Off-the-shelf, steroid-resistant, IL13Rα2-specific CAR T cells for treatment of glioblastoma.

Shelley Wang, Behnam Badie, Michael C Jensen, Stephen J Forman, Winson W Tang, Michael C Holmes, Philip D Gregory, Matthew Mendel, Yuanyue Zhou, Julie A Ressler, Massimo D'Apuzzo, Andreas Reik, Christine E Brown, Vivi Tran, Timothy W Synold, Lihong Weng, Renate Starr, Brenda Aguilar, Jamie R Wagner, Araceli Naranjo, Julie R Ostberg, Joycelynne Palmer, Analiz Rodriguez

Journal: Neuro-oncology 2022;24(8):1318-1330

PMID: 35100373

Abstract

BACKGROUND

Wide-spread application of chimeric antigen receptor (CAR) T cell therapy for cancer is limited by the current use of autologous CAR T cells necessitating the manufacture of individualized therapeutic products for each patient. To address this challenge, we have generated an off-the-shelf, allogeneic CAR T cell product for the treatment of glioblastoma (GBM), and present here the feasibility, safety, and therapeutic potential of this approach.

METHODS

We generated for clinical use a healthy-donor derived IL13Rα2-targeted CAR+ (IL13-zetakine+) cytolytic T-lymphocyte (CTL) product genetically engineered using zinc finger nucleases (ZFNs) to permanently disrupt the glucocorticoid receptor (GR) (GRm13Z40-2) and endow resistance to glucocorticoid treatment. In a phase I safety and feasibility trial we evaluated these allogeneic GRm13Z40-2 T cells in combination with intracranial administration of recombinant human IL-2 (rhIL-2; aldesleukin) in six patients with unresectable recurrent GBM that were maintained on systemic dexamethasone (4-12 mg/day).

RESULTS

The GRm13Z40-2 product displayed dexamethasone-resistant effector activity without evidence for in vitro alloreactivity. Intracranial administration of GRm13Z40-2 in four doses of 108 cells over a two-week period with aldesleukin (9 infusions ranging from 2500-5000 IU) was well tolerated, with indications of transient tumor reduction and/or tumor necrosis at the site of T cell infusion in four of the six treated research subjects. Antibody reactivity against GRm13Z40-2 cells was detected in the serum of only one of the four tested subjects.

CONCLUSIONS

This first-in-human experience establishes a foundation for future adoptive therapy studies using off-the-shelf, zinc-finger modified, and/or glucocorticoid resistant CAR T cells.

Published by Oxford University Press on behalf of the Society for Neuro-Oncology 2022.

Address: Department of Hematology & Hematopoietic Cell Transplantation (T Cell Therapeutics Research Laboratories), City of Hope Beckman Research Institute and Medical Center; Duarte, California, USA.; Department of Neurosurgery, City of Hope Beckman Research Institute and Medical Center; Duarte, California, USA.; Department of Computational and Quantitative Medicine, City of Hope Beckman Research Institute and Medical Center; Duarte, California, USA.; Department of Cancer Biology, City of Hope Beckman Research Institute and Medical Center; Duarte, California, USA.; Sangamo Therapeutics, Inc., Richmond, California, USA.; Department of Pathology, City of Hope Beckman Research Institute and Medical Center; Duarte, California, USA.; Department of Diagnostic Radiology, City of Hope Beckman Research Institute and Medical Center; Duarte, California, USA.; Ben Town Center for Childhood Cancer, Seattle Children's Research Institute, Seattle, Washington, USA.
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