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Fetal and maternal NLRP3 signaling is required for preterm labor and birth

Preterm birth is the leading cause of neonatal morbidity and mortality worldwide. One of every 4 preterm neonates is born to a mother with intra-amniotic inflammation driven by invading bacteria. However, the molecular mechanisms underlying this hostile immune response remain unclear. Here, we used...

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Autores principales: Motomura, Kenichiro, Romero, Roberto, Galaz, Jose, Tao, Li, Garcia-Flores, Valeria, Xu, Yi, Done, Bogdan, Arenas-Hernandez, Marcia, Miller, Derek, Gutierrez-Contreras, Pedro, Farias-Jofre, Marcelo, Aras, Siddhesh, Grossman, Lawrence I., Tarca, Adi L., Gomez-Lopez, Nardhy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9462488/
https://www.ncbi.nlm.nih.gov/pubmed/35993366
http://dx.doi.org/10.1172/jci.insight.158238
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author Motomura, Kenichiro
Romero, Roberto
Galaz, Jose
Tao, Li
Garcia-Flores, Valeria
Xu, Yi
Done, Bogdan
Arenas-Hernandez, Marcia
Miller, Derek
Gutierrez-Contreras, Pedro
Farias-Jofre, Marcelo
Aras, Siddhesh
Grossman, Lawrence I.
Tarca, Adi L.
Gomez-Lopez, Nardhy
author_facet Motomura, Kenichiro
Romero, Roberto
Galaz, Jose
Tao, Li
Garcia-Flores, Valeria
Xu, Yi
Done, Bogdan
Arenas-Hernandez, Marcia
Miller, Derek
Gutierrez-Contreras, Pedro
Farias-Jofre, Marcelo
Aras, Siddhesh
Grossman, Lawrence I.
Tarca, Adi L.
Gomez-Lopez, Nardhy
author_sort Motomura, Kenichiro
collection PubMed
description Preterm birth is the leading cause of neonatal morbidity and mortality worldwide. One of every 4 preterm neonates is born to a mother with intra-amniotic inflammation driven by invading bacteria. However, the molecular mechanisms underlying this hostile immune response remain unclear. Here, we used a translationally relevant model of preterm birth in Nlrp3-deficient and -sufficient pregnant mice to identify what we believe is a previously unknown dual role for the NLRP3 pathway in the fetal and maternal signaling required for the premature onset of the labor cascade leading to fetal injury and neonatal death. Specifically, the NLRP3 sensor molecule and/or inflammasome is essential for triggering intra-amniotic and decidual inflammation, fetal membrane activation, uterine contractility, and cervical dilation. NLRP3 also regulates the functional status of neutrophils and macrophages in the uterus and decidua, without altering their influx, as well as maternal systemic inflammation. Finally, both embryo transfer experimentation and heterozygous mating systems provided mechanistic evidence showing that NLRP3 signaling in both the fetus and the mother is required for the premature activation of the labor cascade. These data provide insights into the mechanisms of fetal-maternal dialog in the syndrome of preterm labor and indicate that targeting the NLRP3 pathway could prevent adverse perinatal outcomes.
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spelling pubmed-94624882022-09-13 Fetal and maternal NLRP3 signaling is required for preterm labor and birth Motomura, Kenichiro Romero, Roberto Galaz, Jose Tao, Li Garcia-Flores, Valeria Xu, Yi Done, Bogdan Arenas-Hernandez, Marcia Miller, Derek Gutierrez-Contreras, Pedro Farias-Jofre, Marcelo Aras, Siddhesh Grossman, Lawrence I. Tarca, Adi L. Gomez-Lopez, Nardhy JCI Insight Research Article Preterm birth is the leading cause of neonatal morbidity and mortality worldwide. One of every 4 preterm neonates is born to a mother with intra-amniotic inflammation driven by invading bacteria. However, the molecular mechanisms underlying this hostile immune response remain unclear. Here, we used a translationally relevant model of preterm birth in Nlrp3-deficient and -sufficient pregnant mice to identify what we believe is a previously unknown dual role for the NLRP3 pathway in the fetal and maternal signaling required for the premature onset of the labor cascade leading to fetal injury and neonatal death. Specifically, the NLRP3 sensor molecule and/or inflammasome is essential for triggering intra-amniotic and decidual inflammation, fetal membrane activation, uterine contractility, and cervical dilation. NLRP3 also regulates the functional status of neutrophils and macrophages in the uterus and decidua, without altering their influx, as well as maternal systemic inflammation. Finally, both embryo transfer experimentation and heterozygous mating systems provided mechanistic evidence showing that NLRP3 signaling in both the fetus and the mother is required for the premature activation of the labor cascade. These data provide insights into the mechanisms of fetal-maternal dialog in the syndrome of preterm labor and indicate that targeting the NLRP3 pathway could prevent adverse perinatal outcomes. American Society for Clinical Investigation 2022-08-22 /pmc/articles/PMC9462488/ /pubmed/35993366 http://dx.doi.org/10.1172/jci.insight.158238 Text en © 2022 Motomura et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Motomura, Kenichiro
Romero, Roberto
Galaz, Jose
Tao, Li
Garcia-Flores, Valeria
Xu, Yi
Done, Bogdan
Arenas-Hernandez, Marcia
Miller, Derek
Gutierrez-Contreras, Pedro
Farias-Jofre, Marcelo
Aras, Siddhesh
Grossman, Lawrence I.
Tarca, Adi L.
Gomez-Lopez, Nardhy
Fetal and maternal NLRP3 signaling is required for preterm labor and birth
title Fetal and maternal NLRP3 signaling is required for preterm labor and birth
title_full Fetal and maternal NLRP3 signaling is required for preterm labor and birth
title_fullStr Fetal and maternal NLRP3 signaling is required for preterm labor and birth
title_full_unstemmed Fetal and maternal NLRP3 signaling is required for preterm labor and birth
title_short Fetal and maternal NLRP3 signaling is required for preterm labor and birth
title_sort fetal and maternal nlrp3 signaling is required for preterm labor and birth
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9462488/
https://www.ncbi.nlm.nih.gov/pubmed/35993366
http://dx.doi.org/10.1172/jci.insight.158238
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