TRBC1-targeting antibody-drug conjugates for the treatment of T cell cancers.

Nichakawade, Tushar D; Ge, Jiaxin; Mog, Brian J; Lee, Bum Seok; Pearlman, Alexander H; Hwang, Michael S; DiNapoli, Sarah R; Wyhs, Nicolas et al. · Nature · 2024

basic_science · Level V

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Abstract

Antibody and chimeric antigen receptor (CAR) T cell-mediated targeted therapies have improved survival in patients with solid and haematologic malignancies<sup>1-9</sup>. Adults with T cell leukaemias and lymphomas, collectively called T cell cancers, have short survival<sup>10,11</sup> and lack such targeted therapies. Thus, T cell cancers particularly warrant the development of CAR T cells and antibodies to improve patient outcomes. Preclinical studies showed that targeting T cell receptor β-chain constant region 1 (TRBC1) can kill cancerous T cells while preserving sufficient healthy T cells to maintain immunity<sup>12</sup>, making TRBC1 an attractive target to treat T cell cancers. However, the first-in-human clinical trial of anti-TRBC1 CAR T cells reported a low response rate and unexplained loss of anti-TRBC1 CAR T cells<sup>13,14</sup>. Here we demonstrate that CAR T cells are lost due to killing by the patient's normal T cells, reducing their efficacy. To circumvent this issue, we developed an antibody-drug conjugate that could kill TRBC1<sup>+</sup> cancer cells in vitro and cure human T cell cancers in mouse models. The anti-TRBC1 antibody-drug conjugate may provide an optimal format for TRBC1 targeting and produce superior responses in patients with T cell cancers.

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