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Bioelectrical Impedance Vector Analysis and Phase Angle on Different Oral Zinc Supplementation in Eutrophic Children: Randomized Triple-Blind Study

The parameters derived from bioelectrical impedance, phase angle (PA) and bioelectrical impedance vector analysis (BIVA) have been associated with cell membrane integrity and body cell mass. Zinc is a micronutrient that exerts important structural functions and acts in maintaining cellular functiona...

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Autores principales: Vermeulen, Karina M., Lopes, Márcia Marília G. D., Alves, Camila X., Brito, Naira J. N., Almeida, Maria das Graças, Leite-Lais, Lucia, Vale, Sancha Helena L., Brandão-Neto, José
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6627540/
https://www.ncbi.nlm.nih.gov/pubmed/31142044
http://dx.doi.org/10.3390/nu11061215
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author Vermeulen, Karina M.
Lopes, Márcia Marília G. D.
Alves, Camila X.
Brito, Naira J. N.
Almeida, Maria das Graças
Leite-Lais, Lucia
Vale, Sancha Helena L.
Brandão-Neto, José
author_facet Vermeulen, Karina M.
Lopes, Márcia Marília G. D.
Alves, Camila X.
Brito, Naira J. N.
Almeida, Maria das Graças
Leite-Lais, Lucia
Vale, Sancha Helena L.
Brandão-Neto, José
author_sort Vermeulen, Karina M.
collection PubMed
description The parameters derived from bioelectrical impedance, phase angle (PA) and bioelectrical impedance vector analysis (BIVA) have been associated with cell membrane integrity and body cell mass. Zinc is a micronutrient that exerts important structural functions and acts in maintaining cellular functionality. To evaluate cell integrity and body cell mass, PA and BIVA were evaluated in children orally supplemented with zinc at different concentrations. Anthropometric, bioelectrical (resistance and reactance) and serum zinc variables were collected from two randomized, triple-blind, controlled clinical trials. Sampling was composed of 71 children consisting of three groups: a control group who received a placebo and two experimental groups who received oral supplementation of 5 or 10 mg-Zn/day for three months. The three groups presented increases (p < 0.001) in the linear height and weight. In the group supplemented with 10 mg-Zn/day, there was an increase in reactance values (p = 0.036) and PA (p = 0.002), in addition to vector displacement (p < 0.001) in relation to the confidence ellipses. An increase in serum zinc concentration was found (p < 0.001) in all three groups. Whit this, the supplementation with 10 mg-Zn/day promotes changes in the integrity of the cell membrane associated with the increase in the cellular mass of healthy children.
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spelling pubmed-66275402019-07-23 Bioelectrical Impedance Vector Analysis and Phase Angle on Different Oral Zinc Supplementation in Eutrophic Children: Randomized Triple-Blind Study Vermeulen, Karina M. Lopes, Márcia Marília G. D. Alves, Camila X. Brito, Naira J. N. Almeida, Maria das Graças Leite-Lais, Lucia Vale, Sancha Helena L. Brandão-Neto, José Nutrients Article The parameters derived from bioelectrical impedance, phase angle (PA) and bioelectrical impedance vector analysis (BIVA) have been associated with cell membrane integrity and body cell mass. Zinc is a micronutrient that exerts important structural functions and acts in maintaining cellular functionality. To evaluate cell integrity and body cell mass, PA and BIVA were evaluated in children orally supplemented with zinc at different concentrations. Anthropometric, bioelectrical (resistance and reactance) and serum zinc variables were collected from two randomized, triple-blind, controlled clinical trials. Sampling was composed of 71 children consisting of three groups: a control group who received a placebo and two experimental groups who received oral supplementation of 5 or 10 mg-Zn/day for three months. The three groups presented increases (p < 0.001) in the linear height and weight. In the group supplemented with 10 mg-Zn/day, there was an increase in reactance values (p = 0.036) and PA (p = 0.002), in addition to vector displacement (p < 0.001) in relation to the confidence ellipses. An increase in serum zinc concentration was found (p < 0.001) in all three groups. Whit this, the supplementation with 10 mg-Zn/day promotes changes in the integrity of the cell membrane associated with the increase in the cellular mass of healthy children. MDPI 2019-05-28 /pmc/articles/PMC6627540/ /pubmed/31142044 http://dx.doi.org/10.3390/nu11061215 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
Vermeulen, Karina M.
Lopes, Márcia Marília G. D.
Alves, Camila X.
Brito, Naira J. N.
Almeida, Maria das Graças
Leite-Lais, Lucia
Vale, Sancha Helena L.
Brandão-Neto, José
Bioelectrical Impedance Vector Analysis and Phase Angle on Different Oral Zinc Supplementation in Eutrophic Children: Randomized Triple-Blind Study
title Bioelectrical Impedance Vector Analysis and Phase Angle on Different Oral Zinc Supplementation in Eutrophic Children: Randomized Triple-Blind Study
title_full Bioelectrical Impedance Vector Analysis and Phase Angle on Different Oral Zinc Supplementation in Eutrophic Children: Randomized Triple-Blind Study
title_fullStr Bioelectrical Impedance Vector Analysis and Phase Angle on Different Oral Zinc Supplementation in Eutrophic Children: Randomized Triple-Blind Study
title_full_unstemmed Bioelectrical Impedance Vector Analysis and Phase Angle on Different Oral Zinc Supplementation in Eutrophic Children: Randomized Triple-Blind Study
title_short Bioelectrical Impedance Vector Analysis and Phase Angle on Different Oral Zinc Supplementation in Eutrophic Children: Randomized Triple-Blind Study
title_sort bioelectrical impedance vector analysis and phase angle on different oral zinc supplementation in eutrophic children: randomized triple-blind study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6627540/
https://www.ncbi.nlm.nih.gov/pubmed/31142044
http://dx.doi.org/10.3390/nu11061215
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