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Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testosterone Biosynthesis

A new role for fat supplements, in particular conjugated linoleic acid (CLA), has been delineated in steroidogenesis, although the underlying molecular mechanisms have not yet been elucidated. The aims of the present study were to identify the pathway stimulated by CLA supplementation using a cell c...

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Autores principales: Barone, Rosario, Macaluso, Filippo, Catanese, Patrizia, Marino Gammazza, Antonella, Rizzuto, Luigi, Marozzi, Paola, Lo Giudice, Giuseppe, Stampone, Tomaso, Cappello, Francesco, Morici, Giuseppe, Zummo, Giovanni, Farina, Felicia, Di Felice, Valentina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3818175/
https://www.ncbi.nlm.nih.gov/pubmed/24223995
http://dx.doi.org/10.1371/journal.pone.0079686
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author Barone, Rosario
Macaluso, Filippo
Catanese, Patrizia
Marino Gammazza, Antonella
Rizzuto, Luigi
Marozzi, Paola
Lo Giudice, Giuseppe
Stampone, Tomaso
Cappello, Francesco
Morici, Giuseppe
Zummo, Giovanni
Farina, Felicia
Di Felice, Valentina
author_facet Barone, Rosario
Macaluso, Filippo
Catanese, Patrizia
Marino Gammazza, Antonella
Rizzuto, Luigi
Marozzi, Paola
Lo Giudice, Giuseppe
Stampone, Tomaso
Cappello, Francesco
Morici, Giuseppe
Zummo, Giovanni
Farina, Felicia
Di Felice, Valentina
author_sort Barone, Rosario
collection PubMed
description A new role for fat supplements, in particular conjugated linoleic acid (CLA), has been delineated in steroidogenesis, although the underlying molecular mechanisms have not yet been elucidated. The aims of the present study were to identify the pathway stimulated by CLA supplementation using a cell culture model and to determine whether this same pathway is also stimulated in vivo by CLA supplementation associated with exercise. In vitro, Leydig tumour rat cells (R2C) supplemented with different concentrations of CLA exhibited increasing testosterone biosynthesis accompanied by increasing levels of CYP17A1 mRNA and protein. In vivo, trained mice showed an increase in free plasma testosterone and an up-regulation of CYP17A1 mRNA and protein. The effect of training on CYP17A1 expression and testosterone biosynthesis was significantly higher in the trained mice supplemented with CLA compared to the placebo. The results of the present study demonstrated that CLA stimulates testosterone biosynthesis via CYP17A1, and endurance training led to the synthesis of testosterone in vivo by inducing the overexpression of CYP17A1 mRNA and protein in the Leydig cells of the testis. This effect was enhanced by CLA supplementation. Therefore, CLA-associated physical activity may be used for its steroidogenic property in different fields, such as alimentary industry, human reproductive medicine, sport science, and anti-muscle wasting.
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spelling pubmed-38181752013-11-09 Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testosterone Biosynthesis Barone, Rosario Macaluso, Filippo Catanese, Patrizia Marino Gammazza, Antonella Rizzuto, Luigi Marozzi, Paola Lo Giudice, Giuseppe Stampone, Tomaso Cappello, Francesco Morici, Giuseppe Zummo, Giovanni Farina, Felicia Di Felice, Valentina PLoS One Research Article A new role for fat supplements, in particular conjugated linoleic acid (CLA), has been delineated in steroidogenesis, although the underlying molecular mechanisms have not yet been elucidated. The aims of the present study were to identify the pathway stimulated by CLA supplementation using a cell culture model and to determine whether this same pathway is also stimulated in vivo by CLA supplementation associated with exercise. In vitro, Leydig tumour rat cells (R2C) supplemented with different concentrations of CLA exhibited increasing testosterone biosynthesis accompanied by increasing levels of CYP17A1 mRNA and protein. In vivo, trained mice showed an increase in free plasma testosterone and an up-regulation of CYP17A1 mRNA and protein. The effect of training on CYP17A1 expression and testosterone biosynthesis was significantly higher in the trained mice supplemented with CLA compared to the placebo. The results of the present study demonstrated that CLA stimulates testosterone biosynthesis via CYP17A1, and endurance training led to the synthesis of testosterone in vivo by inducing the overexpression of CYP17A1 mRNA and protein in the Leydig cells of the testis. This effect was enhanced by CLA supplementation. Therefore, CLA-associated physical activity may be used for its steroidogenic property in different fields, such as alimentary industry, human reproductive medicine, sport science, and anti-muscle wasting. Public Library of Science 2013-11-05 /pmc/articles/PMC3818175/ /pubmed/24223995 http://dx.doi.org/10.1371/journal.pone.0079686 Text en © 2013 Barone et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Barone, Rosario
Macaluso, Filippo
Catanese, Patrizia
Marino Gammazza, Antonella
Rizzuto, Luigi
Marozzi, Paola
Lo Giudice, Giuseppe
Stampone, Tomaso
Cappello, Francesco
Morici, Giuseppe
Zummo, Giovanni
Farina, Felicia
Di Felice, Valentina
Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testosterone Biosynthesis
title Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testosterone Biosynthesis
title_full Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testosterone Biosynthesis
title_fullStr Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testosterone Biosynthesis
title_full_unstemmed Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testosterone Biosynthesis
title_short Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testosterone Biosynthesis
title_sort endurance exercise and conjugated linoleic acid (cla) supplementation up-regulate cyp17a1 and stimulate testosterone biosynthesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3818175/
https://www.ncbi.nlm.nih.gov/pubmed/24223995
http://dx.doi.org/10.1371/journal.pone.0079686
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