DNA methylation differences stratified by normalized fetal/placental weight ratios suggest neurodevelopmental deficits in neonates with congenital heart disease

M Marin Jacobwitz M Michael Xie J Jamie Catalano I Ingo Helbig J J. William Gaynor (Division of Cardiothoracic Surgery, Children's Hospital of Philadelphia) N Nancy Burnham R Rebecca L. Linn J Juliana Gebb M Mark W. Russell H Hakon Hakonarson B Barbara H. Chaiyachati A Ana G. Cristancho

Abstract

Background We lack early biomarkers for predicting neurodevelopment (ND) outcomes in children with congenital heart disease (CHD). Placentas of fetuses with CHD have abnormalities, including unbalanced fetal/placental weight ratios (F/P). Although DNA methylation profiles have revealed insights into the maternal-fetal environment (MFE), it is unknown if DNA methylation correlates to normalized F/P weight ratio groups and how these differences relate to ND outcomes. Methods We prospectively recruited a cohort of pregnant women carrying a fetus with CHD. A subset of the cohort had DNA methylation performed on either umbilical cord blood or postnatal blood (45 full-term neonates). We calculated normalized F/P weight ratios, focusing on three normalized F/P ratio groups for analysis. We calculated differential methylation signals in eight ND disabilities-associated gene sets. Normalized F/P ratios were compared to 18-month Bayley Scales of Infant Development-III scores (BSID-III). Results Unbiased gene ontology enrichment analysis of differentially methylated regions revealed enrichment for brain development-related pathways. Although there were no significant differences between normalized F/P weight ratio groups and BSID-III, disease-associated gene set pathway analysis revealed significant methylation differences between the most severely unbalanced F/P weight ratio and normal F/P weight ratio groups. Conclusion Gene ontology enrichment analysis of differential methylation regions revealed significant differences between normalized F/P weight ratio groups in neurogenesis genes. Furthermore, our data identified methylation differences between unbalanced and balanced normalized F/P weight ratio groups in gene pathways associated with ND dysfunction common in the aging CHD population suggesting converging pathways for ND disorders that should be investigated further.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 8
Published August 06, 2025
Pages e0317944
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (12)

M

Marin Jacobwitz

M

Michael Xie

J

Jamie Catalano

I

Ingo Helbig

J

J. William Gaynor

Division of Cardiothoracic Surgery, Children's Hospital of Philadelphia

N

Nancy Burnham

R

Rebecca L. Linn

J

Juliana Gebb

M

Mark W. Russell

H

Hakon Hakonarson

B

Barbara H. Chaiyachati

A

Ana G. Cristancho