Maternal nutrient restriction affects properties of skeletal muscle in offspring
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Open Access
- 8 August 2006
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 575 (1) , 241-250
- https://doi.org/10.1113/jphysiol.2006.112110
Abstract
Maternal nutrient restriction (NR) affects fetal development with long‐term consequences on postnatal health of offspring, including predisposition to obesity and diabetes. Most studies have been conducted in fetuses in late gestation, and little information is available on the persistent impact of NR from early to mid‐gestation on properties of offspring skeletal muscle, which was the aim of this study. Pregnant ewes were subjected to 50% NR from day 28–78 of gestation and allowed to deliver. The longissimus dorsi muscle was sampled from 8‐month‐old offspring. Maternal NR during early to mid‐gestation decreased the number of myofibres in the offspring and increased the ratio of myosin IIb to other isoforms by 17.6 ± 4.9% (P < 0.05) compared with offspring of ad libitum fed ewes. Activity of carnitine palmitoyltransferase‐1, a key enzyme controlling fatty acid oxidation, was reduced by 24.7 ± 4.5% (P < 0.05) in skeletal muscle of offspring of NR ewes and would contribute to increased fat accumulation observed in offspring of NR ewes. Intramuscular triglyceride content (IMTG) was increased in skeletal muscle of NR lambs, a finding which may be linked to predisposition to diabetes in offspring of NR mothers, since enhanced IMTG predisposes to insulin resistance in skeletal muscle. Proteomic analysis by two‐dimensional gel electrophoresis demonstrated downregulation of several catabolic enzymes in 8‐month‐old offspring of NR ewes. These data demonstrate that the early to mid‐gestation period is important for skeletal muscle development. Impaired muscle development during this stage of gestation affects the number and composition of fibres in offspring which may lead to long‐term physiological consequences, including predisposition to obesity and diabetes.Keywords
This publication has 48 references indexed in Scilit:
- Maternal undernutrition during early to mid-gestation in the ewe results in altered growth, adiposity, and glucose tolerance in male offspring1Journal of Animal Science, 2007
- Postexercise insulin sensitivity is not impaired after an overnight lipid infusionAmerican Journal of Physiology-Endocrinology and Metabolism, 2005
- Maternal Nutrient Restriction Reduces Concentrations of Amino Acids and Polyamines in Ovine Maternal and Fetal Plasma and Fetal Fluids1Biology of Reproduction, 2004
- Exercise protects against glucose intolerance in individuals with a small body size at birthPreventive Medicine, 2004
- Identification of human whole saliva protein components using proteomicsProteomics, 2004
- Efficiency improvement of peptide identification for an organism without complete genome sequence, using expressed sequence tag database and tandem mass spectral dataProteomics, 2003
- AMP-activated protein kinase, super metabolic regulatorBiochemical Society Transactions, 2003
- Differential expression of proteins in renal cortex and medulla: A proteomic approach11See Editorial by Bonventre, p. 1470.Kidney International, 2002
- Relationship between muscle fibre composition, glucose transporter protein 4 and exercise training: possible consequences in non‐insulin‐dependent diabetes mellitusActa Physiologica Scandinavica, 2001
- Enhanced protein electrophoresis technique for separating human skeletal muscle myosin heavy chain isoformsElectrophoresis, 1999