Cargando…

Efficient and Non-genotoxic RNA-Based Engineering of Human T Cells Using Tumor-Specific T Cell Receptors With Minimal TCR Mispairing

Genetic engineering of T cells with tumor specific T-cell receptors (TCR) is a promising strategy to redirect their specificity against cancer cells in adoptive T cell therapy protocols. Most studies are exploiting integrating retro- or lentiviral vectors to permanently introduce the therapeutic TCR...

Descripción completa

Detalles Bibliográficos
Autores principales: Campillo-Davo, Diana, Fujiki, Fumihiro, Van den Bergh, Johan M. J., De Reu, Hans, Smits, Evelien L. J. M., Goossens, Herman, Sugiyama, Haruo, Lion, Eva, Berneman, Zwi N., Van Tendeloo, Viggo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6234959/
https://www.ncbi.nlm.nih.gov/pubmed/30464762
http://dx.doi.org/10.3389/fimmu.2018.02503
_version_ 1783370802423398400
author Campillo-Davo, Diana
Fujiki, Fumihiro
Van den Bergh, Johan M. J.
De Reu, Hans
Smits, Evelien L. J. M.
Goossens, Herman
Sugiyama, Haruo
Lion, Eva
Berneman, Zwi N.
Van Tendeloo, Viggo
author_facet Campillo-Davo, Diana
Fujiki, Fumihiro
Van den Bergh, Johan M. J.
De Reu, Hans
Smits, Evelien L. J. M.
Goossens, Herman
Sugiyama, Haruo
Lion, Eva
Berneman, Zwi N.
Van Tendeloo, Viggo
author_sort Campillo-Davo, Diana
collection PubMed
description Genetic engineering of T cells with tumor specific T-cell receptors (TCR) is a promising strategy to redirect their specificity against cancer cells in adoptive T cell therapy protocols. Most studies are exploiting integrating retro- or lentiviral vectors to permanently introduce the therapeutic TCR, which can pose serious safety issues when treatment-related toxicities would occur. Therefore, we developed a versatile, non-genotoxic transfection method for human unstimulated CD8(+) T cells. We describe an optimized double sequential electroporation platform whereby Dicer-substrate small interfering RNAs (DsiRNA) are first introduced to suppress endogenous TCR α and β expression, followed by electroporation with DsiRNA-resistant tumor-specific TCR mRNA. We demonstrate that double sequential electroporation of human primary unstimulated T cells with DsiRNA and TCR mRNA leads to unprecedented levels of transgene TCR expression due to a strongly reduced degree of TCR mispairing. Importantly, superior transgenic TCR expression boosts epitope-specific CD8(+) T cell activation and killing activity. Altogether, DsiRNA and TCR mRNA double sequential electroporation is a rapid, non-integrating and highly efficient approach with an enhanced biosafety profile to engineer T cells with antigen-specific TCRs for use in early phase clinical trials.
format Online
Article
Text
id pubmed-6234959
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-62349592018-11-21 Efficient and Non-genotoxic RNA-Based Engineering of Human T Cells Using Tumor-Specific T Cell Receptors With Minimal TCR Mispairing Campillo-Davo, Diana Fujiki, Fumihiro Van den Bergh, Johan M. J. De Reu, Hans Smits, Evelien L. J. M. Goossens, Herman Sugiyama, Haruo Lion, Eva Berneman, Zwi N. Van Tendeloo, Viggo Front Immunol Immunology Genetic engineering of T cells with tumor specific T-cell receptors (TCR) is a promising strategy to redirect their specificity against cancer cells in adoptive T cell therapy protocols. Most studies are exploiting integrating retro- or lentiviral vectors to permanently introduce the therapeutic TCR, which can pose serious safety issues when treatment-related toxicities would occur. Therefore, we developed a versatile, non-genotoxic transfection method for human unstimulated CD8(+) T cells. We describe an optimized double sequential electroporation platform whereby Dicer-substrate small interfering RNAs (DsiRNA) are first introduced to suppress endogenous TCR α and β expression, followed by electroporation with DsiRNA-resistant tumor-specific TCR mRNA. We demonstrate that double sequential electroporation of human primary unstimulated T cells with DsiRNA and TCR mRNA leads to unprecedented levels of transgene TCR expression due to a strongly reduced degree of TCR mispairing. Importantly, superior transgenic TCR expression boosts epitope-specific CD8(+) T cell activation and killing activity. Altogether, DsiRNA and TCR mRNA double sequential electroporation is a rapid, non-integrating and highly efficient approach with an enhanced biosafety profile to engineer T cells with antigen-specific TCRs for use in early phase clinical trials. Frontiers Media S.A. 2018-11-07 /pmc/articles/PMC6234959/ /pubmed/30464762 http://dx.doi.org/10.3389/fimmu.2018.02503 Text en Copyright © 2018 Campillo-Davo, Fujiki, Van den Bergh, De Reu, Smits, Goossens, Sugiyama, Lion, Berneman and Van Tendeloo. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Campillo-Davo, Diana
Fujiki, Fumihiro
Van den Bergh, Johan M. J.
De Reu, Hans
Smits, Evelien L. J. M.
Goossens, Herman
Sugiyama, Haruo
Lion, Eva
Berneman, Zwi N.
Van Tendeloo, Viggo
Efficient and Non-genotoxic RNA-Based Engineering of Human T Cells Using Tumor-Specific T Cell Receptors With Minimal TCR Mispairing
title Efficient and Non-genotoxic RNA-Based Engineering of Human T Cells Using Tumor-Specific T Cell Receptors With Minimal TCR Mispairing
title_full Efficient and Non-genotoxic RNA-Based Engineering of Human T Cells Using Tumor-Specific T Cell Receptors With Minimal TCR Mispairing
title_fullStr Efficient and Non-genotoxic RNA-Based Engineering of Human T Cells Using Tumor-Specific T Cell Receptors With Minimal TCR Mispairing
title_full_unstemmed Efficient and Non-genotoxic RNA-Based Engineering of Human T Cells Using Tumor-Specific T Cell Receptors With Minimal TCR Mispairing
title_short Efficient and Non-genotoxic RNA-Based Engineering of Human T Cells Using Tumor-Specific T Cell Receptors With Minimal TCR Mispairing
title_sort efficient and non-genotoxic rna-based engineering of human t cells using tumor-specific t cell receptors with minimal tcr mispairing
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6234959/
https://www.ncbi.nlm.nih.gov/pubmed/30464762
http://dx.doi.org/10.3389/fimmu.2018.02503
work_keys_str_mv AT campillodavodiana efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT fujikifumihiro efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT vandenberghjohanmj efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT dereuhans efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT smitsevelienljm efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT goossensherman efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT sugiyamaharuo efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT lioneva efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT bernemanzwin efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing
AT vantendelooviggo efficientandnongenotoxicrnabasedengineeringofhumantcellsusingtumorspecifictcellreceptorswithminimaltcrmispairing