Open AccessMedicineBiology

R. Morgan, N. Chinnasamy, Daniel Abate-Daga, A. Gros, P. Robbins, Zhili Zheng, S. Feldman, J. Yang, R. Sherry, G. Phan, M. Hughes, U. Kammula, A. Miller, C. Hessman, Ashley Stewart, N. Restifo, M. Quezado, M. Alimchandani, A. Rosenberg, A. Nath, Tongguang Wang, B. Bielekova, Simone C. Wuest, Akula Nirmala, F. McMahon, S. Wilde, Barbara Mosetter, D. Schendel, C. Laurencot, S. Rosenberg

2013.2.1JOURNAL OF IMMUNOTHERAPY

DOI: 10.1097/cji.0b013e3182829903

tlooto Summary

Molecular assays of human brain samples indicated that MAGE-A12 was expressed in human brain, possibly the initiating event of a TCR-mediated inflammatory response that resulted in neuronal cell destruction and raises caution for clinical applications targeting Mage-A family members with highly active immunotherapies.

Abstract

Nine cancer patients were treated with adoptive cell therapy using autologous anti-MAGE-A3 T-cell receptors (TCR)-engineered T cells. Five patients experienced clinical regression of their cancers including 2 on-going responders. Beginning 1–2 days postinfusion, 3 patients (#’s 5, 7, and 8) experienced mental status changes, and 2 patients (5 and 8) lapsed into comas and subsequently died. Magnetic resonance imagining analysis of patients 5 and 8 demonstrated periventricular leukomalacia, and examination of their brains at autopsy revealed necrotizing leukoencephalopathy with extensive white matter defects associated with infiltration of CD3+/CD8+ T cells. Patient 7, developed Parkinson-like symptoms, which resolved over 4 weeks and fully recovered. Immunohistochemical staining of patient and normal brain samples demonstrated rare positively staining neurons with an antibody that recognizes multiple MAGE-A family members. The TCR used in this study recognized epitopes in MAGE-A3/A9/A12. Molecular assays of human brain samples using real-time quantitative-polymerase chain reaction, Nanostring quantitation, and deep-sequencing indicated that MAGE-A12 was expressed in human brain (and possibly MAGE-A1, MAGE-A8, and MAGE-A9). This previously unrecognized expression of MAGE-A12 in human brain was possibly the initiating event of a TCR-mediated inflammatory response that resulted in neuronal cell destruction and raises caution for clinical applications targeting MAGE-A family members with highly active immunotherapies.

Citation format

MORGAN, R., et al. Cancer regression and neurologic toxicity following anti-mage-a3 TCR gene therapy. JOURNAL OF IMMUNOTHERAPY, 2013, 36: 133–151.