Renal denervation reverses hepatic insulin resistance induced by high-fat diet

21Citations
Citations of this article
27Readers
Mendeley users who have this article in their library.

Abstract

Activation of the sympathetic nervous system (SNS) constitutes a putative mechanism of obesity-induced insulin resistance. Thus, we hypothesized that inhibiting the SNS by using renal denervation (RDN) will improve insulin sensitivity (SI) in a nonhypertensive obese canine model. SI was measured using euglycemic-hyperinsulinemic clamp (EGC), before (week 0 [w0]) and after 6 weeks of high-fat diet (w6-HFD) feeding and after either RDN (HFD + RDN) or sham surgery (HFD + sham). As expected, HFD induced insulin resistance in the liver (sham 2.5 6 0.6 vs. 0.7 6 0.6 3 1024 dL kg21 min21 pmol/L21 at w0 vs. w6-HFD [P < 0.05], respectively; HFD + RDN 1.6 6 0.3 vs. 0.56 0.33 1024 dL kg21 min21 pmol/L21 at w0 vs. w6-HFD [P < 0.001], respectively). In sham animals, this insulin resistance persisted, yet RDN completely normalized hepatic SI in HFD-fed animals (1.8 6 0.3 3 1024 dL kg21 min21 pmol/L21 at HFD + RDN [P < 0.001] vs. w6-HFD, [P not significant] vs. w0) by reducing hepatic gluconeogenic genes, including G6Pase, PEPCK, and FOXO1. The data suggest that RDN downregulated hepatic gluconeogenesis primarily by upregulating liver X receptor a through the natriuretic peptide pathway. In conclusion, bilateral RDN completely normalizes hepatic SI in obese canines. These preclinical data implicate a novel mechanistic role for the renal nerves in the regulation of insulin action specifically at the level of the liver and show that the renal nerves constitute a new therapeutic target to counteract insulin resistance.

Cite

CITATION STYLE

APA

Iyer, M. S., Bergman, R. N., Korman, J. E., Woolcott, O. O., Kabir, M., Victor, R. G., … Kolka, C. (2016). Renal denervation reverses hepatic insulin resistance induced by high-fat diet. Diabetes, 65(11), 3453–3463. https://doi.org/10.2337/db16-0698

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free