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Maternal Glycemic Dysregulation During Pregnancy and Neonatal Blood DNA Methylation: Meta-analyses of Epigenome-Wide Association Studies

OBJECTIVE: Maternal glycemic dysregulation during pregnancy increases the risk of adverse health outcomes in her offspring, a risk thought to be linearly related to maternal hyperglycemia. It is hypothesized that changes in offspring DNA methylation (DNAm) underline these associations. RESEARCH DESI...

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Autores principales: Tobi, Elmar W., Juvinao-Quintero, Diana L., Ronkainen, Justiina, Ott, Raffael, Alfano, Rossella, Canouil, Mickaël, Geurtsen, Madelon L., Khamis, Amna, Küpers, Leanne K., Lim, Ives Y., Perron, Patrice, Pesce, Giancarlo, Tuhkanen, Johanna, Starling, Anne P., Andrew, Toby, Binder, Elisabeth, Caiazzo, Robert, Chan, Jerry K.Y., Gaillard, Romy, Gluckman, Peter D., Keikkala, Elina, Karnani, Neerja, Mustaniemi, Sanna, Nawrot, Tim S., Pattou, François, Plusquin, Michelle, Raverdy, Violeta, Tan, Kok Hian, Tzala, Evangelia, Raikkonen, Katri, Winkler, Christiane, Ziegler, Anette-G., Annesi-Maesano, Isabella, Bouchard, Luigi, Chong, Yap Seng, Dabelea, Dana, Felix, Janine F., Heude, Barbara, Jaddoe, Vincent W.V., Lahti, Jari, Reimann, Brigitte, Vääräsmäki, Marja, Bonnefond, Amélie, Froguel, Philippe, Hummel, Sandra, Kajantie, Eero, Jarvelin, Marjo-Riita, Steegers-Theunissen, Regine P.M., Howe, Caitlin G., Hivert, Marie-France, Sebert, Sylvain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8918264/
https://www.ncbi.nlm.nih.gov/pubmed/35104326
http://dx.doi.org/10.2337/dc21-1701
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author Tobi, Elmar W.
Juvinao-Quintero, Diana L.
Ronkainen, Justiina
Ott, Raffael
Alfano, Rossella
Canouil, Mickaël
Geurtsen, Madelon L.
Khamis, Amna
Küpers, Leanne K.
Lim, Ives Y.
Perron, Patrice
Pesce, Giancarlo
Tuhkanen, Johanna
Starling, Anne P.
Andrew, Toby
Binder, Elisabeth
Caiazzo, Robert
Chan, Jerry K.Y.
Gaillard, Romy
Gluckman, Peter D.
Keikkala, Elina
Karnani, Neerja
Mustaniemi, Sanna
Nawrot, Tim S.
Pattou, François
Plusquin, Michelle
Raverdy, Violeta
Tan, Kok Hian
Tzala, Evangelia
Raikkonen, Katri
Winkler, Christiane
Ziegler, Anette-G.
Annesi-Maesano, Isabella
Bouchard, Luigi
Chong, Yap Seng
Dabelea, Dana
Felix, Janine F.
Heude, Barbara
Jaddoe, Vincent W.V.
Lahti, Jari
Reimann, Brigitte
Vääräsmäki, Marja
Bonnefond, Amélie
Froguel, Philippe
Hummel, Sandra
Kajantie, Eero
Jarvelin, Marjo-Riita
Steegers-Theunissen, Regine P.M.
Howe, Caitlin G.
Hivert, Marie-France
Sebert, Sylvain
author_facet Tobi, Elmar W.
Juvinao-Quintero, Diana L.
Ronkainen, Justiina
Ott, Raffael
Alfano, Rossella
Canouil, Mickaël
Geurtsen, Madelon L.
Khamis, Amna
Küpers, Leanne K.
Lim, Ives Y.
Perron, Patrice
Pesce, Giancarlo
Tuhkanen, Johanna
Starling, Anne P.
Andrew, Toby
Binder, Elisabeth
Caiazzo, Robert
Chan, Jerry K.Y.
Gaillard, Romy
Gluckman, Peter D.
Keikkala, Elina
Karnani, Neerja
Mustaniemi, Sanna
Nawrot, Tim S.
Pattou, François
Plusquin, Michelle
Raverdy, Violeta
Tan, Kok Hian
Tzala, Evangelia
Raikkonen, Katri
Winkler, Christiane
Ziegler, Anette-G.
Annesi-Maesano, Isabella
Bouchard, Luigi
Chong, Yap Seng
Dabelea, Dana
Felix, Janine F.
