A FoxA2+ long-term stem cell population is necessary for growth plate cartilage regeneration after injury

The growth plate cartilage supports long bone growth. Here the authors identify FoxA2+ long term stem cells in the growth plate that are stratified with short term PTHrP+ cells, participate in production of hyaline cartilage, expand in response to trauma, and whose ablation impairs cartilage regener...

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Main Authors: Shanmugam Muruganandan, Rachel Pierce, Dian Astari Teguh, Rocio Fuente Perez, Nicole Bell, Brandon Nguyen, Katherine Hohl, Brian D. Snyder, Mark W. Grinstaff, Hannah Alberico, Dori Woods, Yiwei Kong, Corneliu Sima, Sanket Bhagat, Kailing Ho, Vicki Rosen, Laura Gamer, Andreia M. Ionescu
Format: Article
Language:English
Published: Nature Portfolio 2022-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-30247-1
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author Shanmugam Muruganandan
Rachel Pierce
Dian Astari Teguh
Rocio Fuente Perez
Nicole Bell
Brandon Nguyen
Katherine Hohl
Brian D. Snyder
Mark W. Grinstaff
Hannah Alberico
Dori Woods
Yiwei Kong
Corneliu Sima
Sanket Bhagat
Kailing Ho
Vicki Rosen
Laura Gamer
Andreia M. Ionescu
author_facet Shanmugam Muruganandan
Rachel Pierce
Dian Astari Teguh
Rocio Fuente Perez
Nicole Bell
Brandon Nguyen
Katherine Hohl
Brian D. Snyder
Mark W. Grinstaff
Hannah Alberico
Dori Woods
Yiwei Kong
Corneliu Sima
Sanket Bhagat
Kailing Ho
Vicki Rosen
Laura Gamer
Andreia M. Ionescu
author_sort Shanmugam Muruganandan
collection DOAJ
description The growth plate cartilage supports long bone growth. Here the authors identify FoxA2+ long term stem cells in the growth plate that are stratified with short term PTHrP+ cells, participate in production of hyaline cartilage, expand in response to trauma, and whose ablation impairs cartilage regeneration.
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spelling doaj.art-640d916cf4354cb5856b093525dfb60f2022-12-22T02:52:48ZengNature PortfolioNature Communications2041-17232022-05-0113111510.1038/s41467-022-30247-1A FoxA2+ long-term stem cell population is necessary for growth plate cartilage regeneration after injuryShanmugam Muruganandan0Rachel Pierce1Dian Astari Teguh2Rocio Fuente Perez3Nicole Bell4Brandon Nguyen5Katherine Hohl6Brian D. Snyder7Mark W. Grinstaff8Hannah Alberico9Dori Woods10Yiwei Kong11Corneliu Sima12Sanket Bhagat13Kailing Ho14Vicki Rosen15Laura Gamer16Andreia M. Ionescu17Department of Biology, 134 Mugar Life Sciences Building, Northeastern UniversityDepartment of Biology, 134 Mugar Life Sciences Building, Northeastern UniversityCentre for Advanced Orthopedic Studies, Beth Israel Deaconess Medical CenterDivision of Pediatrics, University of OviedoNew York University College of DentistryModerna TherapeuticsCentre for Advanced Orthopedic Studies, Beth Israel Deaconess Medical CenterDepartment of Orthopedic Surgery, Boston Children’s HospitalDepartments of Biomedical Engineering, Chemistry, and Medicine, Boston UniversityDepartment of Biology, 134 Mugar Life Sciences Building, Northeastern UniversityDepartment of Biology, 134 Mugar Life Sciences Building, Northeastern UniversityDepartment of Biology, 134 Mugar Life Sciences Building, Northeastern UniversityDepartment of Oral Medicine, Infection, and Immunity, Harvard School of Dental MedicineUltragenyx PharmaceuticalDepartment of Developmental Biology, Harvard School of Dental MedicineDepartment of Developmental Biology, Harvard School of Dental MedicineDepartment of Developmental Biology, Harvard School of Dental MedicineDepartment of Biology, 134 Mugar Life Sciences Building, Northeastern UniversityThe growth plate cartilage supports long bone growth. Here the authors identify FoxA2+ long term stem cells in the growth plate that are stratified with short term PTHrP+ cells, participate in production of hyaline cartilage, expand in response to trauma, and whose ablation impairs cartilage regeneration.https://doi.org/10.1038/s41467-022-30247-1
spellingShingle Shanmugam Muruganandan
Rachel Pierce
Dian Astari Teguh
Rocio Fuente Perez
Nicole Bell
Brandon Nguyen
Katherine Hohl
Brian D. Snyder
Mark W. Grinstaff
Hannah Alberico
Dori Woods
Yiwei Kong
Corneliu Sima
Sanket Bhagat
Kailing Ho
Vicki Rosen
Laura Gamer
Andreia M. Ionescu
A FoxA2+ long-term stem cell population is necessary for growth plate cartilage regeneration after injury
Nature Communications
title A FoxA2+ long-term stem cell population is necessary for growth plate cartilage regeneration after injury
title_full A FoxA2+ long-term stem cell population is necessary for growth plate cartilage regeneration after injury
title_fullStr A FoxA2+ long-term stem cell population is necessary for growth plate cartilage regeneration after injury
title_full_unstemmed A FoxA2+ long-term stem cell population is necessary for growth plate cartilage regeneration after injury
title_short A FoxA2+ long-term stem cell population is necessary for growth plate cartilage regeneration after injury
title_sort foxa2 long term stem cell population is necessary for growth plate cartilage regeneration after injury
url https://doi.org/10.1038/s41467-022-30247-1
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