Cargando…

Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure

Heart failure in older individuals is normally associated with a high body mass index and relatively low lean body mass due to, in part, a resistance to the normal anabolic effect of dietary protein. In this study we have investigated the hypothesis that consumption of a specially-formulated composi...

Descripción completa

Detalles Bibliográficos
Autores principales: Kim, Il-Young, Park, Sanghee, Smeets, Ellen T. H. C., Schutzler, Scott, Azhar, Gohar, Wei, Jeanne Y., Ferrando, Arny A., Wolfe, Robert R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6627910/
https://www.ncbi.nlm.nih.gov/pubmed/31212940
http://dx.doi.org/10.3390/nu11061360
_version_ 1783434843695087616
author Kim, Il-Young
Park, Sanghee
Smeets, Ellen T. H. C.
Schutzler, Scott
Azhar, Gohar
Wei, Jeanne Y.
Ferrando, Arny A.
Wolfe, Robert R.
author_facet Kim, Il-Young
Park, Sanghee
Smeets, Ellen T. H. C.
Schutzler, Scott
Azhar, Gohar
Wei, Jeanne Y.
Ferrando, Arny A.
Wolfe, Robert R.
author_sort Kim, Il-Young
collection PubMed
description Heart failure in older individuals is normally associated with a high body mass index and relatively low lean body mass due to, in part, a resistance to the normal anabolic effect of dietary protein. In this study we have investigated the hypothesis that consumption of a specially-formulated composition of essential amino acids (HiEAAs) can overcome anabolic resistance in individuals with heart failure and stimulate the net gain of body protein to a greater extent than a commercially popular protein-based meal replacement beverage with greater caloric but lower essential amino acid (EAA) content (LoEAA). A randomized cross-over design was used. Protein kinetics were determined using primed continuous infusions of L-((2)H(5))phenylalanine and L-((2)H(2))tyrosine in the basal state and for four hours following consumption of either beverage. Both beverages induced positive net protein balance (i.e., anabolic response). However, the anabolic response was more than two times greater with the HiEAA than the LoEAA (p < 0.001), largely through a greater suppression of protein breakdown (p < 0.001). Net protein accretion (g) was also greater in the HiEAA when data were normalized for either amino acid or caloric content (p < 0.001). We conclude that a properly formulated EAA mixture can elicit a greater anabolic response in individuals with heart failure than a protein-based meal replacement. Since heart failure is often associated with obesity, the minimal caloric value of the HiEAA formulation is advantageous.
format Online
Article
Text
id pubmed-6627910
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-66279102019-07-23 Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure Kim, Il-Young Park, Sanghee Smeets, Ellen T. H. C. Schutzler, Scott Azhar, Gohar Wei, Jeanne Y. Ferrando, Arny A. Wolfe, Robert R. Nutrients Article Heart failure in older individuals is normally associated with a high body mass index and relatively low lean body mass due to, in part, a resistance to the normal anabolic effect of dietary protein. In this study we have investigated the hypothesis that consumption of a specially-formulated composition of essential amino acids (HiEAAs) can overcome anabolic resistance in individuals with heart failure and stimulate the net gain of body protein to a greater extent than a commercially popular protein-based meal replacement beverage with greater caloric but lower essential amino acid (EAA) content (LoEAA). A randomized cross-over design was used. Protein kinetics were determined using primed continuous infusions of L-((2)H(5))phenylalanine and L-((2)H(2))tyrosine in the basal state and for four hours following consumption of either beverage. Both beverages induced positive net protein balance (i.e., anabolic response). However, the anabolic response was more than two times greater with the HiEAA than the LoEAA (p < 0.001), largely through a greater suppression of protein breakdown (p < 0.001). Net protein accretion (g) was also greater in the HiEAA when data were normalized for either amino acid or caloric content (p < 0.001). We conclude that a properly formulated EAA mixture can elicit a greater anabolic response in individuals with heart failure than a protein-based meal replacement. Since heart failure is often associated with obesity, the minimal caloric value of the HiEAA formulation is advantageous. MDPI 2019-06-17 /pmc/articles/PMC6627910/ /pubmed/31212940 http://dx.doi.org/10.3390/nu11061360 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kim, Il-Young
Park, Sanghee
Smeets, Ellen T. H. C.
Schutzler, Scott
Azhar, Gohar
Wei, Jeanne Y.
Ferrando, Arny A.
Wolfe, Robert R.
Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
title Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
title_full Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
title_fullStr Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
title_full_unstemmed Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
title_short Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
title_sort consumption of a specially-formulated mixture of essential amino acids promotes gain in whole-body protein to a greater extent than a complete meal replacement in older women with heart failure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6627910/
https://www.ncbi.nlm.nih.gov/pubmed/31212940
http://dx.doi.org/10.3390/nu11061360
work_keys_str_mv AT kimilyoung consumptionofaspeciallyformulatedmixtureofessentialaminoacidspromotesgaininwholebodyproteintoagreaterextentthanacompletemealreplacementinolderwomenwithheartfailure
AT parksanghee consumptionofaspeciallyformulatedmixtureofessentialaminoacidspromotesgaininwholebodyproteintoagreaterextentthanacompletemealreplacementinolderwomenwithheartfailure
AT smeetsellenthc consumptionofaspeciallyformulatedmixtureofessentialaminoacidspromotesgaininwholebodyproteintoagreaterextentthanacompletemealreplacementinolderwomenwithheartfailure
AT schutzlerscott consumptionofaspeciallyformulatedmixtureofessentialaminoacidspromotesgaininwholebodyproteintoagreaterextentthanacompletemealreplacementinolderwomenwithheartfailure
AT azhargohar consumptionofaspeciallyformulatedmixtureofessentialaminoacidspromotesgaininwholebodyproteintoagreaterextentthanacompletemealreplacementinolderwomenwithheartfailure
AT weijeanney consumptionofaspeciallyformulatedmixtureofessentialaminoacidspromotesgaininwholebodyproteintoagreaterextentthanacompletemealreplacementinolderwomenwithheartfailure
AT ferrandoarnya consumptionofaspeciallyformulatedmixtureofessentialaminoacidspromotesgaininwholebodyproteintoagreaterextentthanacompletemealreplacementinolderwomenwithheartfailure
AT wolferobertr consumptionofaspeciallyformulatedmixtureofessentialaminoacidspromotesgaininwholebodyproteintoagreaterextentthanacompletemealreplacementinolderwomenwithheartfailure