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Adipose tissue-derived omentin-1 attenuates arterial calcification via AMPK/Akt signaling pathway
Author(s) -
Feng Xu,
FuXingZi Li,
Xiao Lin,
JiaYu Zhong,
Feng Wu,
SuKang Shan,
Changming Tan,
LingQing Yuan,
XiaoBo Liao
Publication year - 2019
Publication title -
aging
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.473
H-Index - 90
ISSN - 1945-4589
DOI - 10.18632/aging.102251
Subject(s) - adipokine , adipose tissue , endocrinology , medicine , calcification , ampk , white adipose tissue , protein kinase b , chemistry , signal transduction , phosphorylation , protein kinase a , leptin , obesity , biochemistry
Adipose tissue-derived adipokines mediate various kind of crosstalk between adipose tissue and other organs and thus regulate metabolism balance, inflammation state as well as disease progression. In particular, omentin-1, a newly found adipokine, has been reported to exhibit anti-calcification effects in vitro and in vivo . However, little is known about the function of endogenous adipose tissue-derived omentin-1 in arterial calcification and the detailed mechanism involved. Here, we demonstrated that global omentin-1 knockout (omentin-1 -/- ) resulted in more obvious arterial calcification in 5/6-nephrectomy plus high phosphate diet treated (5/6 NTP) mice while overexpression of omentin-1 attenuated attenuates osteoblastic differentiation and mineralisation of VSMCs in vitro and 5/6 NTP-induced mice arterial calcification in vivo . Moreover, we found that omentin-1 induced AMPK and Akt activation while inhibition of AMP-activated protein kinase (AMPK) and Akt signaling reversed the anti-calcification effect induced by omentin-1 both in vitro and in vivo . Our results suggest that adipose tissue-derived omentin-1 serves as a potential therapeutic target for arterial calcification and cardiovascular disease.

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