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Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications

Rationale: The in vivo dynamics of CAR-T cells remain incompletely understood. Novel methods are urgently needed to longitudinally monitor transferred cells non-invasively for biodistribution, functionality, proliferation, and persistence in vivo and for improving their cytotoxic potency in case of...

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Autores principales: Kurtz, Keifer, Eibler, Laura, Dacek, Megan M., Carter, Lukas M., Veach, Darren R., Lovibond, Samantha, Reynaud, Emma, Qureshy, Sarah, McDevitt, Michael R., Bourne, Christopher, Monette, Sebastien, Punzalan, Blesida, Khayat, Shireen, Verma, Svena, Kesner, Adam L., Cheung, Nai-Kong V., Schöder, Heiko, Gajecki, Leah, Cheal, Sarah M., Larson, Steven M., Scheinberg, David A., Krebs, Simone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10614694/
https://www.ncbi.nlm.nih.gov/pubmed/37908719
http://dx.doi.org/10.7150/thno.87489
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author Kurtz, Keifer
Eibler, Laura
Dacek, Megan M.
Carter, Lukas M.
Veach, Darren R.
Lovibond, Samantha
Reynaud, Emma
Qureshy, Sarah
McDevitt, Michael R.
Bourne, Christopher
Monette, Sebastien
Punzalan, Blesida
Khayat, Shireen
Verma, Svena
Kesner, Adam L.
Cheung, Nai-Kong V.
Schöder, Heiko
Gajecki, Leah
Cheal, Sarah M.
Larson, Steven M.
Scheinberg, David A.
Krebs, Simone
author_facet Kurtz, Keifer
Eibler, Laura
Dacek, Megan M.
Carter, Lukas M.
Veach, Darren R.
Lovibond, Samantha
Reynaud, Emma
Qureshy, Sarah
McDevitt, Michael R.
Bourne, Christopher
Monette, Sebastien
Punzalan, Blesida
Khayat, Shireen
Verma, Svena
Kesner, Adam L.
Cheung, Nai-Kong V.
Schöder, Heiko
Gajecki, Leah
Cheal, Sarah M.
Larson, Steven M.
Scheinberg, David A.
Krebs, Simone
author_sort Kurtz, Keifer
collection PubMed
description Rationale: The in vivo dynamics of CAR-T cells remain incompletely understood. Novel methods are urgently needed to longitudinally monitor transferred cells non-invasively for biodistribution, functionality, proliferation, and persistence in vivo and for improving their cytotoxic potency in case of treatment failure. Methods: Here we engineered CD19 CAR-T cells (“Thor”-cells) to express a membrane-bound scFv, huC825, that binds DOTA-haptens with picomolar affinity suitable for labeling with imaging or therapeutic radionuclides. We assess its versatile utility for serial tracking studies with PET and delivery of α-radionuclides to enhance anti-tumor killing efficacy in sub-optimal adoptive cell transfer in vivo using Thor-cells in lymphoma models. Results: We show that this reporter gene/probe platform enables repeated, sensitive, and specific assessment of the infused Thor-cells in the whole-body using PET/CT imaging with exceptionally high contrast. The uptake on PET correlates with the Thor-cells on a cellular and functional level. Furthermore, we report the ability of Thor-cells to accumulate cytotoxic alpha-emitting radionuclides preferentially at tumor sites, thus increasing therapeutic potency. Conclusion: Thor-cells are a new theranostic agent that may provide crucial information for better and safer clinical protocols of adoptive T cell therapies, as well as accelerated development strategies.
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spelling pubmed-106146942023-10-31 Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications Kurtz, Keifer Eibler, Laura Dacek, Megan M. Carter, Lukas M. Veach, Darren R. Lovibond, Samantha Reynaud, Emma Qureshy, Sarah McDevitt, Michael R. Bourne, Christopher Monette, Sebastien Punzalan, Blesida Khayat, Shireen Verma, Svena Kesner, Adam L. Cheung, Nai-Kong V. Schöder, Heiko Gajecki, Leah Cheal, Sarah M. Larson, Steven M. Scheinberg, David A. Krebs, Simone Theranostics Research Paper Rationale: The in vivo dynamics of CAR-T cells remain incompletely understood. Novel methods are urgently needed to longitudinally monitor transferred cells non-invasively for biodistribution, functionality, proliferation, and persistence in vivo and for improving their cytotoxic potency in case of treatment failure. Methods: Here we engineered CD19 CAR-T cells (“Thor”-cells) to express a membrane-bound scFv, huC825, that binds DOTA-haptens with picomolar affinity suitable for labeling with imaging or therapeutic radionuclides. We assess its versatile utility for serial tracking studies with PET and delivery of α-radionuclides to enhance anti-tumor killing efficacy in sub-optimal adoptive cell transfer in vivo using Thor-cells in lymphoma models. Results: We show that this reporter gene/probe platform enables repeated, sensitive, and specific assessment of the infused Thor-cells in the whole-body using PET/CT imaging with exceptionally high contrast. The uptake on PET correlates with the Thor-cells on a cellular and functional level. Furthermore, we report the ability of Thor-cells to accumulate cytotoxic alpha-emitting radionuclides preferentially at tumor sites, thus increasing therapeutic potency. Conclusion: Thor-cells are a new theranostic agent that may provide crucial information for better and safer clinical protocols of adoptive T cell therapies, as well as accelerated development strategies. Ivyspring International Publisher 2023-10-08 /pmc/articles/PMC10614694/ /pubmed/37908719 http://dx.doi.org/10.7150/thno.87489 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Kurtz, Keifer
Eibler, Laura
Dacek, Megan M.
Carter, Lukas M.
Veach, Darren R.
Lovibond, Samantha
Reynaud, Emma
Qureshy, Sarah
McDevitt, Michael R.
Bourne, Christopher
Monette, Sebastien
Punzalan, Blesida
Khayat, Shireen
Verma, Svena
Kesner, Adam L.
Cheung, Nai-Kong V.
Schöder, Heiko
Gajecki, Leah
Cheal, Sarah M.
Larson, Steven M.
Scheinberg, David A.
Krebs, Simone
Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications
title Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications
title_full Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications
title_fullStr Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications
title_full_unstemmed Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications
title_short Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications
title_sort engineering car-t cells for radiohapten capture in imaging and radioimmunotherapy applications
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10614694/
https://www.ncbi.nlm.nih.gov/pubmed/37908719
http://dx.doi.org/10.7150/thno.87489
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