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Detection of Expressional Changes Induced by Intrauterine Growth Restriction in the Developing Rat Mammary Gland via Exploratory Pathways Analysis

BACKGROUND: Intrauterine growth restriction (IUGR) is thought to lead to fetal programming that in turn contributes to developmental changes of many organs postnatally. There is evidence that IUGR is a risk factor for the development of metabolic and cardiovascular disease later in life. A higher in...

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Autores principales: Beinder, Lea, Faehrmann, Nina, Wachtveitl, Rainer, Winterfeld, Ilona, Hartner, Andrea, Menendez-Castro, Carlos, Rauh, Manfred, Ruebner, Matthias, Huebner, Hanna, Noegel, Stephanie C., Doerr, Helmuth G., Rascher, Wolfgang, Fahlbusch, Fabian B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4067350/
https://www.ncbi.nlm.nih.gov/pubmed/24955840
http://dx.doi.org/10.1371/journal.pone.0100504
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author Beinder, Lea
Faehrmann, Nina
Wachtveitl, Rainer
Winterfeld, Ilona
Hartner, Andrea
Menendez-Castro, Carlos
Rauh, Manfred
Ruebner, Matthias
Huebner, Hanna
Noegel, Stephanie C.
Doerr, Helmuth G.
Rascher, Wolfgang
Fahlbusch, Fabian B.
author_facet Beinder, Lea
Faehrmann, Nina
Wachtveitl, Rainer
Winterfeld, Ilona
Hartner, Andrea
Menendez-Castro, Carlos
Rauh, Manfred
Ruebner, Matthias
Huebner, Hanna
Noegel, Stephanie C.
Doerr, Helmuth G.
Rascher, Wolfgang
Fahlbusch, Fabian B.
author_sort Beinder, Lea
collection PubMed
description BACKGROUND: Intrauterine growth restriction (IUGR) is thought to lead to fetal programming that in turn contributes to developmental changes of many organs postnatally. There is evidence that IUGR is a risk factor for the development of metabolic and cardiovascular disease later in life. A higher incidence of breast cancer was also observed after IUGR. This could be due to changes in mammary gland developmental pathways. We sought to characterise IUGR-induced alterations of the complex pathways of mammary development at the level of the transcriptome in a rat model of IUGR, using pathways analysis bioinformatics. METHODOLOGY/PRINCIPAL FINDINGS: We analysed the mammary glands of Wistar rats with IUGR induced by maternal low protein (LP) diet at the beginning (d21) and the end (d28) of pubertal ductal morphogenesis. Mammary glands of the LP group were smaller in size at d28, however did not show morphologic changes. We identified multiple differentially expressed genes in the mammary gland using Agilent SurePrint arrays at d21 and d28. In silico analysis was carried out using Ingenuity Pathways Analysis. In mammary gland tissue of LP rats at d21 of life a prominent upregulation of WT1 and CDKN1A (p21) expression was observed. Differentially regulated genes were associated with the extracellular regulated kinase (ERK)-1/-2 pathway. Western Blot analysis showed reduced levels of phosphorylated ERK-1/-2 in the mammary glands of the LP group at d21. To identify possible changes in circulating steroid levels, serum LC-Tandem mass-spectrometry was performed. LP rats showed higher serum progesterone levels and an increased corticosterone/dehydrocorticosterone-ratio at d28. CONCLUSIONS/SIGNIFICANCE: Our data obtained from gene array analysis support the hypothesis that IUGR influences pubertal development of the rat mammary gland. We identified prominent differential regulation of genes and pathways for factors regulating cell cycle and growth. Moreover, we detected new pathways which appear to be programmed by IUGR.
