Regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healing

Aberrant tissue repair may result in heterotopic ossification (HO), but how this process is regulated by local inflammatory responses is still unclear. Here the authors show, using a mouse burn/trauma model, that TGFβ-producing monocytes/macrophages at the injury site contribute to HO induction, whi...

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Main Authors: Michael Sorkin, Amanda K. Huber, Charles Hwang, William F. Carson, Rajasree Menon, John Li, Kaetlin Vasquez, Chase Pagani, Nicole Patel, Shuli Li, Noelle D. Visser, Yashar Niknafs, Shawn Loder, Melissa Scola, Dylan Nycz, Katherine Gallagher, Laurie K. McCauley, Jiajia Xu, Aaron W. James, Shailesh Agarwal, Stephen Kunkel, Yuji Mishina, Benjamin Levi
Format: Article
Language:English
Published: Nature Publishing Group 2020-02-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-019-14172-4
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spelling doaj-d1da08c830104fc9b81a6525ff7ff86b2021-05-11T08:53:04ZengNature Publishing GroupNature Communications2041-17232020-02-0111111710.1038/s41467-019-14172-4Regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healingMichael Sorkin0Amanda K. Huber1Charles Hwang2William F. Carson3Rajasree Menon4John Li5Kaetlin Vasquez6Chase Pagani7Nicole Patel8Shuli Li9Noelle D. Visser10Yashar Niknafs11Shawn Loder12Melissa Scola13Dylan Nycz14Katherine Gallagher15Laurie K. McCauley16Jiajia Xu17Aaron W. James18Shailesh Agarwal19Stephen Kunkel20Yuji Mishina21Benjamin Levi22Section of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganDepartment of Pathology, University of MichiganDepartment of Computational Medicine and Bioinformatics, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganDepartment of Pathology, University of MichiganDivision of Vascular Surgery, Department of Surgery, University of MichiganDivision of Vascular Surgery, Department of Surgery, University of MichiganDepartment of Periodontics and Oral Medicine, University of MichiganDepartment of Pathology, Johns Hopkins UniversityDepartment of Pathology, Johns Hopkins UniversitySection of Plastic Surgery, Department of Surgery, University of MichiganDepartment of Pathology, University of MichiganDepartment of Biologic and Material Sciences, School of Dentistry, University of MichiganSection of Plastic Surgery, Department of Surgery, University of MichiganAberrant tissue repair may result in heterotopic ossification (HO), but how this process is regulated by local inflammatory responses is still unclear. Here the authors show, using a mouse burn/trauma model, that TGFβ-producing monocytes/macrophages at the injury site contribute to HO induction, while CD47 activation helps antagonize this process.https://doi.org/10.1038/s41467-019-14172-4
collection DOAJ
language English
format Article
sources DOAJ
author Michael Sorkin
Amanda K. Huber
Charles Hwang
William F. Carson
Rajasree Menon
John Li
Kaetlin Vasquez
Chase Pagani
Nicole Patel
Shuli Li
Noelle D. Visser
Yashar Niknafs
Shawn Loder
Melissa Scola
Dylan Nycz
Katherine Gallagher
Laurie K. McCauley
Jiajia Xu
Aaron W. James
Shailesh Agarwal
Stephen Kunkel
Yuji Mishina
Benjamin Levi
spellingShingle Michael Sorkin
Amanda K. Huber
Charles Hwang
William F. Carson
Rajasree Menon
John Li
Kaetlin Vasquez
Chase Pagani
Nicole Patel
Shuli Li
Noelle D. Visser
Yashar Niknafs
Shawn Loder
Melissa Scola
Dylan Nycz
Katherine Gallagher
Laurie K. McCauley
Jiajia Xu
Aaron W. James
Shailesh Agarwal
Stephen Kunkel
Yuji Mishina
Benjamin Levi
Regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healing
Nature Communications
author_facet Michael Sorkin
Amanda K. Huber
Charles Hwang
William F. Carson
Rajasree Menon
John Li
Kaetlin Vasquez
Chase Pagani
Nicole Patel
Shuli Li
Noelle D. Visser
Yashar Niknafs
Shawn Loder
Melissa Scola
Dylan Nycz
Katherine Gallagher
Laurie K. McCauley
Jiajia Xu
Aaron W. James
Shailesh Agarwal
Stephen Kunkel
Yuji Mishina
Benjamin Levi
author_sort Michael Sorkin
title Regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healing
title_short Regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healing
title_full Regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healing
title_fullStr Regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healing
title_full_unstemmed Regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healing
title_sort regulation of heterotopic ossification by monocytes in a mouse model of aberrant wound healing
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2020-02-01
description Aberrant tissue repair may result in heterotopic ossification (HO), but how this process is regulated by local inflammatory responses is still unclear. Here the authors show, using a mouse burn/trauma model, that TGFβ-producing monocytes/macrophages at the injury site contribute to HO induction, while CD47 activation helps antagonize this process.
url https://doi.org/10.1038/s41467-019-14172-4
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