A nested case-control study of air pollution and congenital heart defects via circulating proteins

Prenatal air pollution exposure is linked to congenital heart defects (CHD), while the underlying molecular mechanisms remain poorly understood. Here we showed that maternal exposure to PM2.5, PM10, and NO2 was significantly associated with increased CHD risk during the periconception period, with NO2 exhibiting the strongest effect. Moreover, a supervised sparse partial least square model identified pollutant-specific protein signatures in both maternal serum and umbilical cord serum. These protein fingerprints could effectively reflect the levels of air pollution and were significantly associated with CHD outcomes. Notably, our study revealed that FGF-4, VEGF-D, MSP, and Angiogenin may be involved in air pollution-associated cardiac malformations. Overall, this study promotes the understanding of the association between air pollution and CHD by identifying susceptible populations and underlying molecular mechanisms, providing a scientific basis for mitigation policies and prenatal healthcare. Prenatal exposure to air pollution has been linked to risk of congenital heart defects (CHD). Here the authors report that periconception exposure, especially to NO₂, is associated with higher CHD risk and distinct maternal and cord blood protein signatures.

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Publication Details

Journal
Nature Communications
Published
2026-09-09
DOI
https://doi.org/10.1038/s41467-026-77623-9
Primary Topic
Air Quality and Health Impacts
Type
article
Field-Weighted Citation Impact
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article

A nested case-control study of air pollution and congenital heart defects via circulating proteins

Junchao Duan, Chenghong Yin, Ruiyang Ding, Chen Liang et al.
Nature Communications
Air Quality and Health Impacts
article

A nested case-control study of air pollution and congenital heart defects via circulating proteins

Junchao Duan, Chenghong Yin, Ruiyang Ding, Chen Liang, Shuanghua Xie, Jianhui Liu, Tianhe Li, Ruixia Liu, Shaofei Su, Zhiwei Sun
article en

Abstract

Prenatal air pollution exposure is linked to congenital heart defects (CHD), while the underlying molecular mechanisms remain poorly understood. Here we showed that maternal exposure to PM2.5, PM10, and NO2 was significantly associated with increased CHD risk during the periconception period, with NO2 exhibiting the strongest effect. Moreover, a supervised sparse partial least square model identified pollutant-specific protein signatures in both maternal serum and umbilical cord serum. These protein fingerprints could effectively reflect the levels of air pollution and were significantly associated with CHD outcomes. Notably, our study revealed that FGF-4, VEGF-D, MSP, and Angiogenin may be involved in air pollution-associated cardiac malformations. Overall, this study promotes the understanding of the association between air pollution and CHD by identifying susceptible populations and underlying molecular mechanisms, providing a scientific basis for mitigation policies and prenatal healthcare. Prenatal exposure to air pollution has been linked to risk of congenital heart defects (CHD). Here the authors report that periconception exposure, especially to NO₂, is associated with higher CHD risk and distinct maternal and cord blood protein signatures.

Nature Communications
Capital Medical University (CN), Beijing Obstetrics and Gynecology Hospital (CN)
Good health and well-being
Openalex Percentile: Top 11%
Air Quality and Health Impacts
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A nested case-control study of air pollution and congenital heart defects via circulating proteins — Junchao Duan, Chenghong Yin, et al. · Nature Communications (2026) | TGRS Research Map | TGRS