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Co-Transplantation of Barcoded Lymphoid-Primed Multipotent (LMPP) and Common Lymphocyte (CLP) Progenitors Reveals a Major Contribution of LMPP to the Lymphoid Lineage

T cells have the potential to maintain immunological memory and self-tolerance by recognizing antigens from pathogens or tumors. In pathological situations, failure to generate de novo T cells causes immunodeficiency resulting in acute infections and complications. Hematopoietic stem cells (HSC) tra...

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Autores principales: Michaels, Victoria, Chalabi, Smahane, Legrand, Agnes, Renard, Julie, Tejerina, Emmanuel, Daouya, Marina, Fabrega, Sylvie, Megret, Jérôme, Olaso, Robert, Boland, Anne, Deleuze, Jean-François, Battail, Christophe, Tronik-Le Roux, Diana, Ezine, Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002536/
https://www.ncbi.nlm.nih.gov/pubmed/36901798
http://dx.doi.org/10.3390/ijms24054368
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author Michaels, Victoria
Chalabi, Smahane
Legrand, Agnes
Renard, Julie
Tejerina, Emmanuel
Daouya, Marina
Fabrega, Sylvie
Megret, Jérôme
Olaso, Robert
Boland, Anne
Deleuze, Jean-François
Battail, Christophe
Tronik-Le Roux, Diana
Ezine, Sophie
author_facet Michaels, Victoria
Chalabi, Smahane
Legrand, Agnes
Renard, Julie
Tejerina, Emmanuel
Daouya, Marina
Fabrega, Sylvie
Megret, Jérôme
Olaso, Robert
Boland, Anne
Deleuze, Jean-François
Battail, Christophe
Tronik-Le Roux, Diana
Ezine, Sophie
author_sort Michaels, Victoria
collection PubMed
description T cells have the potential to maintain immunological memory and self-tolerance by recognizing antigens from pathogens or tumors. In pathological situations, failure to generate de novo T cells causes immunodeficiency resulting in acute infections and complications. Hematopoietic stem cells (HSC) transplantation constitutes a valuable option to restore proper immune function. However, delayed T cell reconstitution is observed compared to other lineages. To overcome this difficulty, we developed a new approach to identify populations with efficient lymphoid reconstitution properties. To this end, we use a DNA barcoding strategy based on the insertion into a cell chromosome of a lentivirus (LV) carrying a non-coding DNA fragment named barcode (BC). These will segregate through cell divisions and be present in cells’ progeny. The remarkable characteristic of the method is that different cell types can be tracked simultaneously in the same mouse. Thus, we in vivo barcoded LMPP and CLP progenitors to test their ability to reconstitute the lymphoid lineage. Barcoded progenitors were co-grafted in immuno-compromised mice and their fate analyzed by evaluating the BC composition in transplanted mice. The results highlight the predominant role of LMPP progenitors for lymphoid generation and reveal valuable novel insights to be reconsidered in clinical transplantation assays.
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spelling pubmed-100025362023-03-11 Co-Transplantation of Barcoded Lymphoid-Primed Multipotent (LMPP) and Common Lymphocyte (CLP) Progenitors Reveals a Major Contribution of LMPP to the Lymphoid Lineage Michaels, Victoria Chalabi, Smahane Legrand, Agnes Renard, Julie Tejerina, Emmanuel Daouya, Marina Fabrega, Sylvie Megret, Jérôme Olaso, Robert Boland, Anne Deleuze, Jean-François Battail, Christophe Tronik-Le Roux, Diana Ezine, Sophie Int J Mol Sci Article T cells have the potential to maintain immunological memory and self-tolerance by recognizing antigens from pathogens or tumors. In pathological situations, failure to generate de novo T cells causes immunodeficiency resulting in acute infections and complications. Hematopoietic stem cells (HSC) transplantation constitutes a valuable option to restore proper immune function. However, delayed T cell reconstitution is observed compared to other lineages. To overcome this difficulty, we developed a new approach to identify populations with efficient lymphoid reconstitution properties. To this end, we use a DNA barcoding strategy based on the insertion into a cell chromosome of a lentivirus (LV) carrying a non-coding DNA fragment named barcode (BC). These will segregate through cell divisions and be present in cells’ progeny. The remarkable characteristic of the method is that different cell types can be tracked simultaneously in the same mouse. Thus, we in vivo barcoded LMPP and CLP progenitors to test their ability to reconstitute the lymphoid lineage. Barcoded progenitors were co-grafted in immuno-compromised mice and their fate analyzed by evaluating the BC composition in transplanted mice. The results highlight the predominant role of LMPP progenitors for lymphoid generation and reveal valuable novel insights to be reconsidered in clinical transplantation assays. MDPI 2023-02-22 /pmc/articles/PMC10002536/ /pubmed/36901798 http://dx.doi.org/10.3390/ijms24054368 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Michaels, Victoria
Chalabi, Smahane
Legrand, Agnes
Renard, Julie
Tejerina, Emmanuel
Daouya, Marina
Fabrega, Sylvie
Megret, Jérôme
Olaso, Robert
Boland, Anne
Deleuze, Jean-François
Battail, Christophe
Tronik-Le Roux, Diana
Ezine, Sophie
Co-Transplantation of Barcoded Lymphoid-Primed Multipotent (LMPP) and Common Lymphocyte (CLP) Progenitors Reveals a Major Contribution of LMPP to the Lymphoid Lineage
title Co-Transplantation of Barcoded Lymphoid-Primed Multipotent (LMPP) and Common Lymphocyte (CLP) Progenitors Reveals a Major Contribution of LMPP to the Lymphoid Lineage
title_full Co-Transplantation of Barcoded Lymphoid-Primed Multipotent (LMPP) and Common Lymphocyte (CLP) Progenitors Reveals a Major Contribution of LMPP to the Lymphoid Lineage
title_fullStr Co-Transplantation of Barcoded Lymphoid-Primed Multipotent (LMPP) and Common Lymphocyte (CLP) Progenitors Reveals a Major Contribution of LMPP to the Lymphoid Lineage
title_full_unstemmed Co-Transplantation of Barcoded Lymphoid-Primed Multipotent (LMPP) and Common Lymphocyte (CLP) Progenitors Reveals a Major Contribution of LMPP to the Lymphoid Lineage
title_short Co-Transplantation of Barcoded Lymphoid-Primed Multipotent (LMPP) and Common Lymphocyte (CLP) Progenitors Reveals a Major Contribution of LMPP to the Lymphoid Lineage
title_sort co-transplantation of barcoded lymphoid-primed multipotent (lmpp) and common lymphocyte (clp) progenitors reveals a major contribution of lmpp to the lymphoid lineage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002536/
https://www.ncbi.nlm.nih.gov/pubmed/36901798
http://dx.doi.org/10.3390/ijms24054368
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