Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism

Anti-resorptive bone therapies also inhibit bone formation, as osteoclasts secrete factors that stimulate bone formation by osteoblasts. Here, the authors identify osteoclast-secreted factors that couple bone resorption to bone formation in healthy subjects, and show that osteoclast-derived DPP4 may...

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Autores principales: Megan M. Weivoda, Chee Kian Chew, David G. Monroe, Joshua N. Farr, Elizabeth J. Atkinson, Jennifer R. Geske, Brittany Eckhardt, Brianne Thicke, Ming Ruan, Amanda J. Tweed, Louise K. McCready, Robert A. Rizza, Aleksey Matveyenko, Moustapha Kassem, Thomas Levin Andersen, Adrian Vella, Matthew T. Drake, Bart L. Clarke, Merry Jo Oursler, Sundeep Khosla
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/801d47b97fd94e109d4d6b51b08d8de3
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spelling oai:doaj.org-article:801d47b97fd94e109d4d6b51b08d8de32021-12-02T15:39:09ZIdentification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism10.1038/s41467-019-14003-62041-1723https://doaj.org/article/801d47b97fd94e109d4d6b51b08d8de32020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-14003-6https://doaj.org/toc/2041-1723Anti-resorptive bone therapies also inhibit bone formation, as osteoclasts secrete factors that stimulate bone formation by osteoblasts. Here, the authors identify osteoclast-secreted factors that couple bone resorption to bone formation in healthy subjects, and show that osteoclast-derived DPP4 may be a factor coupling bone resorption to energy metabolism.Megan M. WeivodaChee Kian ChewDavid G. MonroeJoshua N. FarrElizabeth J. AtkinsonJennifer R. GeskeBrittany EckhardtBrianne ThickeMing RuanAmanda J. TweedLouise K. McCreadyRobert A. RizzaAleksey MatveyenkoMoustapha KassemThomas Levin AndersenAdrian VellaMatthew T. DrakeBart L. ClarkeMerry Jo OurslerSundeep KhoslaNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-13 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Megan M. Weivoda
Chee Kian Chew
David G. Monroe
Joshua N. Farr
Elizabeth J. Atkinson
Jennifer R. Geske
Brittany Eckhardt
Brianne Thicke
Ming Ruan
Amanda J. Tweed
Louise K. McCready
Robert A. Rizza
Aleksey Matveyenko
Moustapha Kassem
Thomas Levin Andersen
Adrian Vella
Matthew T. Drake
Bart L. Clarke
Merry Jo Oursler
Sundeep Khosla
Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism
description Anti-resorptive bone therapies also inhibit bone formation, as osteoclasts secrete factors that stimulate bone formation by osteoblasts. Here, the authors identify osteoclast-secreted factors that couple bone resorption to bone formation in healthy subjects, and show that osteoclast-derived DPP4 may be a factor coupling bone resorption to energy metabolism.
format article
author Megan M. Weivoda
Chee Kian Chew
David G. Monroe
Joshua N. Farr
Elizabeth J. Atkinson
Jennifer R. Geske
Brittany Eckhardt
Brianne Thicke
Ming Ruan
Amanda J. Tweed
Louise K. McCready
Robert A. Rizza
Aleksey Matveyenko
Moustapha Kassem
Thomas Levin Andersen
Adrian Vella
Matthew T. Drake
Bart L. Clarke
Merry Jo Oursler
Sundeep Khosla
author_facet Megan M. Weivoda
Chee Kian Chew
David G. Monroe
Joshua N. Farr
Elizabeth J. Atkinson
Jennifer R. Geske
Brittany Eckhardt
Brianne Thicke
Ming Ruan
Amanda J. Tweed
Louise K. McCready
Robert A. Rizza
Aleksey Matveyenko
Moustapha Kassem
Thomas Levin Andersen
Adrian Vella
Matthew T. Drake
Bart L. Clarke
Merry Jo Oursler
Sundeep Khosla
author_sort Megan M. Weivoda
title Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism
title_short Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism
title_full Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism
title_fullStr Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism
title_full_unstemmed Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism
title_sort identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/801d47b97fd94e109d4d6b51b08d8de3
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