Impact of fat mass and distribution on lipid turnover in human adipose tissue

Lipid turnover in tissues can be calculated from ratios of different carbon isotopes. Here the authors use this approach to study lipid turnover in two distinct adipose tissue depots and find that, in obese individuals, visceral fat is more lipolytic than subcutaneous fat.

Bibliographic Details
Main Authors: Kirsty L. Spalding, Samuel Bernard, Erik Näslund, Mehran Salehpour, Göran Possnert, Lena Appelsved, Keng-Yeh Fu, Kanar Alkass, Henrik Druid, Anders Thorell, Mikael Rydén, Peter Arner
Format: Article
Language:English
Published: Nature Portfolio 2017-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms15253
_version_ 1818841274919157760
author Kirsty L. Spalding
Samuel Bernard
Erik Näslund
Mehran Salehpour
Göran Possnert
Lena Appelsved
Keng-Yeh Fu
Kanar Alkass
Henrik Druid
Anders Thorell
Mikael Rydén
Peter Arner
author_facet Kirsty L. Spalding
Samuel Bernard
Erik Näslund
Mehran Salehpour
Göran Possnert
Lena Appelsved
Keng-Yeh Fu
Kanar Alkass
Henrik Druid
Anders Thorell
Mikael Rydén
Peter Arner
author_sort Kirsty L. Spalding
collection DOAJ
description Lipid turnover in tissues can be calculated from ratios of different carbon isotopes. Here the authors use this approach to study lipid turnover in two distinct adipose tissue depots and find that, in obese individuals, visceral fat is more lipolytic than subcutaneous fat.
first_indexed 2024-12-19T04:23:29Z
format Article
id doaj.art-b650818ee3aa43a0a056c56d449a3dbc
institution Directory Open Access Journal
issn 2041-1723
language English
last_indexed 2024-12-19T04:23:29Z
publishDate 2017-05-01
publisher Nature Portfolio
record_format Article
series Nature Communications
spelling doaj.art-b650818ee3aa43a0a056c56d449a3dbc2022-12-21T20:36:06ZengNature PortfolioNature Communications2041-17232017-05-01811910.1038/ncomms15253Impact of fat mass and distribution on lipid turnover in human adipose tissueKirsty L. Spalding0Samuel Bernard1Erik Näslund2Mehran Salehpour3Göran Possnert4Lena Appelsved5Keng-Yeh Fu6Kanar Alkass7Henrik Druid8Anders Thorell9Mikael Rydén10Peter Arner11Department of Cell and Molecular Biology, Karolinska InstitutetInstitut Camille Jordan, University of LyonDepartment of Clinical Sciences, Danderyd Hospital, Karolinska InstitutetDepartment of Physics and Astronomy, Ion Physics, Uppsala UniversityDepartment of Physics and Astronomy, Ion Physics, Uppsala UniversityDepartment of Cell and Molecular Biology, Karolinska InstitutetDepartment of Cell and Molecular Biology, Karolinska InstitutetDepartment of Cell and Molecular Biology, Karolinska InstitutetDepartment of Oncology-Pathology, Karolinska InstitutetDepartment of Clinical Sciences, Danderyd Hospital, Karolinska InstitutetDepartment of Medicine, Karolinska University Hospital, Karolinska InstitutetDepartment of Medicine, Karolinska University Hospital, Karolinska InstitutetLipid turnover in tissues can be calculated from ratios of different carbon isotopes. Here the authors use this approach to study lipid turnover in two distinct adipose tissue depots and find that, in obese individuals, visceral fat is more lipolytic than subcutaneous fat.https://doi.org/10.1038/ncomms15253
spellingShingle Kirsty L. Spalding
Samuel Bernard
Erik Näslund
Mehran Salehpour
Göran Possnert
Lena Appelsved
Keng-Yeh Fu
Kanar Alkass
Henrik Druid
Anders Thorell
Mikael Rydén
Peter Arner
Impact of fat mass and distribution on lipid turnover in human adipose tissue
Nature Communications
title Impact of fat mass and distribution on lipid turnover in human adipose tissue
title_full Impact of fat mass and distribution on lipid turnover in human adipose tissue
title_fullStr Impact of fat mass and distribution on lipid turnover in human adipose tissue
title_full_unstemmed Impact of fat mass and distribution on lipid turnover in human adipose tissue
title_short Impact of fat mass and distribution on lipid turnover in human adipose tissue
title_sort impact of fat mass and distribution on lipid turnover in human adipose tissue
url https://doi.org/10.1038/ncomms15253
work_keys_str_mv AT kirstylspalding impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT samuelbernard impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT eriknaslund impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT mehransalehpour impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT goranpossnert impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT lenaappelsved impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT kengyehfu impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT kanaralkass impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT henrikdruid impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT andersthorell impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT mikaelryden impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue
AT peterarner impactoffatmassanddistributiononlipidturnoverinhumanadiposetissue