Dietary protein digestion and absorption kinetics determine the postprandial increase in muscle protein synthesis. We recently demonstrated that body position during feeding can modulate the postprandial rise in plasma amino acid availability. Here we investigated whether protein ingestion in an upright sitting body position accelerates gastric emptying and improves dietary protein digestion and subsequent amino acid absorption compared with feeding in a supine lying body position. In a crossover design, 8 young males (age, 26 +/- 1 years; body mass index, 24.0 +/- 0.9 kg.m(-2)) ingested 20 g intrinsically L-[1-C-13]-phenylalanine-labeled milk protein plus 1.5 g paracetamol while sitting in an upright position or lying down in a supine posi...
Whole body and skeletal muscle mass is regulated by counterbalanced fluctuations between protein syn...
BACKGROUND: Protein turnover in skeletal muscle tissue is highly responsive to nutrient intake in he...
Background Protein turnover in skeletal muscle tissue is highly responsive to nutrient intake in hea...
Dietary protein digestion and absorption kinetics determine the postprandial increase in muscle prot...
Dietary protein digestion and absorption kinetics determine the post-prandial increase in muscle pro...
Dietary protein digestion and amino acid absorption kinetics determine the post-prandial muscle prot...
Dietary protein digestion and amino acid absorption kinetics determine the post-prandial muscle prot...
Background: The rate of protein digestion and amino acid absorption determines the postprandial rise...
Background The rate of protein digestion and amino acid absorption determines the postprandial rise ...
Background: Dietary protein ingestion stimulates muscle protein synthesis by providing amino acids t...
Background: Dietary protein is required to attenuate the loss of muscle mass and to support recovery...
Adequate nutritional intake is essential to maintain nutritional status, support essential body func...
The aging process is associated with loss of muscle mass and reduced strength. This increases the ri...
Whole body and skeletal muscle mass is regulated by counterbalanced fluctuations between protein syn...
BACKGROUND: Protein turnover in skeletal muscle tissue is highly responsive to nutrient intake in he...
Background Protein turnover in skeletal muscle tissue is highly responsive to nutrient intake in hea...
Dietary protein digestion and absorption kinetics determine the postprandial increase in muscle prot...
Dietary protein digestion and absorption kinetics determine the post-prandial increase in muscle pro...
Dietary protein digestion and amino acid absorption kinetics determine the post-prandial muscle prot...
Dietary protein digestion and amino acid absorption kinetics determine the post-prandial muscle prot...
Background: The rate of protein digestion and amino acid absorption determines the postprandial rise...
Background The rate of protein digestion and amino acid absorption determines the postprandial rise ...
Background: Dietary protein ingestion stimulates muscle protein synthesis by providing amino acids t...
Background: Dietary protein is required to attenuate the loss of muscle mass and to support recovery...
Adequate nutritional intake is essential to maintain nutritional status, support essential body func...
The aging process is associated with loss of muscle mass and reduced strength. This increases the ri...
Whole body and skeletal muscle mass is regulated by counterbalanced fluctuations between protein syn...
BACKGROUND: Protein turnover in skeletal muscle tissue is highly responsive to nutrient intake in he...
Background Protein turnover in skeletal muscle tissue is highly responsive to nutrient intake in hea...