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Prrx1 Fibroblasts Represent a Pro-fibrotic Lineage in the Mouse Ventral Dermis

Fibroblast heterogeneity has been shown within the unwounded mouse dorsal dermis, with fibroblast subpopulations being identified according to anatomical location and embryonic lineage. Using lineage tracing, we demonstrate that paired related homeobox 1 (Prrx1)-expressing fibroblasts are responsibl...

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Autores principales: Leavitt, Tripp, Hu, Michael S., Borrelli, Mimi R., Januszyk, Michael, Garcia, Julia T., Ransom, Ryan C., Mascharak, Shamik, desJardins-Park, Heather E., Litzenburger, Ulrike M., Walmsley, Graham G., Marshall, Clement D., Moore, Alessandra L., Duoto, Bryan, Adem, Sandeep, Foster, Deshka S., Salhotra, Ankit, Shen, Abra H., Griffin, Michelle, Shen, Ethan Z., Barnes, Leandra A., Zielins, Elizabeth R., Maan, Zeshaan N., Wei, Yuning, Chan, Charles K.F., Wan, Derrick C., Lorenz, Hermann P., Chang, Howard Y., Gurtner, Geoffrey C., Longaker, Michael T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7742512/
https://www.ncbi.nlm.nih.gov/pubmed/33176144
http://dx.doi.org/10.1016/j.celrep.2020.108356
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author Leavitt, Tripp
Hu, Michael S.
Borrelli, Mimi R.
Januszyk, Michael
Garcia, Julia T.
Ransom, Ryan C.
Mascharak, Shamik
desJardins-Park, Heather E.
Litzenburger, Ulrike M.
Walmsley, Graham G.
Marshall, Clement D.
Moore, Alessandra L.
Duoto, Bryan
Adem, Sandeep
Foster, Deshka S.
Salhotra, Ankit
Shen, Abra H.
Griffin, Michelle
Shen, Ethan Z.
Barnes, Leandra A.
Zielins, Elizabeth R.
Maan, Zeshaan N.
Wei, Yuning
Chan, Charles K.F.
Wan, Derrick C.
Lorenz, Hermann P.
Chang, Howard Y.
Gurtner, Geoffrey C.
Longaker, Michael T.
author_facet Leavitt, Tripp
Hu, Michael S.
Borrelli, Mimi R.
Januszyk, Michael
Garcia, Julia T.
Ransom, Ryan C.
Mascharak, Shamik
desJardins-Park, Heather E.
Litzenburger, Ulrike M.
Walmsley, Graham G.
Marshall, Clement D.
Moore, Alessandra L.
Duoto, Bryan
Adem, Sandeep
Foster, Deshka S.
Salhotra, Ankit
Shen, Abra H.
Griffin, Michelle
Shen, Ethan Z.
Barnes, Leandra A.
Zielins, Elizabeth R.
Maan, Zeshaan N.
Wei, Yuning
Chan, Charles K.F.
Wan, Derrick C.
Lorenz, Hermann P.
Chang, Howard Y.
Gurtner, Geoffrey C.
Longaker, Michael T.
author_sort Leavitt, Tripp
collection PubMed
description Fibroblast heterogeneity has been shown within the unwounded mouse dorsal dermis, with fibroblast subpopulations being identified according to anatomical location and embryonic lineage. Using lineage tracing, we demonstrate that paired related homeobox 1 (Prrx1)-expressing fibroblasts are responsible for acute and chronic fibroses in the ventral dermis. Single-cell transcriptomics further corroborated the inherent fibrotic characteristics of Prrx1 fibroblasts during wound repair. In summary, we identify and characterize a fibroblast subpopulation in the mouse ventral dermis with intrinsic scar-forming potential.
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spelling pubmed-77425122020-12-16 Prrx1 Fibroblasts Represent a Pro-fibrotic Lineage in the Mouse Ventral Dermis Leavitt, Tripp Hu, Michael S. Borrelli, Mimi R. Januszyk, Michael Garcia, Julia T. Ransom, Ryan C. Mascharak, Shamik desJardins-Park, Heather E. Litzenburger, Ulrike M. Walmsley, Graham G. Marshall, Clement D. Moore, Alessandra L. Duoto, Bryan Adem, Sandeep Foster, Deshka S. Salhotra, Ankit Shen, Abra H. Griffin, Michelle Shen, Ethan Z. Barnes, Leandra A. Zielins, Elizabeth R. Maan, Zeshaan N. Wei, Yuning Chan, Charles K.F. Wan, Derrick C. Lorenz, Hermann P. Chang, Howard Y. Gurtner, Geoffrey C. Longaker, Michael T. Cell Rep Article Fibroblast heterogeneity has been shown within the unwounded mouse dorsal dermis, with fibroblast subpopulations being identified according to anatomical location and embryonic lineage. Using lineage tracing, we demonstrate that paired related homeobox 1 (Prrx1)-expressing fibroblasts are responsible for acute and chronic fibroses in the ventral dermis. Single-cell transcriptomics further corroborated the inherent fibrotic characteristics of Prrx1 fibroblasts during wound repair. In summary, we identify and characterize a fibroblast subpopulation in the mouse ventral dermis with intrinsic scar-forming potential. 2020-11-10 /pmc/articles/PMC7742512/ /pubmed/33176144 http://dx.doi.org/10.1016/j.celrep.2020.108356 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Leavitt, Tripp
Hu, Michael S.
Borrelli, Mimi R.
Januszyk, Michael
Garcia, Julia T.
Ransom, Ryan C.
Mascharak, Shamik
desJardins-Park, Heather E.
Litzenburger, Ulrike M.
Walmsley, Graham G.
Marshall, Clement D.
Moore, Alessandra L.
Duoto, Bryan
Adem, Sandeep
Foster, Deshka S.
Salhotra, Ankit
Shen, Abra H.
Griffin, Michelle
Shen, Ethan Z.
Barnes, Leandra A.
Zielins, Elizabeth R.
Maan, Zeshaan N.
Wei, Yuning
Chan, Charles K.F.
Wan, Derrick C.
Lorenz, Hermann P.
Chang, Howard Y.
Gurtner, Geoffrey C.
Longaker, Michael T.
Prrx1 Fibroblasts Represent a Pro-fibrotic Lineage in the Mouse Ventral Dermis
title Prrx1 Fibroblasts Represent a Pro-fibrotic Lineage in the Mouse Ventral Dermis
title_full Prrx1 Fibroblasts Represent a Pro-fibrotic Lineage in the Mouse Ventral Dermis
title_fullStr Prrx1 Fibroblasts Represent a Pro-fibrotic Lineage in the Mouse Ventral Dermis
title_full_unstemmed Prrx1 Fibroblasts Represent a Pro-fibrotic Lineage in the Mouse Ventral Dermis
title_short Prrx1 Fibroblasts Represent a Pro-fibrotic Lineage in the Mouse Ventral Dermis
title_sort prrx1 fibroblasts represent a pro-fibrotic lineage in the mouse ventral dermis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7742512/
https://www.ncbi.nlm.nih.gov/pubmed/33176144
http://dx.doi.org/10.1016/j.celrep.2020.108356
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