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Lung Metabolomics Profiling of Congenital Diaphragmatic Hernia in Fetal Rats

Congenital diaphragmatic hernia (CDH) is characterized by the herniation of abdominal contents into the thoracic cavity during the fetal period. This competition for fetal thoracic space results in lung hypoplasia and vascular maldevelopment that can generate severe pulmonary hypertension (PH). The...

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Autores principales: Romero-Lopez, Maria del Mar, Oria, Marc, Watanabe-Chailland, Miki, Varela, Maria Florencia, Romick-Rosendale, Lindsey, Peiro, Jose L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8003001/
https://www.ncbi.nlm.nih.gov/pubmed/33803572
http://dx.doi.org/10.3390/metabo11030177
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author Romero-Lopez, Maria del Mar
Oria, Marc
Watanabe-Chailland, Miki
Varela, Maria Florencia
Romick-Rosendale, Lindsey
Peiro, Jose L.
author_facet Romero-Lopez, Maria del Mar
Oria, Marc
Watanabe-Chailland, Miki
Varela, Maria Florencia
Romick-Rosendale, Lindsey
Peiro, Jose L.
author_sort Romero-Lopez, Maria del Mar
collection PubMed
description Congenital diaphragmatic hernia (CDH) is characterized by the herniation of abdominal contents into the thoracic cavity during the fetal period. This competition for fetal thoracic space results in lung hypoplasia and vascular maldevelopment that can generate severe pulmonary hypertension (PH). The detailed mechanisms of CDH pathogenesis are yet to be understood. Acknowledgment of the lung metabolism during the in-utero CDH development can help to discern the CDH pathophysiology changes. Timed-pregnant dams received nitrofen or vehicle (olive oil) on E9.5 day of gestation. All fetal lungs exposed to nitrofen or vehicle control were harvested at day E21.5 by C-section and processed for metabolomics analysis using nuclear magnetic resonance (NMR) spectroscopy. The three groups analyzed were nitrofen-CDH (NCDH), nitrofen-control (NC), and vehicle control (VC). A total of 64 metabolites were quantified and subjected to statistical analysis. The multivariate analysis identified forty-four metabolites that were statistically different between the three groups. The highest Variable importance in projection (VIP) score (>2) metabolites were lactate, glutamate, and adenosine 5′-triphosphate (ATP). Fetal CDH lungs have changes related to oxidative stress, nucleotide synthesis, amino acid metabolism, glycerophospholipid metabolism, and glucose metabolism. This work provides new insights into the molecular mechanisms behind the CDH pathophysiology and can explore potential novel treatment targets for CDH patients.
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spelling pubmed-80030012021-03-28 Lung Metabolomics Profiling of Congenital Diaphragmatic Hernia in Fetal Rats Romero-Lopez, Maria del Mar Oria, Marc Watanabe-Chailland, Miki Varela, Maria Florencia Romick-Rosendale, Lindsey Peiro, Jose L. Metabolites Article Congenital diaphragmatic hernia (CDH) is characterized by the herniation of abdominal contents into the thoracic cavity during the fetal period. This competition for fetal thoracic space results in lung hypoplasia and vascular maldevelopment that can generate severe pulmonary hypertension (PH). The detailed mechanisms of CDH pathogenesis are yet to be understood. Acknowledgment of the lung metabolism during the in-utero CDH development can help to discern the CDH pathophysiology changes. Timed-pregnant dams received nitrofen or vehicle (olive oil) on E9.5 day of gestation. All fetal lungs exposed to nitrofen or vehicle control were harvested at day E21.5 by C-section and processed for metabolomics analysis using nuclear magnetic resonance (NMR) spectroscopy. The three groups analyzed were nitrofen-CDH (NCDH), nitrofen-control (NC), and vehicle control (VC). A total of 64 metabolites were quantified and subjected to statistical analysis. The multivariate analysis identified forty-four metabolites that were statistically different between the three groups. The highest Variable importance in projection (VIP) score (>2) metabolites were lactate, glutamate, and adenosine 5′-triphosphate (ATP). Fetal CDH lungs have changes related to oxidative stress, nucleotide synthesis, amino acid metabolism, glycerophospholipid metabolism, and glucose metabolism. This work provides new insights into the molecular mechanisms behind the CDH pathophysiology and can explore potential novel treatment targets for CDH patients. MDPI 2021-03-18 /pmc/articles/PMC8003001/ /pubmed/33803572 http://dx.doi.org/10.3390/metabo11030177 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Romero-Lopez, Maria del Mar
Oria, Marc
Watanabe-Chailland, Miki
Varela, Maria Florencia
Romick-Rosendale, Lindsey
Peiro, Jose L.
Lung Metabolomics Profiling of Congenital Diaphragmatic Hernia in Fetal Rats
title Lung Metabolomics Profiling of Congenital Diaphragmatic Hernia in Fetal Rats
title_full Lung Metabolomics Profiling of Congenital Diaphragmatic Hernia in Fetal Rats
title_fullStr Lung Metabolomics Profiling of Congenital Diaphragmatic Hernia in Fetal Rats
title_full_unstemmed Lung Metabolomics Profiling of Congenital Diaphragmatic Hernia in Fetal Rats
title_short Lung Metabolomics Profiling of Congenital Diaphragmatic Hernia in Fetal Rats
title_sort lung metabolomics profiling of congenital diaphragmatic hernia in fetal rats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8003001/
https://www.ncbi.nlm.nih.gov/pubmed/33803572
http://dx.doi.org/10.3390/metabo11030177
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