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Published on: November 20, 2015
Long-term effects of prenatal magnesium sulfate exposure on nervous system development in preterm-born children
Le Zhou1, Xinghui Liu1, Xiaoli Yan2
1Obstetrics and Gynecology Department, West China Second University Hospital Sichuan University Chengdu China.
Insights
Magnesium sulfate treatment in preterm-born children may improve cognitive function and brain structure, bringing them closer to term-born children. This suggests potential benefits for nervous system development in preterm infants.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Radiology
Background:
- Preterm-born (PTB) children often exhibit neurodevelopmental differences compared to term-born (TB) children.
- Magnesium sulfate is sometimes administered to pregnant women at risk of preterm birth.
- Understanding the impact of magnesium sulfate on brain development in PTB children is crucial.
Purpose of the Study:
- To investigate the influence of magnesium sulfate treatment on gray matter volume (GMV) and cognitive function in PTB children.
- To compare brain structure and intelligence scores between PTB children with and without magnesium sulfate exposure, and TB children.
Main Methods:
- Structural magnetic resonance imaging (MRI) was used to analyze GMV in 51 children (28 PTB, 23 TB).
- Whole-brain voxel-wise analysis was performed using SPM8 to identify group differences in GMV.
- Intelligence scales (verbal and full-scale IQ) were administered at corrected ages of 10-16 years.
Main Results:
- PTB children without magnesium had significantly lower IQ scores than TB children.
- PTB children with magnesium showed IQ scores nearly identical to TB children.
- Reduced GMV in the left straight gyrus and left inferior frontal gyrus was observed in PTB children, with volumes closer to TB children when magnesium was administered.
Conclusions:
- Brain structural abnormalities, specifically reduced GMV in the left straight gyrus and left inferior frontal gyrus, are present in PTB children.
- Magnesium sulfate treatment appears to be associated with improved cognitive function and brain structure in PTB children, nearing levels seen in TB children.
- Earlier initiation of magnesium sulfate treatment during gestation showed a negative correlation with left inferior frontal gyrus GMV.
Abstract:
This study used structural magnetic resonance imaging to analyze changes in the gray matter volume (GMV) of preterm-born (PTB) and term-born (TB) children to help elucidate the influence of magnesium sulfate treatment on the nervous system development. A total of 51 subjects were recruited, including 28 PTB and 23 TB children. The intelligence scale and MRI scan were completed at the corrected age of 10 to 16 years. A whole-brain voxel-wise analysis tested the main effect of the status (PTB without magnesium, PTB with magnesium, and TB) using a factorial design in SPM8. The mean volumes of the regions that showed significant group effects on the GMV after the FDR correction were extracted in the common space for each subject. Verbal and full-scale intelligence quotient scores were significantly lower for PTB children without magnesium than for TB children; however, the scores of PTB children with magnesium and TB children were almost identical. Compared with TB children, PTB children had significantly reduced left straight gyrus and left inferior frontal gyrus GMVs; however, the volumes of PTB children with magnesium were closer to those of TB children. Changes in the GMV of the left inferior frontal gyrus were significantly correlated with full-scale and verbal intelligence quotient scores, whereas the lower gestational age at the time of mgsou4 treatment led to a larger GMV of the left inferior frontal gyrus. Brain structural abnormalities could exist in PTB children. The GMVs of the left straight gyrus and left inferior frontal gyrus were significantly reduced in these children. The influence of magnesium sulfate treatment was not significant, but the cognitive levels of these children were significantly increased and almost identical to those of TB children. Initiation of magnesium sulfate treatment during gestation is negatively correlated with the left inferior frontal gyrus GMV.
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