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Lentiviral Transduction of CD34(+) Cells Induces Genome-Wide Epigenetic Modifications

Epigenetic modifications may occur during in vitro manipulations of stem cells but these effects have remained unexplored in the context of cell and gene therapy protocols. In an experimental model of ex vivo gene modification for hematopoietic gene therapy, human CD34(+) cells were cultured shortly...

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Autores principales: Yamagata, Yoshiaki, Parietti, Véronique, Stockholm, Daniel, Corre, Guillaume, Poinsignon, Catherine, Touleimat, Nizar, Delafoy, Damien, Besse, Céline, Tost, Jörg, Galy, Anne, Paldi, András
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3492239/
https://www.ncbi.nlm.nih.gov/pubmed/23145033
http://dx.doi.org/10.1371/journal.pone.0048943
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author Yamagata, Yoshiaki
Parietti, Véronique
Stockholm, Daniel
Corre, Guillaume
Poinsignon, Catherine
Touleimat, Nizar
Delafoy, Damien
Besse, Céline
Tost, Jörg
Galy, Anne
Paldi, András
author_facet Yamagata, Yoshiaki
Parietti, Véronique
Stockholm, Daniel
Corre, Guillaume
Poinsignon, Catherine
Touleimat, Nizar
Delafoy, Damien
Besse, Céline
Tost, Jörg
Galy, Anne
Paldi, András
author_sort Yamagata, Yoshiaki
collection PubMed
description Epigenetic modifications may occur during in vitro manipulations of stem cells but these effects have remained unexplored in the context of cell and gene therapy protocols. In an experimental model of ex vivo gene modification for hematopoietic gene therapy, human CD34(+) cells were cultured shortly in the presence of cytokines then with a gene transfer lentiviral vector (LV) expected to transduce cells but to have otherwise limited biological effects on the cells. At the end of the culture, the population of cells remained largely similar at the phenotypic level but some epigenetic changes were evident. Exposure of CD34(+) cells to cytokines increased nuclear expression of epigenetic regulators SIRT1 or DNMT1 and caused genome-wide DNA methylation changes. Surprisingly, the LV caused additional and distinct effects. Large-scale genomic DNA methylation analysis showed that balanced methylation changes occurred in about 200 genes following culture of CD34(+) cells in the presence of cytokines but 900 genes were modified following addition of the LV, predominantly increasing CpG methylation. Epigenetic effects resulting from ex vivo culture and from the use of LV may constitute previously unsuspected sources of biological effects in stem cells and may provide new biomarkers to rationally optimize gene and cell therapy protocols.
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spelling pubmed-34922392012-11-09 Lentiviral Transduction of CD34(+) Cells Induces Genome-Wide Epigenetic Modifications Yamagata, Yoshiaki Parietti, Véronique Stockholm, Daniel Corre, Guillaume Poinsignon, Catherine Touleimat, Nizar Delafoy, Damien Besse, Céline Tost, Jörg Galy, Anne Paldi, András PLoS One Research Article Epigenetic modifications may occur during in vitro manipulations of stem cells but these effects have remained unexplored in the context of cell and gene therapy protocols. In an experimental model of ex vivo gene modification for hematopoietic gene therapy, human CD34(+) cells were cultured shortly in the presence of cytokines then with a gene transfer lentiviral vector (LV) expected to transduce cells but to have otherwise limited biological effects on the cells. At the end of the culture, the population of cells remained largely similar at the phenotypic level but some epigenetic changes were evident. Exposure of CD34(+) cells to cytokines increased nuclear expression of epigenetic regulators SIRT1 or DNMT1 and caused genome-wide DNA methylation changes. Surprisingly, the LV caused additional and distinct effects. Large-scale genomic DNA methylation analysis showed that balanced methylation changes occurred in about 200 genes following culture of CD34(+) cells in the presence of cytokines but 900 genes were modified following addition of the LV, predominantly increasing CpG methylation. Epigenetic effects resulting from ex vivo culture and from the use of LV may constitute previously unsuspected sources of biological effects in stem cells and may provide new biomarkers to rationally optimize gene and cell therapy protocols. Public Library of Science 2012-11-07 /pmc/articles/PMC3492239/ /pubmed/23145033 http://dx.doi.org/10.1371/journal.pone.0048943 Text en © 2012 Yamagata et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yamagata, Yoshiaki
Parietti, Véronique
Stockholm, Daniel
Corre, Guillaume
Poinsignon, Catherine
Touleimat, Nizar
Delafoy, Damien
Besse, Céline
Tost, Jörg
Galy, Anne
Paldi, András
Lentiviral Transduction of CD34(+) Cells Induces Genome-Wide Epigenetic Modifications
title Lentiviral Transduction of CD34(+) Cells Induces Genome-Wide Epigenetic Modifications
title_full Lentiviral Transduction of CD34(+) Cells Induces Genome-Wide Epigenetic Modifications
title_fullStr Lentiviral Transduction of CD34(+) Cells Induces Genome-Wide Epigenetic Modifications
title_full_unstemmed Lentiviral Transduction of CD34(+) Cells Induces Genome-Wide Epigenetic Modifications
title_short Lentiviral Transduction of CD34(+) Cells Induces Genome-Wide Epigenetic Modifications
title_sort lentiviral transduction of cd34(+) cells induces genome-wide epigenetic modifications
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3492239/
https://www.ncbi.nlm.nih.gov/pubmed/23145033
http://dx.doi.org/10.1371/journal.pone.0048943
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