhibit enhanced activation to CD19 stimulation and a distinct transcriptomic and protein profile, with increased activation and cytokine polyfunctionality compared with FMC63 CAR T cells. We demonstrate that the enhanced functionality of low-affinity CAT CAR T cells is a consequence of an antigen-dependent priming induced by residual CD19-expressing B cells present in the manufacture.

  • Facebook
  • Twitter
  • LinkedIn
  • Email

Links: