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Published on: December 16, 2022
Regional Brain Growth Trajectories in Fetuses with Congenital Heart Disease
Caitlin K Rollins1,2, Cynthia M Ortinau3, Christian Stopp4
1Department of Neurology, Boston Children's Hospital, Boston, MA, USA.
Insights
Congenital heart disease (CHD) in fetuses is linked to smaller brain volumes, particularly in specific regions, due to reduced cerebral substrate delivery. Genetic or environmental factors may also influence this impaired brain development before 32 weeks gestation.
Area of Science:
- Neuroscience
- Developmental Biology
- Medical Imaging
Background:
- Congenital heart disease (CHD) is associated with abnormal fetal brain development.
- Reduced fetal cerebral substrate delivery may impact brain development globally or regionally.
- Investigating the contribution of genetic and environmental factors is crucial.
Purpose of the Study:
- To determine if reduced fetal cerebral substrate delivery impacts fetal brain development.
- To identify if these impacts are global or region-specific.
- To explore the role of shared genes and/or fetal environment in CHD-related brain alterations.
Main Methods:
- Utilized innovative fetal magnetic resonance imaging (MRI) techniques.
- Enrolled 179 pregnant women into four groups: HLHS/TGA, CHD-other, CHD-related, and optimal controls.
- Obtained MRIs between 18-40 weeks gestation and used regression models to assess brain volumes and hemodynamic variables.
Main Results:
- Fetuses with CHD (HLHS/TGA, CHD-other, CHD-related) exhibited smaller brain volumes compared to optimal controls.
- The HLHS/TGA group showed significant reductions in subplate and intermediate brain zones.
- Volumetric reductions were associated with lower cerebral substrate delivery.
Conclusions:
- Fetuses with CHD, especially those with compromised cerebral substrate delivery, display region-specific patterns of reduced brain volume and impaired growth.
- Brain development in fetuses with CHD shows similarities to those with a family history of CHD, suggesting genetic or environmental influences.
- Impaired brain growth occurs before 32 weeks gestation in fetuses with CHD.
Objective:
Congenital heart disease (CHD) is associated with abnormal brain development in utero. We applied innovative fetal magnetic resonance imaging (MRI) techniques to determine whether reduced fetal cerebral substrate delivery impacts the brain globally, or in a region-specific pattern. Our novel design included two control groups, one with and the other without a family history of CHD, to explore the contribution of shared genes and/or fetal environment to brain development.
Methods:
From 2014 to 2018, we enrolled 179 pregnant women into 4 groups: "HLHS/TGA" fetuses with hypoplastic left heart syndrome (HLHS) or transposition of the great arteries (TGA), diagnoses with lowest fetal cerebral substrate delivery; "CHD-other," with other CHD diagnoses; "CHD-related," healthy with a CHD family history; and "optimal control," healthy without a family history. Two MRIs were obtained between 18 and 40 weeks gestation. Random effect regression models assessed group differences in brain volumes and relationships to hemodynamic variables.
Results:
HLHS/TGA (n = 24), CHD-other (50), and CHD-related (34) groups each had generally smaller brain volumes than the optimal controls (71). Compared with CHD-related, the HLHS/TGA group had smaller subplate (-13.3% [standard error = 4.3%], p < 0.01) and intermediate (-13.7% [4.3%], p < 0.01) zones, with a similar trend in ventricular zone (-7.1% [1.9%], p = 0.07). These volumetric reductions were associated with lower cerebral substrate delivery.
Interpretation:
Fetuses with CHD, especially those with lowest cerebral substrate delivery, show a region-specific pattern of small brain volumes and impaired brain growth before 32 weeks gestation. The brains of fetuses with CHD were more similar to those of CHD-related than optimal controls, suggesting genetic or environmental factors also contribute. ANN NEUROL 2021;89:143-157.
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