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spelling pubmed-40673502014-06-25 Detection of Expressional Changes Induced by Intrauterine Growth Restriction in the Developing Rat Mammary Gland via Exploratory Pathways Analysis Beinder, Lea Faehrmann, Nina Wachtveitl, Rainer Winterfeld, Ilona Hartner, Andrea Menendez-Castro, Carlos Rauh, Manfred Ruebner, Matthias Huebner, Hanna Noegel, Stephanie C. Doerr, Helmuth G. Rascher, Wolfgang Fahlbusch, Fabian B. PLoS One Research Article BACKGROUND: Intrauterine growth restriction (IUGR) is thought to lead to fetal programming that in turn contributes to developmental changes of many organs postnatally. There is evidence that IUGR is a risk factor for the development of metabolic and cardiovascular disease later in life. A higher incidence of breast cancer was also observed after IUGR. This could be due to changes in mammary gland developmental pathways. We sought to characterise IUGR-induced alterations of the complex pathways of mammary development at the level of the transcriptome in a rat model of IUGR, using pathways analysis bioinformatics. METHODOLOGY/PRINCIPAL FINDINGS: We analysed the mammary glands of Wistar rats with IUGR induced by maternal low protein (LP) diet at the beginning (d21) and the end (d28) of pubertal ductal morphogenesis. Mammary glands of the LP group were smaller in size at d28, however did not show morphologic changes. We identified multiple differentially expressed genes in the mammary gland using Agilent SurePrint arrays at d21 and d28. In silico analysis was carried out using Ingenuity Pathways Analysis. In mammary gland tissue of LP rats at d21 of life a prominent upregulation of WT1 and CDKN1A (p21) expression was observed. Differentially regulated genes were associated with the extracellular regulated kinase (ERK)-1/-2 pathway. Western Blot analysis showed reduced levels of phosphorylated ERK-1/-2 in the mammary glands of the LP group at d21. To identify possible changes in circulating steroid levels, serum LC-Tandem mass-spectrometry was performed. LP rats showed higher serum progesterone levels and an increased corticosterone/dehydrocorticosterone-ratio at d28. CONCLUSIONS/SIGNIFICANCE: Our data obtained from gene array analysis support the hypothesis that IUGR influences pubertal development of the rat mammary gland. We identified prominent differential regulation of genes and pathways for factors regulating cell cycle and growth. Moreover, we detected new pathways which appear to be programmed by IUGR. Public Library of Science 2014-06-23 /pmc/articles/PMC4067350/ /pubmed/24955840 http://dx.doi.org/10.1371/journal.pone.0100504 Text en © 2014 Beinder 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
Beinder, Lea
Faehrmann, Nina
Wachtveitl, Rainer
Winterfeld, Ilona
Hartner, Andrea
Menendez-Castro, Carlos
Rauh, Manfred
Ruebner, Matthias
Huebner, Hanna
Noegel, Stephanie C.
Doerr, Helmuth G.
Rascher, Wolfgang
Fahlbusch, Fabian B.
Detection of Expressional Changes Induced by Intrauterine Growth Restriction in the Developing Rat Mammary Gland via Exploratory Pathways Analysis
title Detection of Expressional Changes Induced by Intrauterine Growth Restriction in the Developing Rat Mammary Gland via Exploratory Pathways Analysis
title_full Detection of Expressional Changes Induced by Intrauterine Growth Restriction in the Developing Rat Mammary Gland via Exploratory Pathways Analysis
title_fullStr Detection of Expressional Changes Induced by Intrauterine Growth Restriction in the Developing Rat Mammary Gland via Exploratory Pathways Analysis
title_full_unstemmed Detection of Expressional Changes Induced by Intrauterine Growth Restriction in the Developing Rat Mammary Gland via Exploratory Pathways Analysis
title_short Detection of Expressional Changes Induced by Intrauterine Growth Restriction in the Developing Rat Mammary Gland via Exploratory Pathways Analysis
title_sort detection of expressional changes induced by intrauterine growth restriction in the developing rat mammary gland via exploratory pathways analysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4067350/
https://www.ncbi.nlm.nih.gov/pubmed/24955840
http://dx.doi.org/10.1371/journal.pone.0100504
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