» Articles » PMID: 33561210

The Inhibition of Metabolic Inflammation by EPA Is Associated with Enhanced Mitochondrial Fusion and Insulin Signaling in Human Primary Myotubes

Overview
Journal J Nutr
Publisher Elsevier
Date 2021 Feb 9
PMID 33561210
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

Background: Sustained fuel excess triggers low-grade inflammation that can drive mitochondrial dysfunction, a pivotal defect in the pathogenesis of insulin resistance in skeletal muscle.

Objectives: This study aimed to investigate whether inflammation in skeletal muscle can be prevented by EPA, and if this is associated with an improvement in mitochondrial fusion, membrane potential, and insulin signaling.

Methods: Human primary myotubes were treated for 24 h with palmitic acid (PA, 500 μM) under hyperglycemic conditions (13 mM glucose), which represents nutrient overload, and in the presence or absence of EPA (100 μM). After the treatments, the expression of peroxisome proliferator-activated receptor γ coactivator 1-α (PPARGC1A) and IL6 was assessed by q-PCR. Western blot was used to measure the abundance of the inhibitor of NF-κB (IKBA), mitofusin-2 (MFN2), mitochondrial electron transport chain complex proteins, and insulin-dependent AKT (Ser473) and AKT substrate 160 (AS 160; Thr642) phosphorylation. Mitochondrial dynamics and membrane potential were evaluated using immunocytochemistry and the JC-1 (tetraethylbenzimidazolylcarbocyanine iodide) dye, respectively. Data were analyzed using 1-factor ANOVA followed by Tukey post hoc test.

Results: Nutrient excess activated the proinflammatory NFκB signaling marked by a decrease in IKBA (40%; P < 0.05) and the upregulation of IL6 mRNA (12-fold; P < 0.001). It also promoted mitochondrial fragmentation (53%; P < 0.001). All these effects were counteracted by EPA. Furthermore, nutrient overload-induced drop in mitochondrial membrane potential (6%; P < 0.05) was prevented by EPA. Finally, EPA inhibited fuel surplus-induced impairment in insulin-mediated phosphorylation of AKT (235%; P < 0.01) and AS160 (49%; P < 0.05).

Conclusions: EPA inhibited NFκB signaling, which was associated with an attenuation of the deleterious effects of PA and hyperglycemia on both mitochondrial health and insulin signaling in human primary myotubes. Thus, EPA might preserve skeletal muscle metabolic health during sustained fuel excess but this requires confirmation in human clinical trials.

Citing Articles

Influence of Type 2 Diabetes and Adipose Tissue Dysfunction on Breast Cancer and Potential Benefits from Nutraceuticals Inducible in Microalgae.

Sergi D, Melloni M, Passaro A, Neri L Nutrients. 2024; 16(19).

PMID: 39408212 PMC: 11478231. DOI: 10.3390/nu16193243.


HDL-Cholesterol Subfraction Dimensional Distribution Is Associated with Cardiovascular Disease Risk and Is Predicted by Visceral Adiposity and Dietary Lipid Intake in Women.

Sergi D, Sanz J, Trentini A, Bonaccorsi G, Angelini S, Castaldo F Nutrients. 2024; 16(10).

PMID: 38794763 PMC: 11124017. DOI: 10.3390/nu16101525.


Impact of the Mediterranean Diet on the Gut Microbiome of a Well-Defined Cohort of Healthy Individuals.

Vazquez-Cuesta S, Lozano Garcia N, Rodriguez-Fernandez S, Fernandez-Avila A, Bermejo J, Fernandez-Aviles F Nutrients. 2024; 16(6).

PMID: 38542704 PMC: 10974552. DOI: 10.3390/nu16060793.


Editorial: The role of dietary fatty acids in metabolic health.

Bordoni L, Zec M, Naumovski N, Sergi D Front Physiol. 2023; 14:1211151.

PMID: 37288432 PMC: 10242416. DOI: 10.3389/fphys.2023.1211151.


Interleukin-18 Is a Potential Biomarker Linking Dietary Fatty Acid Quality and Insulin Resistance: Results from a Cross-Sectional Study in Northern Italy.

Sergi D, Sanz J, Lazzer S, Brombo G, Zuliani G, Biolo G Nutrients. 2023; 15(7).

PMID: 37049621 PMC: 10097292. DOI: 10.3390/nu15071782.