ArticleClinical science (London, England : 1979)2010
Impaired muscle protein anabolic response to insulin and amino acids in heart failure patients: relationship with markers of immune activation.
Article in Clinical science (London, England : 1979), 2010. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers, 1 of them a synthesis that pooled it.
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Who cites it
13 citing papers in PubMed, 1 synthesis or guideline pooled it, 35 citations in OpenAlex.
- Role of insulin in the regulation of human skeletal muscle protein synthesis and breakdown: a systematic review and meta-analysis.Diabetologia · 2016Pooled it
- N-Carbamylglutamate Improves Production Performance and Muscle Growth by Regulating Protein Digestive Function and Muscle Protein Synthesis in Broiler Chickens.Animals : an open access journal from MDPI · 2026Article
- The effect of diet, lifestyle and psychological factors in the prognosis of ischemic heart failure.Metabolism open · 2019Article
- miR-424-5p reduces ribosomal RNA and protein synthesis in muscle wasting.Journal of cachexia, sarcopenia and muscle · 2018Article
- Association of body mass index and visceral fat with aortic valve calcification and mortality after transcatheter aortic valve replacement: the obesity paradox in severe aortic stenosis.Diabetology & metabolic syndrome · 2017Article
- The effects of resistance exercise training on macro- and micro-circulatory responses to feeding and skeletal muscle protein anabolism in older men.The Journal of physiology · 2015Article
- A validation of the application of D(2)O stable isotope tracer techniques for monitoring day-to-day changes in muscle protein subfraction synthesis in humans.American journal of physiology. Endocrinology and metabolism · 2014Article
- Mechanisms for cachexia in heart failure.Current heart failure reports · 2013Review
- Adiponectin: key role and potential target to reverse energy wasting in chronic heart failure.Heart failure reviews · 2013Review
- Skeletal muscle protein metabolism in human heart failure.Current opinion in clinical nutrition and metabolic care · 2013Review
- Skeletal muscle mitochondrial density, gene expression, and enzyme activities in human heart failure: minimal effects of the disease and resistance training.Journal of applied physiology (Bethesda, Md. : 1985) · 2012Article
- Resistance training alters skeletal muscle structure and function in human heart failure: effects at the tissue, cellular and molecular levels.The Journal of physiology · 2012Article
- Targeting anabolic impairment in response to resistance exercise in older adults with mobility impairments: potential mechanisms and rehabilitation approaches.Journal of aging research · 2012Article
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4 authors at 1 institution in 1 country.
Funding
Abstract
Patients with chronic HF (heart failure) experience muscle atrophy during the course of the disease. The mechanisms underlying muscle atrophy in HF, however, are not understood. Thus we evaluated leg phenylalanine balance and kinetics in HF patients and controls following a brief fast (24 h) and under euglycaemic-hyperinsulinaemic-hyperaminoacidaemic conditions to determine whether HF increases muscle protein catabolism in response to nutritional deprivation and/or diminishes the anabolic response to meal-related stimuli (insulin and amino acids) and whether alterations in protein metabolism correlate to circulating cytokine levels. No differences in phenylalanine balance, rate of appearance or rate of disappearance were found between patients and controls under fasting conditions. However, the anabolic response to hyperinsulinaemia-hyperaminoacidaemia was reduced by more than 50% in patients compared with controls. The diminished anabolic response was due to reduced suppression of the leg phenylalanine appearance rate, an index of protein breakdown, in HF patients; whereas no group difference was found in the increase in the leg phenylalanine disappearance rate, an index of protein synthesis. The diminished responses of both phenylalanine balance and appearance rate to hyperinsulinaemia-hyperaminoacidaemia were related to greater circulating IL-6 (interleukin-6) levels. Our results suggest that, following a brief period of nutritional deprivation, HF patients demonstrate an impaired muscle protein anabolic response to meal-related stimuli, due to an inability to suppress muscle proteolysis, and that this diminished protein anabolic response correlates with markers of immune activation. The inability to stimulate muscle protein anabolism following periods of nutritional deficiency may contribute to muscle wasting in HF patients.
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