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NRF2-Dependent Placental Effects Vary by Sex and Dose following Gestational Exposure to Ultrafine Particles

Exposure to ultrafine particles (UFPs, PM(0.1)) during pregnancy triggers placental oxidative stress and inflammation, similar to fine PM (PM(2.5)). The Nrf2 gene encodes a redox-sensitive transcription factor that is a major regulator of antioxidant and anti-inflammatory responses. Disruption of NR...

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Autores principales: Behlen, Jonathan C., Lau, Carmen H., Pendleton, Drew, Li, Yixin, Hoffmann, Aline Rodrigues, Golding, Michael C., Zhang, Renyi, Johnson, Natalie M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8868520/
https://www.ncbi.nlm.nih.gov/pubmed/35204234
http://dx.doi.org/10.3390/antiox11020352
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author Behlen, Jonathan C.
Lau, Carmen H.
Pendleton, Drew
Li, Yixin
Hoffmann, Aline Rodrigues
Golding, Michael C.
Zhang, Renyi
Johnson, Natalie M.
author_facet Behlen, Jonathan C.
Lau, Carmen H.
Pendleton, Drew
Li, Yixin
Hoffmann, Aline Rodrigues
Golding, Michael C.
Zhang, Renyi
Johnson, Natalie M.
author_sort Behlen, Jonathan C.
collection PubMed
description Exposure to ultrafine particles (UFPs, PM(0.1)) during pregnancy triggers placental oxidative stress and inflammation, similar to fine PM (PM(2.5)). The Nrf2 gene encodes a redox-sensitive transcription factor that is a major regulator of antioxidant and anti-inflammatory responses. Disruption of NRF2 is known to substantially enhance PM(2.5)-driven oxidant and inflammatory responses; however, specific responses to UFP exposure, especially during critical windows of susceptibility such as pregnancy, are not fully characterized; To investigate the role of NRF2 in regulating maternal antioxidant defenses and placental responses to UFP exposure, wildtype (WT) and Nrf2(−/)(−) pregnant mice were exposed to either low dose (LD, 100 µg/m(3)) or high dose (HD, 500 µg/m(3)) UFP mixture or filtered air (FA, control) throughout gestation; Nrf2(−/)(−) HD-exposed female offspring exhibited significantly reduced fetal and placental weights. Placental morphology changes appeared most pronounced in Nrf2(−/)(−) LD-exposed offspring of both sexes. Glutathione (GSH) redox analysis revealed significant increases in the GSH/GSSG ratio (reduced/oxidized) in WT female placental tissue exposed to HD in comparison with Nrf2(−/)(−) HD-exposed mice. The expression of inflammatory cytokine genes (Il1β, Tnfα) was significantly increased in Nrf2(−/)(−) placentas from male and female offspring across all exposure groups. Genes related to bile acid metabolism and transport were differentially altered in Nrf2(−/)(−) mice across sex and exposure groups. Notably, the group with the most marked phenotypic effects (Nrf2(−/)(−) HD-exposed females) corresponded to significantly higher placental Apoa1 and Apob expression suggesting a link between placental lipid transport and NRF2 in response to high dose UFP exposure; Disruption of NRF2 exacerbates adverse developmental outcomes in response to high dose UFP exposure in female offspring. Morphological effects in placenta from male and female offspring exposed to low dose UFPs also signify the importance of NRF2 in maternal–fetal response to UFPs.
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spelling pubmed-88685202022-02-25 NRF2-Dependent Placental Effects Vary by Sex and Dose following Gestational Exposure to Ultrafine Particles Behlen, Jonathan C. Lau, Carmen H. Pendleton, Drew Li, Yixin Hoffmann, Aline Rodrigues Golding, Michael C. Zhang, Renyi Johnson, Natalie M. Antioxidants (Basel) Article Exposure to ultrafine particles (UFPs, PM(0.1)) during pregnancy triggers placental oxidative stress and inflammation, similar to fine PM (PM(2.5)). The Nrf2 gene encodes a redox-sensitive transcription factor that is a major regulator of antioxidant and anti-inflammatory responses. Disruption of NRF2 is known to substantially enhance PM(2.5)-driven oxidant and inflammatory responses; however, specific responses to UFP exposure, especially during critical windows of susceptibility such as pregnancy, are not fully characterized; To investigate the role of NRF2 in regulating maternal antioxidant defenses and placental responses to UFP exposure, wildtype (WT) and Nrf2(−/)(−) pregnant mice were exposed to either low dose (LD, 100 µg/m(3)) or high dose (HD, 500 µg/m(3)) UFP mixture or filtered air (FA, control) throughout gestation; Nrf2(−/)(−) HD-exposed female offspring exhibited significantly reduced fetal and placental weights. Placental morphology changes appeared most pronounced in Nrf2(−/)(−) LD-exposed offspring of both sexes. Glutathione (GSH) redox analysis revealed significant increases in the GSH/GSSG ratio (reduced/oxidized) in WT female placental tissue exposed to HD in comparison with Nrf2(−/)(−) HD-exposed mice. The expression of inflammatory cytokine genes (Il1β, Tnfα) was significantly increased in Nrf2(−/)(−) placentas from male and female offspring across all exposure groups. Genes related to bile acid metabolism and transport were differentially altered in Nrf2(−/)(−) mice across sex and exposure groups. Notably, the group with the most marked phenotypic effects (Nrf2(−/)(−) HD-exposed females) corresponded to significantly higher placental Apoa1 and Apob expression suggesting a link between placental lipid transport and NRF2 in response to high dose UFP exposure; Disruption of NRF2 exacerbates adverse developmental outcomes in response to high dose UFP exposure in female offspring. Morphological effects in placenta from male and female offspring exposed to low dose UFPs also signify the importance of NRF2 in maternal–fetal response to UFPs. MDPI 2022-02-10 /pmc/articles/PMC8868520/ /pubmed/35204234 http://dx.doi.org/10.3390/antiox11020352 Text en © 2022 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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Behlen, Jonathan C.
Lau, Carmen H.
Pendleton, Drew
Li, Yixin
Hoffmann, Aline Rodrigues
Golding, Michael C.
Zhang, Renyi
Johnson, Natalie M.
NRF2-Dependent Placental Effects Vary by Sex and Dose following Gestational Exposure to Ultrafine Particles
title NRF2-Dependent Placental Effects Vary by Sex and Dose following Gestational Exposure to Ultrafine Particles
title_full NRF2-Dependent Placental Effects Vary by Sex and Dose following Gestational Exposure to Ultrafine Particles
title_fullStr NRF2-Dependent Placental Effects Vary by Sex and Dose following Gestational Exposure to Ultrafine Particles
title_full_unstemmed NRF2-Dependent Placental Effects Vary by Sex and Dose following Gestational Exposure to Ultrafine Particles
title_short NRF2-Dependent Placental Effects Vary by Sex and Dose following Gestational Exposure to Ultrafine Particles
title_sort nrf2-dependent placental effects vary by sex and dose following gestational exposure to ultrafine particles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8868520/
https://www.ncbi.nlm.nih.gov/pubmed/35204234
http://dx.doi.org/10.3390/antiox11020352
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