Role of Fish Oil in Preventing Paternal Obesity and Improving Offspring Skeletal Muscle Health

Author:

Xiong Ligeng1,Dorus Stephen2,Ramalingam Latha1ORCID

Affiliation:

1. Department of Nutrition and Food Studies, Syracuse University, Syracuse, NY 13244, USA

2. Department of Biology, Syracuse University, Syracuse, NY 13244, USA

Abstract

This study investigates the effects of fish oil supplementation during the periconceptional period in male mice. Specifically, it examines the impact of fish oil on intergenerational health, as determined by skeletal muscle markers. To mimic paternal obesity, thirty mice were separated into three groups with distinct dietary regimes for 10 weeks: a high-fat diet (HF), a high-fat diet supplemented with fish oil (FO), and a low-fat diet (LF). Then, these mice mated with control female mice. Dams and offspring consumed a chow diet during gestation and lactation, and the offspring continued on a chow diet. To study short-term (8 weeks) and long-term (16 weeks) effects of FO, skeletal muscle was isolated at the time of sacrifice, and gene analyses were performed. Results suggest that offspring born to FO-supplemented sires exhibited a significant, short-term upregulation of genes associated with insulin signaling, fatty acid oxidation, and skeletal muscle growth with significant downregulation of genes involved in fatty acid synthesis at 8 weeks. Prominent differences in the above markers were observed at 8 weeks compared to 16 weeks. These findings suggest the potential benefits of FO supplementation for fathers during the periconceptional period in reducing the health risks of offspring due to paternal obesity.

Funder

American Heart Association

Publisher

MDPI AG

Subject

General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

Reference65 articles.

1. Hales, C.M. (2020). Prevalence of Obesity and Severe Obesity among Adults: United States, 2017–2018, CDC.

2. Excessive Caloric Intake Acutely Causes Oxidative Stress, GLUT4 Carbonylation, and Insulin Resistance in Healthy Men;Boden;Sci. Transl. Med.,2015

3. The Impact of Oxidative Stress on Adipose Tissue Energy Balance;Masschelin;Front. Physiol.,2020

4. Mechanism of Increased Risk of Insulin Resistance in Aging Skeletal Muscle;Shou;Diabetol. Metab. Syndr.,2020

5. The Physiopathologic Role of Oxidative Stress in Skeletal Muscle;Scicchitano;Mech. Ageing Dev.,2018

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