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Functional outcome at school age of preterm-born children treated with low-dose dexamethasone in infancy
Karianne E Kraft1, Suzanne E Verhage1, Anne E den Heijer1
1University of Groningen, University Medical Center Groningen, Beatrix Children's Hospital, Department of Neonatology, In-house Postcode: CA 51, P.O. Box 30.001, 9700, RB, Groningen, the Netherlands.
Insights
Low-dose dexamethasone treatment in preterm infants is linked to poorer school-age outcomes in motor skills, cognition, and behavior. Further research is needed to understand the long-term effects of this common neonatal intervention.
Area of Science:
- Neonatal Medicine
- Developmental Pediatrics
- Neuroscience
Background:
- High-dose dexamethasone in preterm infants increases neurodevelopmental impairment risk.
- Limited data exist on school-age outcomes for preterm infants receiving low-dose dexamethasone.
Purpose of the Study:
- To evaluate the school-age functional outcomes of very preterm infants treated with low-dose dexamethasone.
Main Methods:
- A cohort study assessed 27 very preterm infants treated with low-dose dexamethasone.
- Neuropsychological assessments were conducted at ages 6-13 years.
- Comparisons were made against a norm population and a preterm reference group.
Main Results:
- Dexamethasone-treated children showed poorer performance than the norm population, especially in motor skills (z-score -1.81).
- Lower scores were observed in IQ, verbal memory, attention, and word generation.
- Parents reported more behavioral problems; motor skills remained poor compared to preterm peers, but total IQs were similar.
Conclusions:
- Preterm infants treated with low-dose dexamethasone exhibit increased adverse motor, cognitive, and behavioral outcomes at school age.
- These outcomes may be attributable to dexamethasone exposure or bronchopulmonary dysplasia (BPD).
Background:
Surviving preterm born children, postnatally exposed to high doses of dexamethasone, show an increased risk of neurodevelopmental impairments. Regarding treatment with low doses of dexamethasone, no data exist on outcomes at school age.
Aim:
To assess the functional outcome at school age of preterm-born children treated with low-dose dexamethasone.
Study Design:
In this cohort study, twenty-seven very preterm-born infants treated with dexamethasone from eight days after birth, underwent neuropsychological assessments at age 6-13 years. Their scores were compared with those of the norm population, and scores on total IQ and motor functioning also with those of a preterm reference group, using one-sample-chi-square and student's t-tests.
Results:
Compared with the norm population, performance of dexamethasone-treated children was poorer, particularly in the motor domain (mean z-score - 1.81). Dexamethasone-treated children also had lower scores on IQ (-0.29 to -1.12), verbal memory (-0.41 to -0.56), attention (-0.90 to -1.28), and word generation (-0.75). Their parents reported behavioral problems more often. Compared with preterm peers, motor skills remained poor, but total IQs were similar. Adjustment for bronchopulmonary dysplasia did not change our results, because all surviving children had bronchopulmonary dysplasia.
Conclusions:
At school age, the prevalence of adverse motor, cognitive, and behavioral outcomes of preterm-born children treated with low-dose dexamethasone is increased. This could be the consequence of either dexamethasone or BPD.
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