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Determinants of Body Fat Distribution in Humans May Provide Insight About Obesity-related Health Risks

Overview
Journal J Lipid Res
Publisher Elsevier
Specialty Biochemistry
Date 2018 Aug 12
PMID 30097511
Citations 110
Authors
Affiliations
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Abstract

Obesity increases the risks of developing cardiovascular and metabolic diseases and degrades quality of life, ultimately increasing the risk of death. However, not all forms of obesity are equally dangerous: some individuals, despite higher percentages of body fat, are at less risk for certain chronic obesity-related complications. Many open questions remain about why this occurs. Data suggest that the physical location of fat and the overall health of fat dramatically influence disease risk; for example, higher concentrations of visceral relative to subcutaneous adipose tissue are associated with greater metabolic risks. As such, understanding the determinants of the location and health of adipose tissue can provide insight about the pathological consequences of obesity and can begin to outline targets for novel therapeutic approaches to combat the obesity epidemic. Although age and sex hormones clearly play roles in fat distribution and location, much remains unknown about gene regulation at the level of adipose tissue or how genetic variants regulate fat distribution. In this review, we discuss what is known about the determinants of body fat distribution, and we highlight the important roles of sex hormones, aging, and genetic variation in the determination of body fat distribution and its contribution to obesity-related comorbidities.

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References
1.
Kouli G, Panagiotakos D, Kyrou I, Georgousopoulou E, Chrysohoou C, Tsigos C . Visceral adiposity index and 10-year cardiovascular disease incidence: The ATTICA study. Nutr Metab Cardiovasc Dis. 2017; 27(10):881-889. DOI: 10.1016/j.numecd.2017.06.015. View

2.
DEon T, Souza S, Aronovitz M, Obin M, Fried S, Greenberg A . Estrogen regulation of adiposity and fuel partitioning. Evidence of genomic and non-genomic regulation of lipogenic and oxidative pathways. J Biol Chem. 2005; 280(43):35983-91. DOI: 10.1074/jbc.M507339200. View

3.
Liu X, Li X, Li C, Gong C, Liu S, Shi Y . Study on regulation of adipokines on body fat distribution and its correlation with metabolic syndrome in type 2 diabetes mellitus. Minerva Endocrinol. 2017; 44(3):259-263. DOI: 10.23736/S0391-1977.17.02773-0. View

4.
Lundholm L, Zang H, Linden Hirschberg A, Gustafsson J, Arner P, Dahlman-Wright K . Key lipogenic gene expression can be decreased by estrogen in human adipose tissue. Fertil Steril. 2008; 90(1):44-8. DOI: 10.1016/j.fertnstert.2007.06.011. View

5.
Mayes J, Watson G . Direct effects of sex steroid hormones on adipose tissues and obesity. Obes Rev. 2004; 5(4):197-216. DOI: 10.1111/j.1467-789X.2004.00152.x. View