Cell-surface antigen profiling of pediatric brain tumors: B7-H3 is consistently expressed and can be targeted via local or systemic CAR T-cell delivery

Author:

Haydar Dalia1ORCID,Houke Haley1,Chiang Jason2,Yi Zhongzhen1,Odé Zelda1,Caldwell Kenneth1,Zhu Xiaoyan3,Mercer Kimberly S4,Stripay Jennifer L4,Shaw Timothy I5,Vogel Peter2,DeRenzo Christopher1,Baker Suzanne J3,Roussel Martine F4,Gottschalk Stephen1,Krenciute Giedre1ORCID

Affiliation:

1. Department of Bone Marrow Transplantation & Cellular Therapy, St. Jude Children’s Research Hospital, Memphis, Tennessee

2. Department of Pathology, St. Jude Children’s Research Hospital, Memphis, Tennessee

3. Department of Developmental Neurobiology, St. Jude Children’s Research Hospital, Memphis, Tennessee

4. Department of Tumor Cell Biology, St. Jude Children’s Research Hospital, Memphis, Tennessee

5. Department of Computational Biology, St. Jude Children’s Research Hospital, Memphis, Tennessee

Abstract

Abstract Background Immunotherapy with chimeric antigen receptor (CAR) T cells is actively being explored for pediatric brain tumors in preclinical models and early phase clinical studies. At present, it is unclear which CAR target antigens are consistently expressed across different pediatric brain tumor types. In addition, the extent of HLA class I expression is unknown, which is critical for tumor recognition by conventional αβTCR T cells. Methods We profiled 49 low- and high-grade pediatric brain tumor patient-derived orthotopic xenografts (PDOX) by flow analysis for the expression of 5 CAR targets (B7-H3, GD2, IL-13Rα2, EphA2, and HER2), and HLA class I. In addition, we generated B7-H3-CAR T cells and evaluated their antitumor activity in vitro and in vivo. Results We established an expression hierarchy for the analyzed antigens (B7-H3 = GD2 >> IL-13Rα2 > HER2 = EphA2) and demonstrated that antigen expression is heterogenous. All high-grade gliomas expressed HLA class I, but only 57.1% of other tumor subtypes had detectable expression. We then selected B7-H3 as a target for CAR T-cell therapy. B7-H3-CAR T cells recognized tumor cells in an antigen-dependent fashion. Local or systemic administration of B7-H3-CAR T cells induced tumor regression in PDOX and immunocompetent murine glioma models resulting in a significant survival advantage. Conclusions Our study highlights the importance of studying target antigen and HLA class I expression in PDOX samples for the future design of immunotherapies. In addition, our results support active preclinical and clinical exploration of B7-H3-targeted CAR T-cell therapies for a broad spectrum of pediatric brain tumors.

Funder

National Institutes of Health

NIH

National Cancer Institute

NCI/NIH

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Clinical Neurology,Oncology

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