scholarly journals HMGA2 expression in white adipose tissue linking cellular senescence with diabetes

2013 ◽  
Vol 8 (5) ◽  
pp. 449-456 ◽  
Author(s):  
Dominique Nadine Markowski ◽  
Helge Wilhelm Thies ◽  
Andrea Gottlieb ◽  
Heiner Wenk ◽  
Manfred Wischnewsky ◽  
...  
2019 ◽  
Author(s):  
Anthony J. Covarrubias ◽  
Abhijit Kale ◽  
Rosalba Perrone ◽  
Jose Alberto Lopez-Dominguez ◽  
Angela Oliveira Pisco ◽  
...  

SummaryDecline in tissue NAD levels during aging is linked to aging and its associated diseases. However, the mechanism for aging-associated NAD decline remains unclear. Here we report that pro-inflammatory M1-like macrophages, but not naïve or M2 macrophages, accumulate in metabolic tissues including visceral white adipose tissue and the liver during aging. Remarkably, these M1-like macrophages highly express the NAD consuming enzyme CD38 and have enhanced CD38-dependent NADase activity. We also find that senescent cells progressively accumulate in visceral white adipose tissue during aging and that inflammatory cytokines found in the supernatant from senescent cells (Senescence associated secretory proteins, SASP) induce macrophages to proliferate and to express CD38. These results highlight a new causal link between visceral tissue senescence and tissue NAD decline during aging and represent a novel therapeutic opportunity targeting maintenance of NAD levels during aging.


Author(s):  
Ulf Smith ◽  
Qian Li ◽  
Mikael Rydén ◽  
Kirsty L. Spalding

Gerontology ◽  
2015 ◽  
Vol 62 (2) ◽  
pp. 163-172 ◽  
Author(s):  
Ross Comisford ◽  
Ellen R. Lubbers ◽  
Lara A. Householder ◽  
Ozan Suer ◽  
Tamara Tchkonia ◽  
...  

Background: Growth hormone (GH)-resistant/deficient mice experience improved glucose homeostasis and substantially increased lifespan. Recent evidence suggests that long-lived GH-resistant/deficient mice are protected from white adipose tissue (WAT) dysfunction, including WAT cellular senescence, impaired adipogenesis and loss of subcutaneous WAT in old age. This preservation of WAT function has been suggested to be a potential mechanism for the extended lifespan of these mice. Objective: The objective of this study was to examine WAT senescence, WAT distribution and glucose homeostasis in dwarf GH receptor antagonist (GHA) transgenic mice, a unique mouse strain having decreased GH action but normal longevity. Methods: 18-month-old female GHA mice and wild-type (WT) littermate controls were used. Prior to dissection, body composition, fasting blood glucose as well as glucose and insulin tolerance tests were performed. WAT distribution was determined by weighing four distinct WAT depots at the time of dissection. Cellular senescence in four WAT depots was assessed using senescence-associated β-galactosidase staining to quantify the senescent cell burden, and real-time qPCR to quantify gene expression of senescence markers p16 and IL-6. Results: GHA mice had a 22% reduction in total body weight, a 33% reduction in lean mass and a 10% increase in body fat percentage compared to WT controls. GHA mice had normal fasting blood glucose and improved insulin sensitivity; however, they exhibited impaired glucose tolerance. Moreover, GHA mice displayed enhanced lipid storage in the inguinal subcutaneous WAT depot (p < 0.05) and a 1.7-fold increase in extra-/intraperitoneal WAT ratio compared to controls (p < 0.05). Measurements of WAT cellular senescence showed no difference between GHA mice and WT controls. Conclusions: Similar to other mice with decreased GH action, female GHA mice display reduced age-related lipid redistribution and improved insulin sensitivity, but no change in cellular senescence. The similar abundance of WAT senescent cells in GHA and control mice suggests that any protection against generation of senescent cells afforded by decreased GH action, low insulin-like growth factor 1 and/or improved insulin sensitivity in the GHA mice may be offset by their severe adiposity, since obesity is known to increase senescence.


Author(s):  
F Kreier ◽  
LL Veder ◽  
A Kalsbeek ◽  
HP Sauerwein ◽  
E Fliers ◽  
...  

2019 ◽  
Author(s):  
Michal Kasher Meron ◽  
Dou Yeon Youn ◽  
Haihong Zong ◽  
Jeffery E Pessin

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