Epigenetic signature of very low birth weight in young adult life

出生体重 低出生体重 医学 队列 CpG站点 表观遗传学 DNA甲基化 队列研究 儿科 产科 内科学 怀孕 生物 遗传学 基因 基因表达
作者
Juho Kuula,Darina Czamara,Helena Hauta-alus,Jari Lahti,Petteri Hovi,Maija E. Miettinen,Justiina Ronkainen,Johan G. Eriksson,Sture Andersson,Marjo‐Riitta Järvelin,Sylvain Sebért,Katri Räikkönen,Elisabeth B. Binder,Eero Kajantie
出处
期刊:Pediatric Research [Springer Nature]
标识
DOI:10.1038/s41390-024-03354-6
摘要

Abstract Background Globally, one in ten babies is born preterm (<37 weeks), and 1–2% preterm at very low birth weight (VLBW, <1500 g). As adults, they are at increased risk for a plethora of health conditions, e.g., cardiometabolic disease, which may partly be mediated by epigenetic regulation. We compared blood DNA methylation between young adults born at VLBW and controls. Methods 157 subjects born at VLBW and 161 controls born at term, from the Helsinki Study of Very Low Birth Weight Adults, were assessed for peripheral venous blood DNA methylation levels at mean age of 22 years. Significant CpG-sites (5’—C—phosphate—G—3’) were meta-analyzed against continuous birth weight in four independent cohorts (pooled n = 2235) with cohort mean ages varying from 0 to 31 years. Results In the discovery cohort, 66 CpG-sites were differentially methylated between VLBW adults and controls. Top hits were located in HIF3A , EBF4, and an intergenic region nearest to GLI2 (distance 57,533 bp). Five CpG-sites, all in proximity to GLI2 , were hypermethylated in VLBW and associated with lower birth weight in the meta-analysis. Conclusion We identified differentially methylated CpG-sites suggesting an epigenetic signature of preterm birth at VLBW present in adult life. Impact Being born preterm at very low birth weight has major implications for later health and chronic disease risk factors. The mechanism linking preterm birth to later outcomes remains unknown. Our cohort study of 157 very low birth weight adults and 161 controls found 66 differentially methylated sites at mean age of 22 years. Our findings suggest an epigenetic mark of preterm birth present in adulthood, which opens up opportunities for mechanistic studies.
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