Adipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for CL 316,243-stimulated lipolysis
Hyaluronan is a naturally occurring linear polysaccharide that together with collagens, enzymes, and glycoproteins forms the extracellular matrix. Here the authors show that adipose tissue overproduction of Hyaluronan reduces fat accumulation in mice fed high-fat diet and improves systemic glucose h...
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Nature Portfolio
2021
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oai:doaj.org-article:d5d6f30432264ee3a4a2783133e16a292021-12-02T19:06:38ZAdipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for CL 316,243-stimulated lipolysis10.1038/s41467-021-25025-42041-1723https://doaj.org/article/d5d6f30432264ee3a4a2783133e16a292021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25025-4https://doaj.org/toc/2041-1723Hyaluronan is a naturally occurring linear polysaccharide that together with collagens, enzymes, and glycoproteins forms the extracellular matrix. Here the authors show that adipose tissue overproduction of Hyaluronan reduces fat accumulation in mice fed high-fat diet and improves systemic glucose homeostasis.Yi ZhuNa LiMingyang HuangMason BartelsSophie DognéShangang ZhaoXi ChenClair CreweLeon StraubLavanya VishvanathZhuzhen ZhangMengle ShaoYongjie YangChristy M. GliniakRuth GordilloGordon I. SmithWilliam L. HollandRana K. GuptaBingning DongNathalie CaronYong XuYucel AkgulSamuel KleinPhilipp E. SchererNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021) |
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Science Q Yi Zhu Na Li Mingyang Huang Mason Bartels Sophie Dogné Shangang Zhao Xi Chen Clair Crewe Leon Straub Lavanya Vishvanath Zhuzhen Zhang Mengle Shao Yongjie Yang Christy M. Gliniak Ruth Gordillo Gordon I. Smith William L. Holland Rana K. Gupta Bingning Dong Nathalie Caron Yong Xu Yucel Akgul Samuel Klein Philipp E. Scherer Adipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for CL 316,243-stimulated lipolysis |
description |
Hyaluronan is a naturally occurring linear polysaccharide that together with collagens, enzymes, and glycoproteins forms the extracellular matrix. Here the authors show that adipose tissue overproduction of Hyaluronan reduces fat accumulation in mice fed high-fat diet and improves systemic glucose homeostasis. |
format |
article |
author |
Yi Zhu Na Li Mingyang Huang Mason Bartels Sophie Dogné Shangang Zhao Xi Chen Clair Crewe Leon Straub Lavanya Vishvanath Zhuzhen Zhang Mengle Shao Yongjie Yang Christy M. Gliniak Ruth Gordillo Gordon I. Smith William L. Holland Rana K. Gupta Bingning Dong Nathalie Caron Yong Xu Yucel Akgul Samuel Klein Philipp E. Scherer |
author_facet |
Yi Zhu Na Li Mingyang Huang Mason Bartels Sophie Dogné Shangang Zhao Xi Chen Clair Crewe Leon Straub Lavanya Vishvanath Zhuzhen Zhang Mengle Shao Yongjie Yang Christy M. Gliniak Ruth Gordillo Gordon I. Smith William L. Holland Rana K. Gupta Bingning Dong Nathalie Caron Yong Xu Yucel Akgul Samuel Klein Philipp E. Scherer |
author_sort |
Yi Zhu |
title |
Adipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for CL 316,243-stimulated lipolysis |
title_short |
Adipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for CL 316,243-stimulated lipolysis |
title_full |
Adipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for CL 316,243-stimulated lipolysis |
title_fullStr |
Adipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for CL 316,243-stimulated lipolysis |
title_full_unstemmed |
Adipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for CL 316,243-stimulated lipolysis |
title_sort |
adipose tissue hyaluronan production improves systemic glucose homeostasis and primes adipocytes for cl 316,243-stimulated lipolysis |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/d5d6f30432264ee3a4a2783133e16a29 |
work_keys_str_mv |
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