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Fetal brain volumes and brain gyrification index associated with opioid exposure
Ramana V Vishnubhotla1,2, Jonathan A Class1, Yi Zhao3
1Department of Radiology and Imaging Sciences, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
Insights
Prenatal opioid exposure is linked to altered fetal brain development, including smaller brain volumes and reduced gyrification. Early identification of these changes may improve long-term infant health outcomes.
Area of Science:
- Neuroscience
- Developmental Biology
- Public Health
Background:
- Opioid use during pregnancy presents a significant public health challenge.
- Antenatal opioid exposure is associated with adverse infant and child health outcomes.
- Early identification of neurodevelopmental risks can improve long-term outcomes for exposed children.
Purpose of the Study:
- To assess if prenatal opioid exposure is associated with early alterations in human fetal brain development detectable via fetal MRI.
- To investigate potential early biomarkers for neurodevelopmental disorders in infants exposed to opioids in utero.
Main Methods:
- Prospective, multicenter study involving pregnant women on medication-assisted treatment (MAT) for opioid use disorder (OUD) and a control group.
- Fetal brain MRI performed in the second or third trimester.
- Semiautomated pipelines used for super-resolution 3D image creation, tissue segmentation, and calculation of fetal brain gyrification indices.
Main Results:
- Opioid-exposed fetuses (n=31) showed significantly smaller total brain volumes and white matter volumes compared to controls (n=32).
- A significantly lower fetal brain gyrification index was observed in opioid-exposed fetuses.
- No correlation found between fetal brain volumetric/surface metrics and the severity of neonatal opioid withdrawal syndrome (NOWS) requiring extended treatment.
Conclusions:
- Prenatal opioid exposure is associated with measurable alterations in fetal brain development, including reduced volume and gyrification.
- Fetal MRI may identify early brain changes in infants exposed to opioids, potentially aiding in risk stratification.
- Larger prospective studies are necessary to fully understand the short- and long-term implications of these developmental changes.
Abstract:
Opioid use during pregnancy continues to be a significant public health challenge, with antenatal opioid exposure suggesting adverse infant and child health outcomes. Early identification of risk of future neurodevelopmental disorders could help improve long-term health outcomes in these children. In this study, we assess whether prenatal opioid exposure is associated with early alterations in human fetal brain development identifiable on fetal MRI. This was a prospective, institutional review board approved, multicenter study that recruited pregnant women on medication-assisted treatment (MAT) for opioid use disorder (OUD) and a control cohort of non-OUD pregnant women. Fetal brain MRI was performed in the second or third trimester of gestation. Semiautomated pipelines were used to create super-resolution 3D isotropic anatomic brain magnetic resonance images from 2D fetal brain images and segmented into different tissue types. Fetal brain gyrification indices were also calculated. Differences between fetuses with opioid exposure and control fetuses were assessed. There were 63 fetuses in this study-31 with opioid exposure and 32 without opioid exposure (controls). Fetuses with opioid exposure had significantly smaller fetal brain total volumes, fetal brain white matter volume, and significantly lower fetal brain gyrification index compared to control fetuses. In opioid exposed fetuses, fetal brain volumetric and surface-based metrics did not correlate with severity of neonatal opioid withdrawal syndrome (NOWS) requiring longer hospitalization or postnatal opioid medication treatment. Additional and larger prospective studies are needed to understand how fetal brain development may be associated with short- and long-term outcomes.
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