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Intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups

BACKGROUND: We showed that intrauterine growth restriction (IUGR) increases distal airspace wall thickness at birth (postnatal age 0; P0) in rat pups (saccular stage of lung development). However, that report did not assess whether the saccular phenotype persisted postnatally or occurred in males or...

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Autores principales: Joss-Moore, Lisa, Carroll, Travis, Yang, Yan, Fitzhugh, Melanie, Metcalfe, Drew, Oman, Jake, Hale, Merica, Dong, Li, Wang, Zheng-Ming, Yu, Xing, Callaway, Christopher W., O'Brien, Elizabeth, McKnight, Robert A., Lane, Robert H., Albertine, Kurt H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4021738/
https://www.ncbi.nlm.nih.gov/pubmed/23419538
http://dx.doi.org/10.1038/pr.2013.38
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author Joss-Moore, Lisa
Carroll, Travis
Yang, Yan
Fitzhugh, Melanie
Metcalfe, Drew
Oman, Jake
Hale, Merica
Dong, Li
Wang, Zheng-Ming
Yu, Xing
Callaway, Christopher W.
O'Brien, Elizabeth
McKnight, Robert A.
Lane, Robert H.
Albertine, Kurt H.
author_facet Joss-Moore, Lisa
Carroll, Travis
Yang, Yan
Fitzhugh, Melanie
Metcalfe, Drew
Oman, Jake
Hale, Merica
Dong, Li
Wang, Zheng-Ming
Yu, Xing
Callaway, Christopher W.
O'Brien, Elizabeth
McKnight, Robert A.
Lane, Robert H.
Albertine, Kurt H.
author_sort Joss-Moore, Lisa
collection PubMed
description BACKGROUND: We showed that intrauterine growth restriction (IUGR) increases distal airspace wall thickness at birth (postnatal age 0; P0) in rat pups (saccular stage of lung development). However, that report did not assess whether the saccular phenotype persisted postnatally or occurred in males or females. Nor did that report identify a potential molecular pathway for the saccular phenotype at P0. We hypothesized that IUGR persistently delays alveolar formation and disrupts retinoic acid receptor (RAR) mRNA and protein levels in the lung of rat pups in postnatal age- and sex-specific manners. METHODS: IUGR was induced in pregnant rats by bilateral uterine artery ligation. Alveolar formation and expression of RARα, β, and γ were quantified at P0, P6 (alveolar stage), and P21 (postalveolarization). RESULTS: IUGR increased distal airspace wall thickness in female pups at P0 only. IUGR did not affect male pups at any age. IUGR transiently increased lung RARβ protein abundance, which inhibits alveolar formation, at P0 in female pups. Serum retinol concentration was normal at all ages. CONCLUSIONS: IUGR alone is not sufficient to persistently delay postnatal alveolar formation or disrupt expression RARs. We speculate that for IUGR to delay alveolar formation postnatally, a second insult is necessary.
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spelling pubmed-40217382014-05-15 Intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups Joss-Moore, Lisa Carroll, Travis Yang, Yan Fitzhugh, Melanie Metcalfe, Drew Oman, Jake Hale, Merica Dong, Li Wang, Zheng-Ming Yu, Xing Callaway, Christopher W. O'Brien, Elizabeth McKnight, Robert A. Lane, Robert H. Albertine, Kurt H. Pediatr Res Article BACKGROUND: We showed that intrauterine growth restriction (IUGR) increases distal airspace wall thickness at birth (postnatal age 0; P0) in rat pups (saccular stage of lung development). However, that report did not assess whether the saccular phenotype persisted postnatally or occurred in males or females. Nor did that report identify a potential molecular pathway for the saccular phenotype at P0. We hypothesized that IUGR persistently delays alveolar formation and disrupts retinoic acid receptor (RAR) mRNA and protein levels in the lung of rat pups in postnatal age- and sex-specific manners. METHODS: IUGR was induced in pregnant rats by bilateral uterine artery ligation. Alveolar formation and expression of RARα, β, and γ were quantified at P0, P6 (alveolar stage), and P21 (postalveolarization). RESULTS: IUGR increased distal airspace wall thickness in female pups at P0 only. IUGR did not affect male pups at any age. IUGR transiently increased lung RARβ protein abundance, which inhibits alveolar formation, at P0 in female pups. Serum retinol concentration was normal at all ages. CONCLUSIONS: IUGR alone is not sufficient to persistently delay postnatal alveolar formation or disrupt expression RARs. We speculate that for IUGR to delay alveolar formation postnatally, a second insult is necessary. 2013-02-18 2013-05 /pmc/articles/PMC4021738/ /pubmed/23419538 http://dx.doi.org/10.1038/pr.2013.38 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Joss-Moore, Lisa
Carroll, Travis
Yang, Yan
Fitzhugh, Melanie
Metcalfe, Drew
Oman, Jake
Hale, Merica
Dong, Li
Wang, Zheng-Ming
Yu, Xing
Callaway, Christopher W.
O'Brien, Elizabeth
McKnight, Robert A.
Lane, Robert H.
Albertine, Kurt H.
Intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups
title Intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups
title_full Intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups
title_fullStr Intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups
title_full_unstemmed Intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups
title_short Intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups
title_sort intrauterine growth restriction transiently delays alveolar formation and disrupts retinoic acid receptor expression in the lung of female rat pups
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4021738/
https://www.ncbi.nlm.nih.gov/pubmed/23419538
http://dx.doi.org/10.1038/pr.2013.38
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