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In utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children

BACKGROUND: The adverse health effects of early life exposure to tobacco smoking have been widely reported. In spite of this, the underlying molecular mechanisms of in utero and postnatal exposure to tobacco smoke are only partially understood. Here, we aimed to identify multi-layer molecular signat...

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Autores principales: Vives-Usano, Marta, Hernandez-Ferrer, Carles, Maitre, Léa, Ruiz-Arenas, Carlos, Andrusaityte, Sandra, Borràs, Eva, Carracedo, Ángel, Casas, Maribel, Chatzi, Leda, Coen, Muireann, Estivill, Xavier, González, Juan R., Grazuleviciene, Regina, Gutzkow, Kristine B., Keun, Hector C., Lau, Chung-Ho E., Cadiou, Solène, Lepeule, Johanna, Mason, Dan, Quintela, Inés, Robinson, Oliver, Sabidó, Eduard, Santorelli, Gillian, Schwarze, Per E., Siskos, Alexandros P., Slama, Rémy, Vafeiadi, Marina, Martí, Eulàlia, Vrijheid, Martine, Bustamante, Mariona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7437049/
https://www.ncbi.nlm.nih.gov/pubmed/32811491
http://dx.doi.org/10.1186/s12916-020-01686-8
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author Vives-Usano, Marta
Hernandez-Ferrer, Carles
Maitre, Léa
Ruiz-Arenas, Carlos
Andrusaityte, Sandra
Borràs, Eva
Carracedo, Ángel
Casas, Maribel
Chatzi, Leda
Coen, Muireann
Estivill, Xavier
González, Juan R.
Grazuleviciene, Regina
Gutzkow, Kristine B.
Keun, Hector C.
Lau, Chung-Ho E.
Cadiou, Solène
Lepeule, Johanna
Mason, Dan
Quintela, Inés
Robinson, Oliver
Sabidó, Eduard
Santorelli, Gillian
Schwarze, Per E.
Siskos, Alexandros P.
Slama, Rémy
Vafeiadi, Marina
Martí, Eulàlia
Vrijheid, Martine
Bustamante, Mariona
author_facet Vives-Usano, Marta
Hernandez-Ferrer, Carles
Maitre, Léa
Ruiz-Arenas, Carlos
Andrusaityte, Sandra
Borràs, Eva
Carracedo, Ángel
Casas, Maribel
Chatzi, Leda
Coen, Muireann
Estivill, Xavier
González, Juan R.
Grazuleviciene, Regina
Gutzkow, Kristine B.
Keun, Hector C.
Lau, Chung-Ho E.
Cadiou, Solène
Lepeule, Johanna
Mason, Dan
Quintela, Inés
Robinson, Oliver
Sabidó, Eduard
Santorelli, Gillian
Schwarze, Per E.
Siskos, Alexandros P.
Slama, Rémy
Vafeiadi, Marina
Martí, Eulàlia
Vrijheid, Martine
Bustamante, Mariona
author_sort Vives-Usano, Marta
collection PubMed
description BACKGROUND: The adverse health effects of early life exposure to tobacco smoking have been widely reported. In spite of this, the underlying molecular mechanisms of in utero and postnatal exposure to tobacco smoke are only partially understood. Here, we aimed to identify multi-layer molecular signatures associated with exposure to tobacco smoke in these two exposure windows. METHODS: We investigated the associations of maternal smoking during pregnancy and childhood secondhand smoke (SHS) exposure with molecular features measured in 1203 European children (mean age 8.1 years) from the Human Early Life Exposome (HELIX) project. Molecular features, covering 4 layers, included blood DNA methylation and gene and miRNA transcription, plasma proteins, and sera and urinary metabolites. RESULTS: Maternal smoking during pregnancy was associated with DNA methylation changes at 18 loci in child blood. DNA methylation at 5 of these loci was related to expression of the nearby genes. However, the expression of these genes themselves was only weakly associated with maternal smoking. Conversely, childhood SHS was not associated with blood DNA methylation or transcription patterns, but with reduced levels of several serum metabolites and with increased plasma PAI1 (plasminogen activator inhibitor-1), a protein that inhibits fibrinolysis. Some of the in utero and childhood smoking-related molecular marks showed dose-response trends, with stronger effects with higher dose or longer duration of the exposure. CONCLUSION: In this first study covering multi-layer molecular features, pregnancy and childhood exposure to tobacco smoke were associated with distinct molecular phenotypes in children. The persistent and dose-dependent changes in the methylome make CpGs good candidates to develop biomarkers of past exposure. Moreover, compared to methylation, the weak association of maternal smoking in pregnancy with gene expression suggests different reversal rates and a methylation-based memory to past exposures. Finally, certain metabolites and protein markers evidenced potential early biological effects of postnatal SHS, such as fibrinolysis.
