Fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pups

Fructose-rich diets, an experimental model of induced metabolic syndrome (MS), affects pregnant and lactating rat dams, and moreover, it leads to an imbalance in their offspring’s metabolic profile. Selenium (Se) homeostasis and body distribution is also altered. Selenoproteins: Glutathione peroxida...

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Main Authors: M. Luisa Ojeda, Olimpia Carreras, Paulina Muñoz del Valle, M. Luisa Murillo, Fátima Nogales
Format: Article
Language:English
Published: Elsevier 2018-04-01
Series:Journal of Functional Foods
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1756464618300331
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spelling doaj-a1210056e3474ec4bf8dbfbdd192b1e92021-04-30T07:12:56ZengElsevierJournal of Functional Foods1756-46462018-04-01437783Fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pupsM. Luisa Ojeda0Olimpia Carreras1Paulina Muñoz del Valle2M. Luisa Murillo3Fátima Nogales4Department of Physiology, Faculty of Pharmacy, Seville University, 41012 Seville, SpainDepartment of Physiology, Faculty of Pharmacy, Seville University, 41012 Seville, SpainDepartment of Physiology, Faculty of Pharmacy, Seville University, 41012 Seville, SpainDepartment of Physiology, Faculty of Pharmacy, Seville University, 41012 Seville, SpainCorresponding author at: Department of Physiology, Faculty of Pharmacy, Seville University, C/Profesor García González, n° 2, 41012 Sevilla, Spain.; Department of Physiology, Faculty of Pharmacy, Seville University, 41012 Seville, SpainFructose-rich diets, an experimental model of induced metabolic syndrome (MS), affects pregnant and lactating rat dams, and moreover, it leads to an imbalance in their offspring’s metabolic profile. Selenium (Se) homeostasis and body distribution is also altered. Selenoproteins: Glutathione peroxidase (GPx) and selenoprotein P (SelP) appear to play a role in MS. To evaluate selenoproteins’ implication in the transmission of this pathology to the progeny, hepatic Se deposits, GPx activity, biomolecular oxidation and selenoproteins and AMPK expression were measured in the offspring of dams exposed to a fructose-rich diet (65%). Se intake and liver selenoproteins are affected by fructose exposition during early nutrition. Female fructose pups show a repletion of Se and oxidation in liver, higher GPx activity and expression of hepatic GPx1 and SelP, related to a lower activation of AMPK and serum insulin levels. Fructose exposure during early nutrition negatively alters selenoproteins, oxidation and metabolism in female pups.http://www.sciencedirect.com/science/article/pii/S1756464618300331Metabolic syndromeSelenoproteinEarly nutritionHigh fructose diet
collection DOAJ
language English
format Article
sources DOAJ
author M. Luisa Ojeda
Olimpia Carreras
Paulina Muñoz del Valle
M. Luisa Murillo
Fátima Nogales
spellingShingle M. Luisa Ojeda
Olimpia Carreras
Paulina Muñoz del Valle
M. Luisa Murillo
Fátima Nogales
Fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pups
Journal of Functional Foods
Metabolic syndrome
Selenoprotein
Early nutrition
High fructose diet
author_facet M. Luisa Ojeda
Olimpia Carreras
Paulina Muñoz del Valle
M. Luisa Murillo
Fátima Nogales
author_sort M. Luisa Ojeda
title Fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pups
title_short Fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pups
title_full Fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pups
title_fullStr Fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pups
title_full_unstemmed Fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pups
title_sort fructose exposure during gestation and lactation altered hepatic selenoprotein expression, oxidative balance and metabolic profile in female rat pups
publisher Elsevier
series Journal of Functional Foods
issn 1756-4646
publishDate 2018-04-01
description Fructose-rich diets, an experimental model of induced metabolic syndrome (MS), affects pregnant and lactating rat dams, and moreover, it leads to an imbalance in their offspring’s metabolic profile. Selenium (Se) homeostasis and body distribution is also altered. Selenoproteins: Glutathione peroxidase (GPx) and selenoprotein P (SelP) appear to play a role in MS. To evaluate selenoproteins’ implication in the transmission of this pathology to the progeny, hepatic Se deposits, GPx activity, biomolecular oxidation and selenoproteins and AMPK expression were measured in the offspring of dams exposed to a fructose-rich diet (65%). Se intake and liver selenoproteins are affected by fructose exposition during early nutrition. Female fructose pups show a repletion of Se and oxidation in liver, higher GPx activity and expression of hepatic GPx1 and SelP, related to a lower activation of AMPK and serum insulin levels. Fructose exposure during early nutrition negatively alters selenoproteins, oxidation and metabolism in female pups.
topic Metabolic syndrome
Selenoprotein
Early nutrition
High fructose diet
url http://www.sciencedirect.com/science/article/pii/S1756464618300331
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