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Download fileEffects of early-life environment and epigenetics on cardiovascular disease risk in children: highlighting the role of twin studies
journal contribution
posted on 2013-01-01, 00:00 authored by C Sun, D Burgner, A L Ponsonby, R Saffery, R C Huang, Peter VuillerminPeter Vuillermin, M Cheung, Jeffrey CraigJeffrey CraigCardiovascular disease (CVD) is the leading cause of death worldwide and originates in early life. The exact mechanisms of this early-life origin are unclear, but a likely mediator at the molecular level is epigenetic dysregulation of gene expression. Epigenetic factors have thus been posited as the likely drivers of early-life programming of adult-onset diseases. This review summarizes recent advances in epidemiology and epigenetic research of CVD risk in children, with a particular focus on twin studies. Classic twin studies enable partitioning of phenotypic variance within a population into additive genetic, shared, and nonshared environmental variances, and are invaluable in research in this area. Longitudinal cohort twin studies, in particular, may provide important insights into the role of epigenetics in the pathogenesis of CVD. We describe candidate gene and epigenome-wide association studies (EWASs) and transgenerational epigenetic inheritance of CVD, and discuss the potential for evidence-based interventions. Identifying epigenetic changes associated with CVD-risk biomarkers in children will provide new opportunities to unravel the underlying biological mechanism of the origins of CVD and enable identification of those at risk for early-life interventions to alter the risk trajectory and potentially reduce CVD incidence later in life.
History
Journal
Pediatric researchVolume
73Issue
4-2Pagination
523 - 530Publisher
Nature Publishing GroupLocation
Boston, Mass.Publisher DOI
Link to full text
ISSN
0031-3998eISSN
1530-0447Language
engPublication classification
C1 Refereed article in a scholarly journalUsage metrics
Categories
No categories selectedKeywords
cardiovascular diseaseepigeneticstwin studiesearly life environmentScience & TechnologyLife Sciences & BiomedicinePediatricsDIETARY-PROTEIN RESTRICTIONRETINAL VASCULAR CALIBERRENIN-ANGIOTENSIN SYSTEMDNA METHYLATION ANALYSISCORONARY-HEART-DISEASEMETABOLIC SYNDROMEBIRTH-WEIGHTBLOOD-PRESSUREPROMOTER METHYLATIONDIABETIC-NEPHROPATHY