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Persistent Aortic Stiffness and Left Ventricular Hypertrophy in Children of Diabetic Mothers
Victor Do1,2, Luke Eckersley1,2, Lily Lin1
1Fetal and Neonatal Cardiology Program, Division of Cardiology, Department of Pediatrics, University of Alberta, Edmonton, Alberta, Canada.
Insights
Children of diabetic mothers (CDMs) show persistent left ventricular hypertrophy and increased aortic stiffness into early childhood. These cardiovascular changes, linked to maternal hemoglobin A1c, indicate a long-term risk for cardiovascular disease.
Area of Science:
- Cardiology
- Pediatrics
- Maternal-Fetal Medicine
Background:
- Maternal diabetes during pregnancy can lead to fetal left ventricular (LV) hypertrophy.
- Infants of diabetic mothers face increased long-term cardiovascular disease risk.
- Previous studies showed persistent LV hypertrophy and aortic stiffness in infants of diabetic mothers.
Purpose of the Study:
- To determine if cardiovascular abnormalities persist in children of diabetic mothers (CDMs) into early childhood.
- To re-examine a cohort of CDMs and control children from infancy to early childhood.
- To assess the long-term impact of maternal diabetes on offspring cardiovascular health.
Main Methods:
- Echocardiography to assess LV posterior wall and interventricular septal diastolic thickness (IVSd), and systolic/diastolic function.
- Measurement of aortic pulse wave velocity (aortic stiffness).
- Assessment of vascular reactivity and physical activity levels.
Main Results:
- Children of diabetic mothers (CDMs) exhibited increased IVSd z scores and aortic pulse wave velocity compared to controls.
- Increased aortic stiffness correlated with IVSd z score and third-trimester maternal hemoglobin A1c.
- Longitudinal analysis confirmed persistent IVSd and aortic stiffness from in utero to early childhood.
Conclusions:
- Children of diabetic mothers demonstrate persistently increased interventricular septal thickness and aortic stiffness in early childhood.
- These findings highlight a continued risk for cardiovascular complications in CDMs.
- Early childhood cardiovascular abnormalities are linked to in-utero conditions related to maternal diabetes.
Background:
Fetuses of diabetic mothers develop left ventricular (LV) hypertrophy and are at increased long-term risk of cardiovascular disease. In our previous longitudinal study from midgestation to late infancy we showed persistence of LV hypertrophy and increased aortic stiffness compared with infants of healthy mothers, the latter of which correlated with third trimester maternal hemoglobin A1c. In the present study, we reexamined the same cohort in early childhood to determine if these cardiovascular abnormalities persisted.
Methods:
Height, weight, and right arm blood pressure were recorded. A full functional and structural echocardiogram was performed with offline analysis of LV posterior wall and interventricular septal diastolic thickness (IVSd), systolic and diastolic function, and aortic pulse wave velocity. Vascular reactivity was assessed using digital thermal monitoring. Participants also completed a physical activity questionnaire.
Results:
Twenty-five children of diabetic mothers (CDMs) and 20 children from healthy pregnancies (mean age, 5.6 ± 1.7 and 5.3 ± 1.3 years, respectively; P = not significant) were assessed. Compared with controls, IVSd z score was increased in CDMs (1.2 ± 0.6 vs 0.5 ± 0.3, respectively; P = 0.006), with one-fifth having a z score of more than +2.0. Aortic pulse wave velocity was increased in CDMs (3.2 ± 0.6 m/s vs 2.2 ± 0.4 m/s; P = 0.001), and correlated with IVSd z score (R 2 = 0.81; P = 0.001) and third trimester maternal A1c (R 2 = 0.65; P < 0.0001). Body surface area, height, weight, blood pressure, vascular reactivity, and physical activity scores did not differ between groups. Our longitudinal analysis showed that individuals with greater IVSd, and aortic stiffness in utero, early and late infancy also tended to have greater measures in early childhood (P < 0.001 and P < 0.0001, respectively).
Conclusions:
CDMs show persistently increased interventricular septal thickness and aortic stiffness in early childhood.
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