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Clinically compliant spatial and temporal imaging of chimeric antigen receptor T-cells.


ABSTRACT: The unprecedented efficacy of chimeric antigen receptor (CAR) T-cell immunotherapy of CD19+ B-cell malignancy has established a new therapeutic pillar of hematology-oncology. Nonetheless, formidable challenges remain for the attainment of comparable success in patients with solid tumors. To accelerate progress and rapidly characterize emerging toxicities, systems that permit the repeated and non-invasive assessment of CAR T-cell bio-distribution would be invaluable. An ideal solution would entail the use of a non-immunogenic reporter that mediates specific uptake of an inexpensive, non-toxic and clinically established imaging tracer by CAR T cells. Here we show the utility of the human sodium iodide symporter (hNIS) for the temporal and spatial monitoring of CAR T-cell behavior in a cancer-bearing host. This system provides a clinically compliant toolkit for high-resolution serial imaging of CAR T cells in vivo, addressing a fundamental unmet need for future clinical development in the field.

SUBMITTER: Emami-Shahri N 

PROVIDER: S-EPMC5852048 | biostudies-literature | 2018 Mar

REPOSITORIES: biostudies-literature

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Clinically compliant spatial and temporal imaging of chimeric antigen receptor T-cells.

Emami-Shahri Nia N   Foster Julie J   Kashani Roxana R   Gazinska Patrycja P   Cook Celia C   Sosabowski Jane J   Maher John J   Papa Sophie S  

Nature communications 20180314 1


The unprecedented efficacy of chimeric antigen receptor (CAR) T-cell immunotherapy of CD19<sup>+</sup> B-cell malignancy has established a new therapeutic pillar of hematology-oncology. Nonetheless, formidable challenges remain for the attainment of comparable success in patients with solid tumors. To accelerate progress and rapidly characterize emerging toxicities, systems that permit the repeated and non-invasive assessment of CAR T-cell bio-distribution would be invaluable. An ideal solution  ...[more]

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