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Fenofibrate Decreases Insulin Clearance and Insulin Secretion to Maintain Insulin Sensitivity
Sadeesh K Ramakrishnan1, Lucia Russo1, Simona S Ghanem1
1From the Center for Diabetes and Endocrine Research, College of Medicine and Life Sciences, The University of Toledo, Toledo, Ohio 43614.
Abstract:
High fat diet reduces the expression of CEACAM1 (carcinoembryonic antigen-related cell adhesion molecule 1), a transmembrane glycoprotein that promotes insulin clearance and down-regulates fatty acid synthase activity in the liver upon its phosphorylation by the insulin receptor. Because peroxisome proliferator-activated receptor α (PPARα) transcriptionally suppresses CEACAM1 expression, we herein examined whether high fat down-regulates CEACAM1 expression in a PPARα-dependent mechanism. By activating PPARα, the lipid-lowering drug fenofibrate reverses dyslipidemia and improves insulin sensitivity in type 2 diabetes in part by promoting fatty acid oxidation. Despite reducing glucose-stimulated insulin secretion, fenofibrate treatment does not result in insulin insufficiency. To examine whether this is mediated by a parallel decrease in CEACAM1-dependent hepatic insulin clearance pathways, we fed wild-type and Pparα-/- null mice a high fat diet supplemented with either fenofibrate or Wy14643, a selective PPARα agonist, and examined their effect on insulin metabolism and action. We demonstrated that the decrease in insulin secretion by fenofibrate and Wy14643 is accompanied by reduction in insulin clearance in wild-type but not Pparα-/- mice, thereby maintaining normoinsulinemia and insulin sensitivity despite continuous high fat intake. Intact insulin secretion in L-CC1 mice with protected hepatic insulin clearance and CEACAM1 levels provides in vivo evidence that insulin secretion responds to changes in insulin clearance to maintain physiologic insulin and glucose homeostasis. These results also emphasize the relevant role of hepatic insulin extraction in regulating insulin sensitivity.
Insights
High-fat diets lower CEACAM1, impacting insulin clearance. PPARα activation by drugs like fenofibrate reduces CEACAM1 and insulin clearance, maintaining insulin sensitivity during high-fat intake.
Area of Science:
- Metabolic disease research
- Molecular endocrinology
- Hepatology
Background:
- High-fat diets (HFD) decrease CEACAM1 (carcinoembryonic antigen-related cell adhesion molecule 1), a protein crucial for insulin clearance and liver fatty acid metabolism.
- Peroxisome proliferator-activated receptor α (PPARα) transcriptionally suppresses CEACAM1, suggesting a potential mechanism for HFD-induced changes.
Purpose of the Study:
- To investigate if HFD down-regulates CEACAM1 expression via a PPARα-dependent pathway.
- To determine the role of CEACAM1-mediated hepatic insulin clearance in maintaining insulin sensitivity under HFD conditions.
Main Methods:
- Wild-type and Pparα knockout mice were fed HFD supplemented with fenofibrate or Wy14643 (selective PPARα agonists).
- Insulin metabolism, insulin sensitivity, CEACAM1 levels, and hepatic insulin clearance were assessed.
Main Results:
- Fenofibrate and Wy14643 treatments reduced insulin secretion and hepatic insulin clearance in wild-type mice, but not in Pparα knockout mice.
- This reduction in insulin clearance, mediated by decreased CEACAM1, preserved normoinsulinemia and insulin sensitivity despite HFD.
- Intact insulin secretion and CEACAM1 levels in protected mice demonstrated a compensatory response to maintain glucose homeostasis.
Conclusions:
- PPARα activation mediates the HFD-induced downregulation of CEACAM1.
- Hepatic insulin clearance, regulated by CEACAM1, plays a critical role in maintaining insulin sensitivity and glucose homeostasis during high-fat conditions.
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