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Ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation
OBJECTIVE: The importance of the placenta in mediating the pre- and post-natal consequences of fetal growth restriction has been increasingly recognized. However, the influence of placental sexual dimorphism on driving these outcomes has received little attention. The purpose of this study was to ch...
Autores principales: | , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7588867/ https://www.ncbi.nlm.nih.gov/pubmed/33031959 http://dx.doi.org/10.1016/j.molmet.2020.101094 |
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author | Miller, Colette N. Dye, Janice A. Henriquez, Andres R. Stewart, Erica J. Lavrich, Katelyn S. Carswell, Gleta K. Ren, Hongzu Freeborn, Danielle L. Snow, Samantha J. Schladweiler, Mette C. Richards, Judy H. Kodavanti, Prasada R.S. Fisher, Anna Chorley, Brian N. Kodavanti, Urmila P. |
author_facet | Miller, Colette N. Dye, Janice A. Henriquez, Andres R. Stewart, Erica J. Lavrich, Katelyn S. Carswell, Gleta K. Ren, Hongzu Freeborn, Danielle L. Snow, Samantha J. Schladweiler, Mette C. Richards, Judy H. Kodavanti, Prasada R.S. Fisher, Anna Chorley, Brian N. Kodavanti, Urmila P. |
author_sort | Miller, Colette N. |
collection | PubMed |
description | OBJECTIVE: The importance of the placenta in mediating the pre- and post-natal consequences of fetal growth restriction has been increasingly recognized. However, the influence of placental sexual dimorphism on driving these outcomes has received little attention. The purpose of this study was to characterize how sex contributes to the relationship between placental metabolism and fetal programming utilizing a novel rodent model of growth restriction. METHODS: Fetal growth restriction was induced by maternal inhalation of 0.8 ppm ozone (4 h/day) during implantation receptivity (gestation days [GDs] 5 and 6) in Long-Evans rats. Control rats were exposed to filtered air. At GD 21, placental and fetal tissues were obtained for metabolic and genomic assessments. RESULTS: Growth-restricted male placentae exhibited increased mitochondrial biogenesis, increased oxygen consumption, and reduced nutrient storage. Male growth-restricted fetuses also had evidence of reduced adiposity and downregulation of hepatic metabolic signaling. In contrast, placentae from growth-restricted females had elevated markers of autophagy accompanied by an observed protection against hepatic metabolic perturbations. Despite this, growth restriction in females induced a greater number of hypothalamic gene and pathway alterations compared to growth-restricted males. CONCLUSIONS: Increases in mitochondrial metabolism in growth-restricted male placentae likely initiates a sequela of adaptations that promote poor nutrient availability and adiposity. Divergently, the female placenta expresses protective mechanisms that may serve to increase nutrient availability to support fetal metabolic development. Collectively, this work emphasizes the importance of sex in mediating alterations in placental metabolism and fetal programming. |
format | Online Article Text |
id | pubmed-7588867 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-75888672020-10-30 Ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation Miller, Colette N. Dye, Janice A. Henriquez, Andres R. Stewart, Erica J. Lavrich, Katelyn S. Carswell, Gleta K. Ren, Hongzu Freeborn, Danielle L. Snow, Samantha J. Schladweiler, Mette C. Richards, Judy H. Kodavanti, Prasada R.S. Fisher, Anna Chorley, Brian N. Kodavanti, Urmila P. Mol Metab Original Article OBJECTIVE: The importance of the placenta in mediating the pre- and post-natal consequences of fetal growth restriction has been increasingly recognized. However, the influence of placental sexual dimorphism on driving these outcomes has received little attention. The purpose of this study was to characterize how sex contributes to the relationship between placental metabolism and fetal programming utilizing a novel rodent model of growth restriction. METHODS: Fetal growth restriction was induced by maternal inhalation of 0.8 ppm ozone (4 h/day) during implantation receptivity (gestation days [GDs] 5 and 6) in Long-Evans rats. Control rats were exposed to filtered air. At GD 21, placental and fetal tissues were obtained for metabolic and genomic assessments. RESULTS: Growth-restricted male placentae exhibited increased mitochondrial biogenesis, increased oxygen consumption, and reduced nutrient storage. Male growth-restricted fetuses also had evidence of reduced adiposity and downregulation of hepatic metabolic signaling. In contrast, placentae from growth-restricted females had elevated markers of autophagy accompanied by an observed protection against hepatic metabolic perturbations. Despite this, growth restriction in females induced a greater number of hypothalamic gene and pathway alterations compared to growth-restricted males. CONCLUSIONS: Increases in mitochondrial metabolism in growth-restricted male placentae likely initiates a sequela of adaptations that promote poor nutrient availability and adiposity. Divergently, the female placenta expresses protective mechanisms that may serve to increase nutrient availability to support fetal metabolic development. Collectively, this work emphasizes the importance of sex in mediating alterations in placental metabolism and fetal programming. Elsevier 2020-10-05 /pmc/articles/PMC7588867/ /pubmed/33031959 http://dx.doi.org/10.1016/j.molmet.2020.101094 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Original Article Miller, Colette N. Dye, Janice A. Henriquez, Andres R. Stewart, Erica J. Lavrich, Katelyn S. Carswell, Gleta K. Ren, Hongzu Freeborn, Danielle L. Snow, Samantha J. Schladweiler, Mette C. Richards, Judy H. Kodavanti, Prasada R.S. Fisher, Anna Chorley, Brian N. Kodavanti, Urmila P. Ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation |
title | Ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation |
title_full | Ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation |
title_fullStr | Ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation |
title_full_unstemmed | Ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation |
title_short | Ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation |
title_sort | ozone-induced fetal growth restriction in rats is associated with sexually dimorphic placental and fetal metabolic adaptation |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7588867/ https://www.ncbi.nlm.nih.gov/pubmed/33031959 http://dx.doi.org/10.1016/j.molmet.2020.101094 |
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