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Caffeine for apnea of prematurity and brain development at 11 years of age
Claire E Kelly1,2, Wenn Lynn Ooi1,2, Joseph Yuan-Mou Yang2,3,4
1Victorian Infant Brain Studies Murdoch Children's Research Institute Melbourne Australia.
Insights
Neonatal caffeine therapy for apnea of prematurity showed minimal long-term brain structure differences by age 11 years. However, caffeine may impact corpus callosum development and white matter maturation over time.
Area of Science:
- Neuroscience
- Neonatal Medicine
- Developmental Pediatrics
Background:
- Caffeine therapy for apnea of prematurity (AOP) may improve white matter microstructure.
- Long-term effects of neonatal caffeine on brain development are not well understood.
Purpose of the Study:
- To investigate caffeine's effects on brain structure at 11 years of age.
- To assess brain development from term-equivalent age to 11 years in infants treated with caffeine versus placebo.
Main Methods:
- Randomized controlled trial comparing caffeine and placebo in preterm infants (≤1250g).
- Magnetic resonance imaging (MRI) at term-equivalent age and 11 years.
- Analysis of global/regional brain volumes and white matter microstructure.
Main Results:
- Little difference in brain volumes or white matter microstructure at 11 years.
- Caffeine group showed a smaller corpus callosum at 11 years.
- Slower corpus callosum growth and white matter diffusivity changes observed in the caffeine group over time.
Conclusions:
- Neonatal caffeine therapy benefits on brain structure may diminish by age 11.
- MRI did not reveal clear long-term structural benefits, but potential effects on corpus callosum development persist.
Objective:
Caffeine therapy for apnea of prematurity has been reported to improve brain white matter microstructure at term-equivalent age, but its long-term effects are unknown. This study aimed to investigate whether caffeine affects (1) brain structure at 11 years of age, and (2) brain development from term-equivalent age to 11 years of age, compared with placebo.
Methods:
Preterm infants born ≤1250 g were randomly allocated to caffeine or placebo. Magnetic resonance imaging (MRI) was performed on 70 participants (33 caffeine, 37 placebo) at term-equivalent age and 117 participants (63 caffeine, 54 placebo) at 11 years of age. Global and regional brain volumes and white matter microstructure were measured at both time points.
Results:
In general, there was little evidence for differences between treatment groups in brain volumes or white matter microstructure at age 11 years. There was, however, evidence that the caffeine group had a smaller corpus callosum than the placebo group. Volumetric brain development from term-equivalent to 11 years of age was generally similar between treatment groups. However, there was evidence that caffeine was associated with slower growth of the corpus callosum, and slower decreases in axial, radial, and mean diffusivities in the white matter, particularly at the level of the centrum semiovale, over time than placebo.
Interpretation:
This study suggests any benefits of neonatal caffeine therapy on brain structure in preterm infants weaken over time and are not clearly detectable by MRI at age 11 years, although caffeine may have long-term effects on corpus callosum development.
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