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Published on: July 14, 2014
Vascular Health of Children Conceived via In Vitro Fertilization
Wendy Y Zhang1, Elif Seda Selamet Tierney2, Angela C Chen2
1Stanford University School of Medicine, Stanford, CA.
Insights
Children conceived via in vitro fertilization (IVF) may have poorer cardiovascular health. This pilot study found evidence of abnormal vascular health in IVF offspring compared to controls, warranting further research.
Area of Science:
- Cardiovascular Health
- Reproductive Medicine
- Pediatrics
Background:
- In vitro fertilization (IVF) is a common assisted reproductive technology.
- Long-term effects of IVF on offspring cardiovascular health are not fully understood.
Purpose of the Study:
- To evaluate the cardiovascular health of children conceived via IVF.
- To assess vascular properties including arterial stiffness and endothelial function in IVF offspring.
Main Methods:
- Cross-sectional pilot study involving 17 children conceived via IVF (ages 10-14).
- Vascular health assessment included carotid artery ultrasound (intima-media thickness, stiffness) and pulse wave velocity.
- Endothelial function was assessed using pulse amplitude testing; comparisons were made to controls.
Main Results:
- IVF offspring exhibited thicker carotid intima-media thickness and increased arterial stiffness (higher elastic modulus, β-stiffness, peak velocity) compared to controls.
- Endothelial function (reactive hyperemia index) and mean pulse wave velocity did not significantly differ, though 47% of IVF children had abnormal values.
Conclusions:
- Children conceived via IVF may show early signs of abnormal vascular health.
- Further large-scale, long-term studies are needed to confirm these findings and understand the implications.
Objective:
To evaluate whether in vitro fertilization (IVF) has an effect on the cardiovascular health of offspring.
Study Design:
This was a cross-sectional pilot study. We performed vascular health assessment for 17 children aged 10-14 years who were conceived via IVF with autologous oocytes at Stanford University. Carotid artery ultrasound evaluated intima-media thickness and stiffness, carotid-femoral pulse wave velocity determined segmental arterial stiffness, and endothelial pulse amplitude testing assessed endothelial function. We compared IVF offspring with control adolescents assessed in the same laboratory, with all comparisons adjusted for age, sex, and race/ethnicity.
Results:
All participants had normal body mass index and blood pressure. Compared with controls, IVF children had thicker common carotid artery intima-media thickness (0.44 ± 0.03 mm vs 0.38 ± 0.03 mm; P < .01), higher elastic modulus (395.29 ± 185.33 mm Hg vs 242.79 ± 37.69 mm Hg; P = .01), higher βstiffness (2.65 ± 0.38 vs 2.28 ± 0.23; P < .01), and higher peak velocity (142.29 ± 31.62 cm/s vs 117.71 ± 32.69 cm/s; P = .04). The mean endothelial pulse amplitude testing reactive hyperemia index was not significantly different between IVF and controls. The mean pulse wave velocity was 4.69 ± 0.51 m/s compared with the controls 4.60 ± 0.57 m/s (P = .11), with 8 (47%) having abnormal values.
Conclusion:
In an assessment of endothelial function and arterial properties of children conceived via IVF, we found that children conceived via IVF seem to have evidence of abnormal vascular health. Further studies with larger sample size and long-term follow-up are warranted.
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