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Published on: July 12, 2012
DNA methylation patterns at birth predict health outcomes in young adults born very low birthweight
Vicky A Cameron1, Gregory T Jones2, L John Horwood3
1Christchurch Heart Institute, Department of Medicine, University of Otago, Christchurch, PO Box 4345, Christchurch, 8140, New Zealand. Vicky.cameron@otago.ac.nz.
Insights
DNA methylation patterns at birth in individuals born very low birthweight (VLBW) can predict future cardiovascular and respiratory risks in adulthood. These neonatal epigenetic markers offer potential for early intervention to improve long-term health outcomes.
Area of Science:
- Epigenetics and Developmental Origins of Health and Disease (DOHaD)
- Cardiovascular and Respiratory Health
- Neonatal and Perinatal Medicine
Background:
- Individuals born very low birthweight (VLBW) face elevated risks for impaired adult cardiovascular and respiratory function.
- Identifying predictive markers for VLBW individuals is crucial for targeted health interventions.
Purpose of the Study:
- To investigate DNA methylation differences at birth and in adulthood between VLBW individuals and normal birthweight controls.
- To identify neonatal DNA methylation markers associated with adult cardiovascular and respiratory outcomes.
Main Methods:
- Analysis of DNA methylation using Illumina Infinium MethylationEPIC 850K arrays on newborn heel-prick blood and adult peripheral blood samples.
- Comparison of methylation levels between VLBW and control groups at birth (n=109 VLBW, 51 controls) and at 28 years (n=215 VLBW, 96 controls).
- Statistical analysis including linear regression with FDR correction to identify differentially methylated sites and regions, and association analysis with adult health outcomes.
Main Results:
- Over 16,400 CpG sites showed differential methylation in neonates, enriched in Cardiac Hypertrophy Signaling pathways.
- Fifteen of the top 20 neonatal differentially methylated CpGs were associated with adult cardiovascular traits.
- In adults, twelve CpGs differed between groups, with significant changes in genes like EBF4 and HIF3A; GrimAge scores were higher in VLBW adults.
Conclusions:
- Neonatal DNA methylation patterns are informative for predicting adult cardiovascular and respiratory outcomes in VLBW individuals.
- These findings highlight the potential of early epigenetic markers for guiding preventative care strategies.
- Early identification of methylation differences may lead to improved long-term health for VLBW survivors.
Background:
Individuals born very low birthweight (VLBW) are at increased risk of impaired cardiovascular and respiratory function in adulthood. To identify markers to predict future risk for VLBW individuals, we analyzed DNA methylation at birth and at 28 years in the New Zealand (NZ) VLBW cohort (all infants born < 1500 g in NZ in 1986) compared with age-matched, normal birthweight controls. Associations between neonatal methylation and cardiac structure and function (echocardiography), vascular function and respiratory outcomes at age 28 years were documented.
Results:
Genomic DNA from archived newborn heel-prick blood (n = 109 VLBW, 51 controls) and from peripheral blood at ~ 28 years (n = 215 VLBW, 96 controls) was analyzed on Illumina Infinium MethylationEPIC 850 K arrays. Following quality assurance and normalization, methylation levels were compared between VLBW cases and controls at both ages by linear regression, with genome-wide significance set to p < 0.05 adjusted for false discovery rate (FDR, Benjamini-Hochberg). In neonates, methylation at over 16,400 CpG methylation sites differed between VLBW cases and controls and the canonical pathway most enriched for these CpGs was Cardiac Hypertrophy Signaling (p = 3.44E-11). The top 20 CpGs that differed most between VLBW cases and controls featured clusters in ARID3A, SPATA33, and PLCH1 and these 3 genes, along with MCF2L, TRBJ2-1 and SRC, led the list of 15,000 differentially methylated regions (DMRs) reaching FDR-adj significance. Fifteen of the 20 top CpGs in the neonate EWAS showed associations between methylation at birth and adult cardiovascular traits (particularly LnRHI). In 28-year-old adults, twelve CpGs differed between VLBW cases and controls at FDR-adjusted significance, including hypermethylation in EBF4 (four CpGs), CFI and UNC119B and hypomethylation at three CpGs in HIF3A and one in KCNQ1. DNA methylation GrimAge scores at 28 years were significantly greater in VLBW cases versus controls and weakly associated with cardiovascular traits. Four CpGs were identified where methylation differed between VLBW cases and controls in both neonates and adults, three reversing directions with age (two CpGs in EBF4, one in SNAI1 were hypomethylated in neonates, hypermethylated in adults). Of these, cg16426670 in EBF4 at birth showed associations with several cardiovascular traits in adults.
Conclusions:
These findings suggest that methylation patterns in VLBW neonates may be informative about future adult cardiovascular and respiratory outcomes and have value in guiding early preventative care to improve adult health.
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