Open AccessMedicine

C. Fernández de Larrea, M. Staehr, Andrea V. Lopez, Khong Y. Ng, Yunxin Chen, W. D. Godfrey, Terence J. Purdon, V. Ponomarev, H. Wendel, R. Brentjens, Eric L. Smith

2020.7.6Blood Cancer Discovery

DOI: 10.1158/2643-3230.bcd-20-0020

tlooto Summary

It is demonstrated that simultaneous targeting of an additional antigen—here, G protein-coupled receptor class-C group-C group-5 member-D (GPRC5D)—can prevent BCMA escape–mediated relapse in a model of MM.

Abstract

CAR T-cell therapy for multiple myeloma (MM) targeting B-cell maturation antigen (TNFRSF17; BCMA) induces high overall response rates; however, relapse occurs commonly. Implicated in relapse is a reservoir of MM if cells lacking sufficient BCMA surface expression (antigen escape). We demonstrate that simultaneous targeting of an additional antigen-here, G protein-coupled receptor class-C group-5 member-D (GPRC5D)-can prevent BCMA escape-mediated relapse in a model of MM. To identify an optimal approach, we compare subtherapeutic doses of different forms of dual-targeted cellular therapy. These include (1) parallel-produced and pooled mono-targeted CAR T-cells, (2) bicistronic constructs expressing distinct CARs from a single vector, and (3) a dual-scFv "single-stalk" CAR design. When targeting BCMA-negative disease, bicistronic and pooled approaches had the highest efficacy, whereas for dual-antigen-expressing disease, the bicistronic approach was more efficacious than the pooled approach. Mechanistically, expressing two CARs on a single cell enhanced the strength of CAR T-cell/target cell interactions.

Citation format

LARREA, C. Fernández de, et al. Defining an optimal dual-targeted CAR t-cell therapy approach simultaneously targeting BCMA and GPRC5D to prevent BCMA escape–driven relapse in multiple myeloma. Blood Cancer Discovery, 2020, 1: 146–154.