Heude, Barbara
Jaddoe, Vincent W.V.
Lahti, Jari
Reimann, Brigitte
Vääräsmäki, Marja
Bonnefond, Amélie
Froguel, Philippe
Hummel, Sandra
Kajantie, Eero
Jarvelin, Marjo-Riita
Steegers-Theunissen, Regine P.M.
Howe, Caitlin G.
Hivert, Marie-France
Sebert, Sylvain
author_sort Tobi, Elmar W.
collection PubMed
description OBJECTIVE: Maternal glycemic dysregulation during pregnancy increases the risk of adverse health outcomes in her offspring, a risk thought to be linearly related to maternal hyperglycemia. It is hypothesized that changes in offspring DNA methylation (DNAm) underline these associations. RESEARCH DESIGN AND METHODS: To address this hypothesis, we conducted fixed-effects meta-analyses of epigenome-wide association study (EWAS) results from eight birth cohorts investigating relationships between cord blood DNAm and fetal exposure to maternal glucose (N(maximum) = 3,503), insulin (N(maximum) = 2,062), and area under the curve of glucose (AUC(gluc)) following oral glucose tolerance tests (N(maximum) = 1,505). We performed lookup analyses for identified cytosine-guanine dinucleotides (CpGs) in independent observational cohorts to examine associations between DNAm and cardiometabolic traits as well as tissue-specific gene expression. RESULTS: Greater maternal AUC(gluc) was associated with lower cord blood DNAm at neighboring CpGs cg26974062 (β [SE] −0.013 [2.1 × 10(−3)], P value corrected for false discovery rate [P(FDR)] = 5.1 × 10(−3)) and cg02988288 (β [SE]−0.013 [2.3 × 10(−3)], P(FDR) = 0.031) in TXNIP. These associations were attenuated in women with GDM. Lower blood DNAm at these two CpGs near TXNIP was associated with multiple metabolic traits later in life, including type 2 diabetes. TXNIP DNAm in liver biopsies was associated with hepatic expression of TXNIP. We observed little evidence of associations between either maternal glucose or insulin and cord blood DNAm. CONCLUSIONS: Maternal hyperglycemia, as reflected by AUC(gluc), was associated with lower cord blood DNAm at TXNIP. Associations between DNAm at these CpGs and metabolic traits in subsequent lookup analyses suggest that these may be candidate loci to investigate in future causal and mediation analyses.
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spelling pubmed-89182642022-03-17 Maternal Glycemic Dysregulation During Pregnancy and Neonatal Blood DNA Methylation: Meta-analyses of Epigenome-Wide Association Studies Tobi, Elmar W. Juvinao-Quintero, Diana L. Ronkainen, Justiina Ott, Raffael Alfano, Rossella Canouil, Mickaël Geurtsen, Madelon L. Khamis, Amna Küpers, Leanne K. Lim, Ives Y. Perron, Patrice Pesce, Giancarlo Tuhkanen, Johanna Starling, Anne P. Andrew, Toby Binder, Elisabeth Caiazzo, Robert Chan, Jerry K.Y. Gaillard, Romy Gluckman, Peter D. Keikkala, Elina Karnani, Neerja Mustaniemi, Sanna Nawrot, Tim S. Pattou, François Plusquin, Michelle Raverdy, Violeta Tan, Kok Hian Tzala, Evangelia Raikkonen, Katri Winkler, Christiane Ziegler, Anette-G. Annesi-Maesano, Isabella Bouchard, Luigi Chong, Yap Seng Dabelea, Dana Felix, Janine F. Heude, Barbara Jaddoe, Vincent W.V. Lahti, Jari Reimann, Brigitte Vääräsmäki, Marja Bonnefond, Amélie Froguel, Philippe Hummel, Sandra Kajantie, Eero Jarvelin, Marjo-Riita Steegers-Theunissen, Regine P.M. Howe, Caitlin G. Hivert, Marie-France Sebert, Sylvain Diabetes Care Epidemiology/Health Services Research OBJECTIVE: Maternal glycemic dysregulation during pregnancy increases the risk of adverse health outcomes in her offspring, a risk thought to be linearly related to maternal hyperglycemia. It is hypothesized that changes in offspring DNA methylation (DNAm) underline these associations. RESEARCH DESIGN AND METHODS: To address this hypothesis, we conducted fixed-effects meta-analyses of epigenome-wide association study (EWAS) results from eight birth cohorts investigating relationships between cord blood DNAm and fetal exposure to maternal glucose (N(maximum) = 3,503), insulin (N(maximum) = 2,062), and area under the curve of glucose (AUC(gluc)) following oral glucose tolerance tests (N(maximum) = 1,505). We performed lookup analyses for identified cytosine-guanine dinucleotides (CpGs) in independent observational cohorts to examine associations between DNAm and cardiometabolic traits as well as tissue-specific gene expression. RESULTS: Greater maternal AUC(gluc) was associated with lower cord blood DNAm at neighboring CpGs cg26974062 (β [SE] −0.013 [2.1 × 10(−3)], P value corrected for false discovery rate [P(FDR)] = 5.1 × 10(−3)) and cg02988288 (β [SE]−0.013 [2.3 × 10(−3)], P(FDR) = 0.031) in TXNIP. These associations were attenuated in women with GDM. Lower blood DNAm at these two CpGs near TXNIP was associated with multiple metabolic traits later in life, including type 2 diabetes. TXNIP DNAm in liver biopsies was associated with hepatic expression of TXNIP. We observed little evidence of associations between either maternal glucose or insulin and cord blood DNAm. CONCLUSIONS: Maternal hyperglycemia, as reflected by AUC(gluc), was associated with lower cord blood DNAm at TXNIP. Associations between DNAm at these CpGs and metabolic traits in subsequent lookup analyses suggest that these may be candidate loci to investigate in future causal and mediation analyses. American Diabetes Association 2022-03 2022-03-04 /pmc/articles/PMC8918264/ /pubmed/35104326 http://dx.doi.org/10.2337/dc21-1701 Text en © 2022 by the American Diabetes Association https://www.diabetesjournals.org/content/licenseReaders may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. More information is available at https://www.diabetesjournals.org/journals/pages/license.
spellingShingle Epidemiology/Health Services Research
Tobi, Elmar W.
Juvinao-Quintero, Diana L.
Ronkainen, Justiina
Ott, Raffael
Alfano, Rossella
Canouil, Mickaël
Geurtsen, Madelon L.
Khamis, Amna
Küpers, Leanne K.
Lim, Ives Y.
Perron, Patrice
Pesce, Giancarlo
Tuhkanen, Johanna
Starling, Anne P.
Andrew, Toby
Binder, Elisabeth
Caiazzo, Robert
Chan, Jerry K.Y.
Gaillard, Romy
Gluckman, Peter D.
Keikkala, Elina
Karnani, Neerja
Mustaniemi, Sanna
Nawrot, Tim S.
Pattou, François
Plusquin, Michelle
Raverdy, Violeta
Tan, Kok Hian
Tzala, Evangelia
Raikkonen, Katri
Winkler, Christiane
Ziegler, Anette-G.
Annesi-Maesano, Isabella
Bouchard, Luigi
Chong, Yap Seng
Dabelea, Dana
Felix, Janine F.
Heude, Barbara
Jaddoe, Vincent W.V.
Lahti, Jari
Reimann, Brigitte
Vääräsmäki, Marja
Bonnefond, Amélie
Froguel, Philippe
Hummel, Sandra
Kajantie, Eero
Jarvelin, Marjo-Riita
Steegers-Theunissen, Regine P.M.
Howe, Caitlin G.
Hivert, Marie-France
Sebert, Sylvain
Maternal Glycemic Dysregulation During Pregnancy and Neonatal Blood DNA Methylation: Meta-analyses of Epigenome-Wide Association Studies
title Maternal Glycemic Dysregulation During Pregnancy and Neonatal Blood DNA Methylation: Meta-analyses of Epigenome-Wide Association Studies
title_full Maternal Glycemic Dysregulation During Pregnancy and Neonatal Blood DNA Methylation: Meta-analyses of Epigenome-Wide Association Studies
title_fullStr Maternal Glycemic Dysregulation During Pregnancy and Neonatal Blood DNA Methylation: Meta-analyses of Epigenome-Wide Association Studies
title_full_unstemmed Maternal Glycemic Dysregulation During Pregnancy and Neonatal Blood DNA Methylation: Meta-analyses of Epigenome-Wide Association Studies
title_short Maternal Glycemic Dysregulation During Pregnancy and Neonatal Blood DNA Methylation: Meta-analyses of Epigenome-Wide Association Studies
title_sort maternal glycemic dysregulation during pregnancy and neonatal blood dna methylation: meta-analyses of epigenome-wide association studies
topic Epidemiology/Health Services Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8918264/
https://www.ncbi.nlm.nih.gov/pubmed/35104326
http://dx.doi.org/10.2337/dc21-1701
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