Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis

Bone marrow adipose tissue (BMAT) comprises over 10% of total fat mass but its systemic metabolic role is unclear. Here, the authors show that BMAT glucose uptake is not insulin or cold responsive; however, BMAT basal glucose uptake is higher than in white adipose tissue or skeletal muscle, undersco...

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Autores principales: Karla J. Suchacki, Adriana A. S. Tavares, Domenico Mattiucci, Erica L. Scheller, Giorgos Papanastasiou, Calum Gray, Matthew C. Sinton, Lynne E. Ramage, Wendy A. McDougald, Andrea Lovdel, Richard J. Sulston, Benjamin J. Thomas, Bonnie M. Nicholson, Amanda J. Drake, Carlos J. Alcaide-Corral, Diana Said, Antonella Poloni, Saverio Cinti, Gavin J. Macpherson, Marc R. Dweck, Jack P. M. Andrews, Michelle C. Williams, Robert J. Wallace, Edwin J. R. van Beek, Ormond A. MacDougald, Nicholas M. Morton, Roland H. Stimson, William P. Cawthorn
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/1d8037faca4e43bfbbf32bcfca139cb8
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spelling oai:doaj.org-article:1d8037faca4e43bfbbf32bcfca139cb82021-12-02T16:04:25ZBone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis10.1038/s41467-020-16878-22041-1723https://doaj.org/article/1d8037faca4e43bfbbf32bcfca139cb82020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16878-2https://doaj.org/toc/2041-1723Bone marrow adipose tissue (BMAT) comprises over 10% of total fat mass but its systemic metabolic role is unclear. Here, the authors show that BMAT glucose uptake is not insulin or cold responsive; however, BMAT basal glucose uptake is higher than in white adipose tissue or skeletal muscle, underscoring BMAT’s potential to influence systemic glucose homeostasis.Karla J. SuchackiAdriana A. S. TavaresDomenico MattiucciErica L. SchellerGiorgos PapanastasiouCalum GrayMatthew C. SintonLynne E. RamageWendy A. McDougaldAndrea LovdelRichard J. SulstonBenjamin J. ThomasBonnie M. NicholsonAmanda J. DrakeCarlos J. Alcaide-CorralDiana SaidAntonella PoloniSaverio CintiGavin J. MacphersonMarc R. DweckJack P. M. AndrewsMichelle C. WilliamsRobert J. WallaceEdwin J. R. van BeekOrmond A. MacDougaldNicholas M. MortonRoland H. StimsonWilliam P. CawthornNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-18 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Karla J. Suchacki
Adriana A. S. Tavares
Domenico Mattiucci
Erica L. Scheller
Giorgos Papanastasiou
Calum Gray
Matthew C. Sinton
Lynne E. Ramage
Wendy A. McDougald
Andrea Lovdel
Richard J. Sulston
Benjamin J. Thomas
Bonnie M. Nicholson
Amanda J. Drake
Carlos J. Alcaide-Corral
Diana Said
Antonella Poloni
Saverio Cinti
Gavin J. Macpherson
Marc R. Dweck
Jack P. M. Andrews
Michelle C. Williams
Robert J. Wallace
Edwin J. R. van Beek
Ormond A. MacDougald
Nicholas M. Morton
Roland H. Stimson
William P. Cawthorn
Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis
description Bone marrow adipose tissue (BMAT) comprises over 10% of total fat mass but its systemic metabolic role is unclear. Here, the authors show that BMAT glucose uptake is not insulin or cold responsive; however, BMAT basal glucose uptake is higher than in white adipose tissue or skeletal muscle, underscoring BMAT’s potential to influence systemic glucose homeostasis.
format article
author Karla J. Suchacki
Adriana A. S. Tavares
Domenico Mattiucci
Erica L. Scheller
Giorgos Papanastasiou
Calum Gray
Matthew C. Sinton
Lynne E. Ramage
Wendy A. McDougald
Andrea Lovdel
Richard J. Sulston
Benjamin J. Thomas
Bonnie M. Nicholson
Amanda J. Drake
Carlos J. Alcaide-Corral
Diana Said
Antonella Poloni
Saverio Cinti
Gavin J. Macpherson
Marc R. Dweck
Jack P. M. Andrews
Michelle C. Williams
Robert J. Wallace
Edwin J. R. van Beek
Ormond A. MacDougald
Nicholas M. Morton
Roland H. Stimson
William P. Cawthorn
author_facet Karla J. Suchacki
Adriana A. S. Tavares
Domenico Mattiucci
Erica L. Scheller
Giorgos Papanastasiou
Calum Gray
Matthew C. Sinton
Lynne E. Ramage
Wendy A. McDougald
Andrea Lovdel
Richard J. Sulston
Benjamin J. Thomas
Bonnie M. Nicholson
Amanda J. Drake
Carlos J. Alcaide-Corral
Diana Said
Antonella Poloni
Saverio Cinti
Gavin J. Macpherson
Marc R. Dweck
Jack P. M. Andrews
Michelle C. Williams
Robert J. Wallace
Edwin J. R. van Beek
Ormond A. MacDougald
Nicholas M. Morton
Roland H. Stimson
William P. Cawthorn
author_sort Karla J. Suchacki
title Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis
title_short Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis
title_full Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis
title_fullStr Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis
title_full_unstemmed Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis
title_sort bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasis
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/1d8037faca4e43bfbbf32bcfca139cb8
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