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Locoregional delivery of CAR T cells to the cerebrospinal fluid for treatment of metastatic medulloblastoma and ependymoma
Author(s) -
Laura Donovan,
Alberto Delaidelli,
Sujith K. Joseph,
Kevin Bielamowicz,
Kristen Fousek,
Borja Holgado,
Alex Manno,
Dilakshan Srikanthan,
Ahmed Z. Gad,
Randy Van Ommeren,
David Przelicki,
Cory M. Richman,
Vijay Ramaswamy,
Craig Daniels,
Jonelle G. Pallota,
Tajana Douglas,
Alyssa C. M. Joynt,
Joonas Haapasalo,
Caroliör,
Maria Vladoiu,
Claudia M. Kuzan-Fischer,
Livia Garzia,
Stephen C. Mack,
Srinidhi Varadharajan,
Matthew L. Baker,
Liam D. Hendrikse,
Michelle Ly,
Kaitlin Kharas,
Polina Balin,
Xiaochong Wu,
Lei Qin,
Ning Huang,
Ana Guerreiro Stücklin,
A. Sorana Morrissy,
Florence M.G. Cavalli,
Betty Luu,
Raúl A. Suárez,
Pasqualino De Antonellis,
Antony Michealraj,
Avesta Rastan,
Meenakshi Hegde,
Martin Komosa,
Olga Sirbu,
Sachin Kumar,
Zied Abdullaev,
Cláudia C. Faria,
Stephen Yip,
Juliette Hukin,
Uri Tabori,
Cynthia Hawkins,
Ken Aldape,
Mads Daugaard,
John M. Maris,
Poul H. Sorensen,
Nabil Ahmed,
Michael D. Taylor
Publication year - 2020
Publication title -
nature medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 19.536
H-Index - 547
eISSN - 1546-170X
pISSN - 1078-8956
DOI - 10.1038/s41591-020-0827-2
Subject(s) - medulloblastoma , ependymoma , chimeric antigen receptor , medicine , cerebrospinal fluid , cancer research , pathology , oncology , immunotherapy , cancer
Recurrent medulloblastoma and ependymoma are universally lethal, with no approved targeted therapies and few candidates presently under clinical evaluation. Nearly all recurrent medulloblastomas and posterior fossa group A (PFA) ependymomas are located adjacent to and bathed by the cerebrospinal fluid, presenting an opportunity for locoregional therapy, bypassing the blood-brain barrier. We identify three cell-surface targets, EPHA2, HER2 and interleukin 13 receptor α2, expressed on medulloblastomas and ependymomas, but not expressed in the normal developing brain. We validate intrathecal delivery of EPHA2, HER2 and interleukin 13 receptor α2 chimeric antigen receptor T cells as an effective treatment for primary, metastatic and recurrent group 3 medulloblastoma and PFA ependymoma xenografts in mouse models. Finally, we demonstrate that administration of these chimeric antigen receptor T cells into the cerebrospinal fluid, alone or in combination with azacytidine, is a highly effective therapy for multiple metastatic mouse models of group 3 medulloblastoma and PFA ependymoma, thereby providing a rationale for clinical trials of these approaches in humans.

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