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Optimized Analysis of DNA Methylation and Gene Expression from Small, Anatomically-defined Areas of the Brain
Published on: July 12, 2012
Disrupted methylation patterns at birth persist in early childhood: a prospective cohort analysis
Andrey V Dolinko1, Bryant M Schultz2, Jayashri Ghosh2
1Department of Obstetrics and Gynecology, University of Pennsylvania, Philadelphia, PA, USA.
Insights
DNA methylation patterns in cord blood at birth remain stable into childhood, as shown by salivary DNA methylation analysis. This stability suggests potential for early prediction of health risks associated with outlier methylation phenotypes (OMP).
Area of Science:
- Epigenetics
- Human Development
- Genomic Stability
Background:
- Epigenetic alterations, specifically altered DNA methylation, are linked to adverse pregnancy and birth outcomes.
- An 'outlier methylation phenotype' (OMP) has been defined based on statistical outlier CpG sites in cord blood.
- The persistence of OMP from birth into early childhood requires investigation.
Purpose of the Study:
- To determine if children identified with an OMP at birth retain this methylation profile in early childhood.
- To assess the stability of DNA methylation patterns between cord blood and saliva over time.
Main Methods:
- Analysis of DNA methylation using the Illumina Infinium MethylationEPIC BeadChip (850K).
- Comparison of DNA methylation profiles in cord blood at birth and salivary DNA at 6-12 years of age.
- Hierarchical clustering and statistical analysis to identify OMP.
Main Results:
- DNA methylation patterns showed high stability between cord blood and saliva (R² range 0.89-0.97).
- Three out of 28 children were identified with an OMP at birth.
- The OMP methylation profiles remained stable in these children over time (individual R² > 0.90).
Conclusions:
- Cord blood DNA methylation signatures are stable and correlate strongly with childhood salivary epigenetic signatures.
- This stability supports the potential for early identification of OMP at birth.
- Future research will explore clinical associations and predictive value of OMP for adverse health outcomes.
Background:
Alterations in the epigenome are a risk factor in multiple disease states. We have demonstrated in the past that disruption of the epigenome during early pregnancy or periconception, as demonstrated by altered methylation, may be associated with both assisted reproductive technology and undesirable clinical outcomes at birth, such as low birth weight. We have previously defined this altered methylation, calculated based on statistical upper and lower limits of outlier CpGs compared to the population, as an 'outlier methylation phenotype' (OMP). Our aim in this study was to determine whether children thus identified as possessing an OMP at birth by DNA methylation in cord blood persist as outliers in early childhood based on salivary DNA methylation.
Results:
A total of 31 children were included in the analysis. Among 24 children for whom both cord blood DNA and salivary DNA were available, DNA methylation patterns, analyzed using the Illumina Infinium MethylationEPIC BeadChip (850 K), between cord blood at birth and saliva in childhood at age 6-12 years remain stable (R2 range 0.89-0.97). At birth, three out of 28 children demonstrated an OMP in multiple cord blood datasets and hierarchical clustering. Overall DNA methylation among all three OMP children identified as outliers at birth was remarkably stable (individual R2 0.908, 0.92, 0.915), even when only outlier CpG sites were considered (R2 0.694, 0.738, 0.828).
Conclusions:
DNA methylation signatures in cord blood remain stable over time as demonstrated by a strong correlation with epigenetic salivary signatures in childhood. Future work is planned to identify whether a clinical phenotype is associated with OMP and, if so, could undesirable clinical outcomes in childhood and adulthood be predicted at birth.
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