4.7 Article

Low-Dose Radiation Conditioning Enables CAR T Cells to Mitigate Antigen Escape

Journal

MOLECULAR THERAPY
Volume 26, Issue 11, Pages 2542-2552

Publisher

CELL PRESS
DOI: 10.1016/j.ymthe.2018.09.008

Keywords

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Funding

  1. Molecular Cytology Core Facility [P30 CA008748 S5, U54 OD020355-01]
  2. NCI Cancer Center support grant (CCSG) [P30 CA08748]
  3. Geoffrey Beene Research Foundation

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CD19 chimeric antigen receptors (CARs) have demonstrated great efficacy against a range of B cell malignancies. However, antigen escape and, more generally, heterogeneous antigen expression pose a challenge to applying CAR therapy to a wide range of cancers. We find that low-dose radiation sensitizes tumor cells to immune rejection by locally activated CAR T cells. In a model of pancreatic adenocarcinoma heterogeneously expressing sialyl Lewis-A (sLeA), we show that not only sLeA(+) but also sLeA(-) tumor cells exposed to low-dose radiation become susceptible to CAR therapy, reducing antigen-negative tumor relapse. RNA sequencing analysis of low-dose radiation-exposed tumors reveals the transcriptional signature of cells highly sensitive to TRAIL-mediated death. We find that sLeA-targeted CAR T cells produce TRAIL upon engaging sLeA(+) tumor cells, and eliminate sLeA(-) tumor cells previously exposed to systemic or local low-dose radiation in a TRAIL-dependent manner. These findings enhance the prospects for successfully applying CAR therapy to heterogeneous solid tumors. Local radiation is integral to many tumors' standard of care and can be easily implemented as a CAR conditioning regimen.

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