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spelling pubmed-74370492020-08-20 In utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children Vives-Usano, Marta Hernandez-Ferrer, Carles Maitre, Léa Ruiz-Arenas, Carlos Andrusaityte, Sandra Borràs, Eva Carracedo, Ángel Casas, Maribel Chatzi, Leda Coen, Muireann Estivill, Xavier González, Juan R. Grazuleviciene, Regina Gutzkow, Kristine B. Keun, Hector C. Lau, Chung-Ho E. Cadiou, Solène Lepeule, Johanna Mason, Dan Quintela, Inés Robinson, Oliver Sabidó, Eduard Santorelli, Gillian Schwarze, Per E. Siskos, Alexandros P. Slama, Rémy Vafeiadi, Marina Martí, Eulàlia Vrijheid, Martine Bustamante, Mariona BMC Med Research Article BACKGROUND: The adverse health effects of early life exposure to tobacco smoking have been widely reported. In spite of this, the underlying molecular mechanisms of in utero and postnatal exposure to tobacco smoke are only partially understood. Here, we aimed to identify multi-layer molecular signatures associated with exposure to tobacco smoke in these two exposure windows. METHODS: We investigated the associations of maternal smoking during pregnancy and childhood secondhand smoke (SHS) exposure with molecular features measured in 1203 European children (mean age 8.1 years) from the Human Early Life Exposome (HELIX) project. Molecular features, covering 4 layers, included blood DNA methylation and gene and miRNA transcription, plasma proteins, and sera and urinary metabolites. RESULTS: Maternal smoking during pregnancy was associated with DNA methylation changes at 18 loci in child blood. DNA methylation at 5 of these loci was related to expression of the nearby genes. However, the expression of these genes themselves was only weakly associated with maternal smoking. Conversely, childhood SHS was not associated with blood DNA methylation or transcription patterns, but with reduced levels of several serum metabolites and with increased plasma PAI1 (plasminogen activator inhibitor-1), a protein that inhibits fibrinolysis. Some of the in utero and childhood smoking-related molecular marks showed dose-response trends, with stronger effects with higher dose or longer duration of the exposure. CONCLUSION: In this first study covering multi-layer molecular features, pregnancy and childhood exposure to tobacco smoke were associated with distinct molecular phenotypes in children. The persistent and dose-dependent changes in the methylome make CpGs good candidates to develop biomarkers of past exposure. Moreover, compared to methylation, the weak association of maternal smoking in pregnancy with gene expression suggests different reversal rates and a methylation-based memory to past exposures. Finally, certain metabolites and protein markers evidenced potential early biological effects of postnatal SHS, such as fibrinolysis. BioMed Central 2020-08-19 /pmc/articles/PMC7437049/ /pubmed/32811491 http://dx.doi.org/10.1186/s12916-020-01686-8 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research Article
Vives-Usano, Marta
Hernandez-Ferrer, Carles
Maitre, Léa
Ruiz-Arenas, Carlos
Andrusaityte, Sandra
Borràs, Eva
Carracedo, Ángel
Casas, Maribel
Chatzi, Leda
Coen, Muireann
Estivill, Xavier
González, Juan R.
Grazuleviciene, Regina
Gutzkow, Kristine B.
Keun, Hector C.
Lau, Chung-Ho E.
Cadiou, Solène
Lepeule, Johanna
Mason, Dan
Quintela, Inés
Robinson, Oliver
Sabidó, Eduard
Santorelli, Gillian
Schwarze, Per E.
Siskos, Alexandros P.
Slama, Rémy
Vafeiadi, Marina
Martí, Eulàlia
Vrijheid, Martine
Bustamante, Mariona
In utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children
title In utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children
title_full In utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children
title_fullStr In utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children
title_full_unstemmed In utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children
title_short In utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children
title_sort in utero and childhood exposure to tobacco smoke and multi-layer molecular signatures in children
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7437049/
https://www.ncbi.nlm.nih.gov/pubmed/32811491
http://dx.doi.org/10.1186/s12916-020-01686-8
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