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Mechanism of Regulation of Adipocyte Numbers in Adult Organisms Through Differentiation and Apoptosis Homeostasis
Published on: June 3, 2016
Role of FoxO1 in FFA-induced oxidative stress in adipocytes
Angela R Subauste1, Charles F Burant
1Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan 48109, USA.
Abstract:
Reactive oxygen species (ROS) production has recently been established as an essential contributor in the pathogenesis of obesity-associated insulin resistance. The FoxO1 pathway plays a role not only in nutrient sensing but also in regulating ROS production. We exposed adipocytes to free fatty acids (FFA) and demonstrated that FoxO1 protein levels decrease in a dose-dependent manner. The FoxO1 downregulation correlated with an increase in the production of ROS and a proinflammatory adipokine pattern characterized by a decrease in adiponectin and an increase in IL-6, plasminogen activator inhibitor-1, and monocyte chemotactic protein-1 mRNA expression levels. Similarly, a decrease in FoxO1 protein levels was seen in adipocytes of db/db mice compared with controls. Treatment with the sirtuin agonist resveratrol, which translocates FoxO1 to the nucleus, increased FoxO1 protein levels in adipocytes exposed to FFA. This correlated with a decrease in the generation of ROS and a partial reversal of the proinflammatory adipokine pattern. Together these results indicate that the insulin-resistant adipocyte produced by the exposure to a high concentration of fatty acids is characterized by decreased levels of FoxO1. These data also suggest that modulation of the Sirt1/FoxO1 pathway is a potentially useful therapeutic target for the obesity-induced dysfunctional adipocyte.
Insights
Obesity-induced insulin resistance involves increased reactive oxygen species (ROS). Decreased FoxO1 levels in adipocytes contribute to this, but the Sirt1/FoxO1 pathway may offer a therapeutic target.
Area of Science:
- Metabolism
- Cellular Biology
- Endocrinology
Background:
- Reactive oxygen species (ROS) are implicated in obesity-associated insulin resistance.
- The FoxO1 pathway is involved in nutrient sensing and ROS regulation.
Purpose of the Study:
- To investigate the role of FoxO1 in FFA-induced insulin resistance in adipocytes.
- To explore the therapeutic potential of modulating the Sirt1/FoxO1 pathway.
Main Methods:
- Adipocytes were exposed to free fatty acids (FFA).
- FoxO1 protein levels, ROS production, and adipokine mRNA expression were measured.
- Resveratrol treatment was used to modulate the Sirt1/FoxO1 pathway.
Main Results:
- FFA exposure decreased FoxO1 levels, increased ROS production, and altered adipokine profiles (decreased adiponectin, increased IL-6, PAI-1, MCP-1).
- db/db mice showed decreased FoxO1 levels in adipocytes.
- Resveratrol treatment increased FoxO1, decreased ROS, and partially reversed the adipokine pattern.
Conclusions:
- Decreased FoxO1 levels characterize insulin-resistant adipocytes induced by high fatty acid concentrations.
- Modulating the Sirt1/FoxO1 pathway presents a potential therapeutic strategy for obesity-induced adipocyte dysfunction.
