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Direct In Vivo Activation of T Cells with Nanosized Immunofilaments Inhibits Tumor Growth and Metastasis

[Image: see text] Adoptive T cell therapy has successfully been implemented for the treatment of cancer. Nevertheless, ex vivo expansion of T cells by artificial antigen-presenting cells (aAPCs) remains cumbersome and can compromise T cell functionality, thereby limiting their therapeutic potential....

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Autores principales: Weiss, Lea, Weiden, Jorieke, Dölen, Yusuf, Grad, Emilia M., van Dinther, Eric A. W., Schluck, Marjolein, Eggermont, Loek J., van Mierlo, Guido, Gileadi, Uzi, Bartoló-Ibars, Ariadna, Raavé, René, Gorris, Mark A. J., Maassen, Lisa, Verrijp, Kiek, Valente, Michael, Deplancke, Bart, Verdoes, Martijn, Benitez-Ribas, Daniel, Heskamp, Sandra, van Spriel, Annemiek B., Figdor, Carl G., Hammink, Roel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10339791/
https://www.ncbi.nlm.nih.gov/pubmed/37338806
http://dx.doi.org/10.1021/acsnano.2c11884
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author Weiss, Lea
Weiden, Jorieke
Dölen, Yusuf
Grad, Emilia M.
van Dinther, Eric A. W.
Schluck, Marjolein
Eggermont, Loek J.
van Mierlo, Guido
Gileadi, Uzi
Bartoló-Ibars, Ariadna
Raavé, René
Gorris, Mark A. J.
Maassen, Lisa
Verrijp, Kiek
Valente, Michael
Deplancke, Bart
Verdoes, Martijn
Benitez-Ribas, Daniel
Heskamp, Sandra
van Spriel, Annemiek B.
Figdor, Carl G.
Hammink, Roel
author_facet Weiss, Lea
Weiden, Jorieke
Dölen, Yusuf
Grad, Emilia M.
van Dinther, Eric A. W.
Schluck, Marjolein
Eggermont, Loek J.
van Mierlo, Guido
Gileadi, Uzi
Bartoló-Ibars, Ariadna
Raavé, René
Gorris, Mark A. J.
Maassen, Lisa
Verrijp, Kiek
Valente, Michael
Deplancke, Bart
Verdoes, Martijn
Benitez-Ribas, Daniel
Heskamp, Sandra
van Spriel, Annemiek B.
Figdor, Carl G.
Hammink, Roel
author_sort Weiss, Lea
collection PubMed
description [Image: see text] Adoptive T cell therapy has successfully been implemented for the treatment of cancer. Nevertheless, ex vivo expansion of T cells by artificial antigen-presenting cells (aAPCs) remains cumbersome and can compromise T cell functionality, thereby limiting their therapeutic potential. We propose a radically different approach aimed at direct expansion of T cells in vivo, thereby omitting the need for large-scale ex vivo T cell production. We engineered nanosized immunofilaments (IFs), with a soluble semiflexible polyisocyanopeptide backbone that presents peptide-loaded major histocompatibility complexes and costimulatory molecules multivalently. IFs readily activated and expanded antigen-specific T cells like natural APCs, as evidenced by transcriptomic analyses of T cells. Upon intravenous injection, IFs reach the spleen and lymph nodes and induce antigen-specific T cell responses in vivo. Moreover, IFs display strong antitumor efficacy resulting in inhibition of the formation of melanoma metastases and reduction of primary tumor growth in synergy with immune checkpoint blockade. In conclusion, nanosized IFs represent a powerful modular platform for direct activation and expansion of antigen-specific T cells in vivo, which can greatly contribute to cancer immunotherapy.
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spelling pubmed-103397912023-07-14 Direct In Vivo Activation of T Cells with Nanosized Immunofilaments Inhibits Tumor Growth and Metastasis Weiss, Lea Weiden, Jorieke Dölen, Yusuf Grad, Emilia M. van Dinther, Eric A. W. Schluck, Marjolein Eggermont, Loek J. van Mierlo, Guido Gileadi, Uzi Bartoló-Ibars, Ariadna Raavé, René Gorris, Mark A. J. Maassen, Lisa Verrijp, Kiek Valente, Michael Deplancke, Bart Verdoes, Martijn Benitez-Ribas, Daniel Heskamp, Sandra van Spriel, Annemiek B. Figdor, Carl G. Hammink, Roel ACS Nano [Image: see text] Adoptive T cell therapy has successfully been implemented for the treatment of cancer. Nevertheless, ex vivo expansion of T cells by artificial antigen-presenting cells (aAPCs) remains cumbersome and can compromise T cell functionality, thereby limiting their therapeutic potential. We propose a radically different approach aimed at direct expansion of T cells in vivo, thereby omitting the need for large-scale ex vivo T cell production. We engineered nanosized immunofilaments (IFs), with a soluble semiflexible polyisocyanopeptide backbone that presents peptide-loaded major histocompatibility complexes and costimulatory molecules multivalently. IFs readily activated and expanded antigen-specific T cells like natural APCs, as evidenced by transcriptomic analyses of T cells. Upon intravenous injection, IFs reach the spleen and lymph nodes and induce antigen-specific T cell responses in vivo. Moreover, IFs display strong antitumor efficacy resulting in inhibition of the formation of melanoma metastases and reduction of primary tumor growth in synergy with immune checkpoint blockade. In conclusion, nanosized IFs represent a powerful modular platform for direct activation and expansion of antigen-specific T cells in vivo, which can greatly contribute to cancer immunotherapy. American Chemical Society 2023-06-20 /pmc/articles/PMC10339791/ /pubmed/37338806 http://dx.doi.org/10.1021/acsnano.2c11884 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Weiss, Lea
Weiden, Jorieke
Dölen, Yusuf
Grad, Emilia M.
van Dinther, Eric A. W.
Schluck, Marjolein
Eggermont, Loek J.
van Mierlo, Guido
Gileadi, Uzi
Bartoló-Ibars, Ariadna
Raavé, René
Gorris, Mark A. J.
Maassen, Lisa
Verrijp, Kiek
Valente, Michael
Deplancke, Bart
Verdoes, Martijn
Benitez-Ribas, Daniel
Heskamp, Sandra
van Spriel, Annemiek B.
Figdor, Carl G.
Hammink, Roel
Direct In Vivo Activation of T Cells with Nanosized Immunofilaments Inhibits Tumor Growth and Metastasis
title Direct In Vivo Activation of T Cells with Nanosized Immunofilaments Inhibits Tumor Growth and Metastasis
title_full Direct In Vivo Activation of T Cells with Nanosized Immunofilaments Inhibits Tumor Growth and Metastasis
title_fullStr Direct In Vivo Activation of T Cells with Nanosized Immunofilaments Inhibits Tumor Growth and Metastasis
title_full_unstemmed Direct In Vivo Activation of T Cells with Nanosized Immunofilaments Inhibits Tumor Growth and Metastasis
title_short Direct In Vivo Activation of T Cells with Nanosized Immunofilaments Inhibits Tumor Growth and Metastasis
title_sort direct in vivo activation of t cells with nanosized immunofilaments inhibits tumor growth and metastasis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10339791/
https://www.ncbi.nlm.nih.gov/pubmed/37338806
http://dx.doi.org/10.1021/acsnano.2c11884
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