Long-term in vivo microscopy of CAR T cell dynamics during eradication of CNS lymphoma in mice

Author:

Mulazzani Matthias,Fräßle Simon P.,von Mücke-Heim Iven,Langer Sigrid,Zhou Xiaolan,Ishikawa-Ankerhold Hellen,Leube Justin,Zhang Wenlong,Dötsch Sarah,Svec Mortimer,Rudelius Martina,Dreyling Martin,von Bergwelt-Baildon Michael,Straube Andreas,Buchholz Veit R.,Busch Dirk H.ORCID,von Baumgarten Louisa

Abstract

T cells expressing anti-CD19 chimeric antigen receptors (CARs) demonstrate impressive efficacy in the treatment of systemic B cell malignancies, including B cell lymphoma. However, their effect on primary central nervous system lymphoma (PCNSL) is unknown. Additionally, the detailed cellular dynamics of CAR T cells during their antitumor reaction remain unclear, including their intratumoral infiltration depth, mobility, and persistence. Studying these processes in detail requires repeated intravital imaging of precisely defined tumor regions during weeks of tumor growth and regression. Here, we have combined a model of PCNSL with in vivo intracerebral 2-photon microscopy. Thereby, we were able to visualize intracranial PCNSL growth and therapeutic effects of CAR T cells longitudinally in the same animal over several weeks. Intravenous (i.v.) injection resulted in poor tumor infiltration of anti-CD19 CAR T cells and could not sufficiently control tumor growth. After intracerebral injection, however, anti-CD19 CAR T cells invaded deeply into the solid tumor, reduced tumor growth, and induced regression of PCNSL, which was associated with long-term survival. Intracerebral anti-CD19 CAR T cells entered the circulation and infiltrated distant, nondraining lymph nodes more efficiently than mock CAR T cells. After complete regression of tumors, anti-CD19 CAR T cells remained detectable intracranially and intravascularly for up to 159 d. Collectively, these results demonstrate the great potential of anti-CD19 CAR T cells for the treatment of PCNSL.

Funder

Else Kröner-Fresenius-Stiftung

Ludwig-Maximilians-Universität München

Friedrich-Baur-Stiftung

EFNS scientific fellowship

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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