ArticleJournal of the American Heart Association2025
Preterm Birth and Cardiometabolic Health Trajectories From Birth to Adulthood: The Avon Longitudinal Study of Parents and Children.
Article in Journal of the American Heart Association, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Nature vs nurture of glucose homeostasis trajectories in children from the ALSPAC study.Diabetologia · 2026Article
- Adiposity Rebound or Fat-Free Mass Anabolism in Children-Challenging a 42-Year-Old BMI Puzzle with Waist-to-Height Ratio: The ASNF-NNF 2025 Inaugural Flemming Quaade Award for Innovation in Childhood Obesity Lecture.The Journal of nutrition · 2026Article
- DXA-measured truncal adiposity in adolescence but not in childhood longitudinally predicts worsening cardiac outcomes.European journal of endocrinology · 2026Article
- Joint Modeling of Birth Outcomes Using a Copula Distributional Regression Approach.Health economics · 2026Article
- Stop using "former": preterm birth and cardiometabolic risk to future health.Pediatric research · 2026Review
- Developing point-of-care tools to inform decisions regarding prescription medication use in pregnancy.npj women's health · 2025Article
Corrections and comments
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Authors and funding
6 authors.
Funding
Abstract
backgroundAdults who were born prematurely (<37 weeks' gestation) are at increased cardiovascular disease risk, but it is unclear when in the life course this risk emerges. Our aim was to compare trajectories of multiple cardiometabolic risk factors from childhood to early adulthood between those who had and had not been born preterm. METHODS AND
resultsMultilevel models were used to compare trajectories from early childhood (<9 years) to age 25 years of body mass index, fat and lean mass, systolic and diastolic blood pressure, lipids, glucose, and insulin, between individuals born preterm (N=311-676; range, 25-36 weeks' gestation) and term (N=4973-10 534) in a UK birth cohort study. We also investigated gestational age as a continuum. In children born preterm (versus term), systolic and diastolic blood pressures were higher at age 7 years (mean predicted differences, 0.7 [95% CI, -0.2 to 1.6] mm Hg and 0.6 [95% CI, -0.04 to 1.3] mm Hg, respectively). By age 18 years, the difference in systolic blood pressure persisted (1.9 [95% CI, 0.8-3.1] mm Hg) and in diastolic blood pressure (0.1 [95% CI, -0.7 to 1.0 mm Hg]) disappeared. By age 25 years, this difference in systolic blood pressure began to attenuate towards the null (0.9 [95% CI, -0.5 to 2.3] mm Hg). Participants born preterm (versus term) had lower body mass index between ages 7 and 18 years, but by age 25 years, there was no difference. Fat and lean mass trajectories were consistent with body mass index. High-density lipoprotein cholesterol was higher and triglycerides lower at birth, in those born preterm, but this difference also disappeared by age 25 years. There was no evidence of differences in glucose and insulin.
conclusionsFew, modest differences in cardiometabolic health were found in those born preterm versus term. All disappeared by age 25 years, except the small difference in systolic blood pressure. Longer follow-up is needed to establish if and when cardiometabolic health trajectories diverge between these 2 groups.
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