4.5 Article

A novel TCR-like CAR with specificity for PR1/HLA-A2 effectively targets myeloid leukemia in vitro when expressed in human adult peripheral blood and cord blood T cells

期刊

CYTOTHERAPY
卷 18, 期 8, 页码 985-994

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jcyt.2016.05.001

关键词

acute myeloid leukemia (AML); CAR-T cell; h8F4; PR1; UCB

资金

  1. National Cancer Institute (NCI) [CA100632]
  2. NCI [CA148600]
  3. Leukemia and Lymphoma Society [6030-12, P30CA16672, 7262-08]

向作者/读者索取更多资源

Background aims. The PR1 peptide, derived from the leukemia-associated antigens proteinase 3 and neutrophil elastase, is overexpressed on HLA-A2 in acute myeloid leukemia (AML). We developed a T-cell receptor (TCR)-like monoclonal antibody (8F4) that binds the PR1/HLA-A2 complex on the surface of AML cells, efficiently killing them in vitro and eliminating them in preclinical models. Humanized 8F4 (h8F4) with high affinity for the PR1/HLA-A2 epitope was used to construct an h8F4-chimeric antigen receptor (CAR) that was transduced intoT cells to mediate anti-leukemia activity. Methods. Human T cells were transduced to express the PR1/HLA-A2-specific CAR (h8F4-CAR-T cells) containing the scFv of h8F4 fused to the intracellular signaling endo-domain of CD3 zeta chain through the transmembrane and intracellular costimulatory domain of CD28. Results. Adult human normal peripheral blood (PB) T cells were efficiently transduced with the h8F4CAR construct and predominantly displayed an effector memory phenotype with a minor population (12%) of central memory cells in vitro. Umbilical cord blood (UCB) T cells could also be efficiently transduced with the h8F4-CAR. The PB and UCB-derived h8F4-CAR-T cells specifically recognized the PR1/HLA-A2 complex and were capable of killing leukemia cell lines and primary AML blasts in an HLA-A2-dependent manner. Conclusions. Human adult PB and UCB-derived T cells expressing a CAR derived from the TCR-like 8F4 antibody rapidly and efficiently kill AML in vitro. Our data could lead to a new treatment paradigm for AML in which targeting leukemia stem cells could transfer long-term immunity to protect against relapse.

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