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Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity

The ability to generate large numbers of distinct types of human dendritic cells (DCs) in vitro is critical for accelerating our understanding of DC biology and harnessing them clinically. We developed a DC differentiation method from human CD34(+) precursors leading to high yields of plasmacytoid D...

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Autores principales: Balan, Sreekumar, Arnold-Schrauf, Catharina, Abbas, Abdenour, Couespel, Norbert, Savoret, Juliette, Imperatore, Francesco, Villani, Alexandra-Chloé, Vu Manh, Thien-Phong, Bhardwaj, Nina, Dalod, Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6113934/
https://www.ncbi.nlm.nih.gov/pubmed/30110645
http://dx.doi.org/10.1016/j.celrep.2018.07.033
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author Balan, Sreekumar
Arnold-Schrauf, Catharina
Abbas, Abdenour
Couespel, Norbert
Savoret, Juliette
Imperatore, Francesco
Villani, Alexandra-Chloé
Vu Manh, Thien-Phong
Bhardwaj, Nina
Dalod, Marc
author_facet Balan, Sreekumar
Arnold-Schrauf, Catharina
Abbas, Abdenour
Couespel, Norbert
Savoret, Juliette
Imperatore, Francesco
Villani, Alexandra-Chloé
Vu Manh, Thien-Phong
Bhardwaj, Nina
Dalod, Marc
author_sort Balan, Sreekumar
collection PubMed
description The ability to generate large numbers of distinct types of human dendritic cells (DCs) in vitro is critical for accelerating our understanding of DC biology and harnessing them clinically. We developed a DC differentiation method from human CD34(+) precursors leading to high yields of plasmacytoid DCs (pDCs) and both types of conventional DCs (cDC1s and cDC2s). The identity of the cells generated in vitro and their strong homology to their blood counterparts were demonstrated by phenotypic, functional, and single-cell RNA-sequencing analyses. This culture system revealed a critical role of Notch signaling and GM-CSF for promoting cDC1 generation. Moreover, we discovered a pre-terminal differentiation state for each DC type, characterized by high expression of cell-cycle genes and lack of XCR1 in the case of cDC1. Our culture system will greatly facilitate the simultaneous and comprehensive study of primary, otherwise rare human DC types, including their mutual interactions.
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spelling pubmed-61139342018-08-30 Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity Balan, Sreekumar Arnold-Schrauf, Catharina Abbas, Abdenour Couespel, Norbert Savoret, Juliette Imperatore, Francesco Villani, Alexandra-Chloé Vu Manh, Thien-Phong Bhardwaj, Nina Dalod, Marc Cell Rep Article The ability to generate large numbers of distinct types of human dendritic cells (DCs) in vitro is critical for accelerating our understanding of DC biology and harnessing them clinically. We developed a DC differentiation method from human CD34(+) precursors leading to high yields of plasmacytoid DCs (pDCs) and both types of conventional DCs (cDC1s and cDC2s). The identity of the cells generated in vitro and their strong homology to their blood counterparts were demonstrated by phenotypic, functional, and single-cell RNA-sequencing analyses. This culture system revealed a critical role of Notch signaling and GM-CSF for promoting cDC1 generation. Moreover, we discovered a pre-terminal differentiation state for each DC type, characterized by high expression of cell-cycle genes and lack of XCR1 in the case of cDC1. Our culture system will greatly facilitate the simultaneous and comprehensive study of primary, otherwise rare human DC types, including their mutual interactions. Cell Press 2018-08-14 /pmc/articles/PMC6113934/ /pubmed/30110645 http://dx.doi.org/10.1016/j.celrep.2018.07.033 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Balan, Sreekumar
Arnold-Schrauf, Catharina
Abbas, Abdenour
Couespel, Norbert
Savoret, Juliette
Imperatore, Francesco
Villani, Alexandra-Chloé
Vu Manh, Thien-Phong
Bhardwaj, Nina
Dalod, Marc
Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity
title Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity
title_full Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity
title_fullStr Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity
title_full_unstemmed Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity
title_short Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity
title_sort large-scale human dendritic cell differentiation revealing notch-dependent lineage bifurcation and heterogeneity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6113934/
https://www.ncbi.nlm.nih.gov/pubmed/30110645
http://dx.doi.org/10.1016/j.celrep.2018.07.033
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