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Updated: Jan 6, 2026

Sample Preparation to Bioinformatics Analysis of DNA Methylation: Association Strategy for Obesity and Related Trait Studies
Published on: May 6, 2022
Prenatal Phthalate Exposure, Leptin in Early Childhood, and Mediating Role of DNA Methylation
Zhenxian Jia1,2, Yun Huang2, Yiqing Lv2
1Institute of Maternal and Children Health, Wuhan Children's Hospital (Wuhan Maternal and Child Healthcare Hospital), Tongji Medical College, Huazhong University of Science & Technology, Wuhan, Hubei 430016, China.
Insights
Prenatal exposure to certain phthalates, like MiBP and MnBP, is linked to lower childhood leptin levels. DNA methylation may play a key role in this association, impacting early development.
Area of Science:
- Environmental Health
- Epigenetics
- Endocrinology
Background:
- Prenatal exposure to environmental chemicals is a growing concern.
- Phthalates are common endocrine disruptors.
- The link between prenatal phthalate exposure, leptin, and DNA methylation needs further investigation.
Purpose of the Study:
- To investigate the association between prenatal phthalate exposure and childhood leptin levels.
- To explore the mediating role of DNA methylation in this relationship.
- To identify specific phthalates and methylation sites involved.
Main Methods:
- Prospective birth cohort study in China.
- Measured maternal urinary phthalate metabolites across trimesters.
- Assessed cord blood DNA methylation and childhood plasma leptin levels.
- Utilized mediation analysis and molecular docking.
Main Results:
- Specific phthalates (MiBP, MnBP, ΣDBP, ΣLMWP) and phthalate mixtures were negatively associated with childhood leptin.
- Associations were more prominent with exposure during the second and third trimesters.
- Two CpGs, linked to RORA-AS1 and PLCD3, significantly mediated the phthalate-leptin association.
- Molecular docking showed MiBP binds to DNA methyltransferases.
Conclusions:
- Prenatal exposure to MiBP, MnBP, ΣDBP, ΣLMWP, and phthalate mixtures is associated with lower childhood leptin levels.
- DNA methylation changes are a potential mechanism mediating this effect.
- Findings highlight the impact of environmental exposures on child metabolic health.
Abstract:
Currently, research on the association of prenatal phthalate exposure with leptin, as well as the mediating role of DNA methylation, is insufficient. A birth cohort in China was conducted, followed by pregnancy to early childhood. During the follow-up period, measurements were conducted for 160 mother-child pairs, including maternal urinary phthalate concentrations in three trimesters, DNA methylation in cord blood, and leptin levels in children's plasma. The present study found that maternal urinary levels of specific phthalate metabolites, particularly MiBP (adjusted percent change [95% CI]; -6.62 [-11.73 to -1.22] in the third trimester], MnBP (adjusted percent change [95% CI]; -7.81 [-14.26 to -0.87] in the second trimester), ΣDBP (adjusted percent change [95% CI], -9.62 [-16.77 to -1.84] in the second trimester), and ΣLMWP (adjusted percent change [95% CI], -11.58 [-21.06 to -0.96] in the second trimester), were negatively associated with leptin levels in early childhood. Similarly, the phthalate mixture also showed a more prominent negative association with leptin levels in the second and third trimesters. Mediation analysis identified two CpGs that significantly mediated the association between phthalate exposure and leptin levels, annotated to genes including RORA-AS1, PLCD3, etc. Molecular docking further revealed that MiBP has a strong binding affinity and good spatial complementarity with DNA methyltransferases, providing a molecular basis for the association between MiBP and DNA methylation. In conclusion, prenatal exposure to MiBP, MnBP, ΣDBP, ΣLMWP, and mixed phthalates was associated with lower leptin levels in early childhood, possibly due to DNA methylation changes at multiple sites.
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