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Long-term cardiometabolic health in people born after assisted reproductive technology: a multi-cohort analysis
Ahmed Elhakeem1,2, Amy E Taylor1,2,3, Hazel M Inskip4
1MRC Integrative Epidemiology Unit at the University of Bristol, Bristol, UK.
Insights
Assisted reproductive technology (ART) conception shows minimal differences in offspring cardiometabolic health compared to natural conception (NC). While some lipid levels were higher, most outcomes like blood pressure and glucose showed no significant long-term impact.
Area of Science:
- Reproductive Medicine
- Pediatric Cardiology
- Metabolic Health
Background:
- Assisted reproductive technology (ART) is increasingly common, raising questions about long-term offspring health.
- Understanding the cardiometabolic health of ART-conceived children is crucial for clinical guidance.
Approach:
- A meta-analysis of 14 European, Australian, and Singaporean birth cohorts examined cardiometabolic markers in 35,938 offspring (654 ART).
- Longitudinal trajectory modeling assessed changes in outcomes from early childhood to young adulthood.
Key Points:
- ART conception was associated with statistically significant higher total cholesterol, HDL, and LDL levels compared to natural conception (NC).
- No significant differences were observed in systolic blood pressure (SBP), diastolic blood pressure (DBP), heart rate (HR), triglycerides (TG), glucose, insulin, or glycated hemoglobin.
- Long-term follow-up indicated subtle trajectories towards higher SBP and TG in young adulthood for ART-conceived individuals, though most differences were not statistically significant.
Conclusions:
- Small and largely non-significant differences in cardiometabolic outcomes suggest ART is generally safe for offspring.
- Further long-term studies are needed to fully understand the risks of cardiovascular disease and metabolic disorders into adulthood.
Aims:
To examine associations of assisted reproductive technology (ART) conception (vs. natural conception: NC) with offspring cardiometabolic health outcomes and whether these differ with age.
Methods And Results:
Differences in systolic (SBP) and diastolic blood pressure (DBP), heart rate (HR), lipids, and hyperglycaemic/insulin resistance markers were examined using multiple linear regression models in 14 population-based birth cohorts in Europe, Australia, and Singapore, and results were combined using meta-analysis. Change in cardiometabolic outcomes from 2 to 26 years was examined using trajectory modelling of four cohorts with repeated measures. 35 938 (654 ART) offspring were included in the meta-analysis. Mean age ranged from 13 months to 27.4 years but was <10 years in 11/14 cohorts. Meta-analysis found no statistical difference (ART minus NC) in SBP (-0.53 mmHg; 95% CI:-1.59 to 0.53), DBP (-0.24 mmHg; -0.83 to 0.35), or HR (0.02 beat/min; -0.91 to 0.94). Total cholesterol (2.59%; 0.10-5.07), HDL cholesterol (4.16%; 2.52-5.81), LDL cholesterol (4.95%; 0.47-9.43) were statistically significantly higher in ART-conceived vs. NC offspring. No statistical difference was seen for triglycerides (TG), glucose, insulin, and glycated haemoglobin. Long-term follow-up of 17 244 (244 ART) births identified statistically significant associations between ART and lower predicted SBP/DBP in childhood, and subtle trajectories to higher SBP and TG in young adulthood; however, most differences were not statistically significant.
Conclusion:
These findings of small and statistically non-significant differences in offspring cardiometabolic outcomes should reassure people receiving ART. Longer-term follow-up is warranted to investigate changes over adulthood in the risks of hypertension, dyslipidaemia, and preclinical and clinical cardiovascular disease.
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