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Published on: January 12, 2018
UNICORN Babies: Understanding Circulating and Cerebral Creatine Levels of the Preterm Infant. An Observational Study
Mary J Berry1,2, Melissa Schlegel1,2, Greg M Kowalski3
1Department of Paediatrics and Child Health, University of Otago, Wellington, New Zealand.
Insights
Preterm infants may have lower creatine levels, impacting brain development. The UNICORN study investigates creatine in preterm babies to understand its role in neurological health and potential for improved infant nutrition.
Area of Science:
- Neuroscience
- Neonatalogy
- Biochemistry
Background:
- Creatine is vital for brain energy homeostasis (ATP).
- Preterm infants may experience creatine depletion due to premature birth and limited nutritional intake.
- This depletion could negatively affect neurological outcomes in high-risk preterm infants.
Purpose of the Study:
- To investigate circulating and cerebral creatine levels in preterm infants.
- To assess the relationship between creatine levels and neurological development in preterm infants.
- To explore the potential benefits of creatine supplementation in preterm infant nutrition for supporting brain development.
Main Methods:
- Observational study (UNICORN) recruiting preterm infants across various gestational ages and a term reference group.
- Collection of maternal, cord, and serial infant plasma, urine, and nutrition samples.
- Cerebral creatine content measurement via MRI/1H-MRS and neurodevelopmental assessments (GMA, DAYC-2) at term corrected age and 3 months.
Main Results:
- Primary outcomes: cerebral creatine content at term corrected age and early postnatal creatine/guanidinoacetate levels.
- Secondary outcomes: associations between creatine levels and neurodevelopmental outcomes, dietary intake, and maternal characteristics.
- Analysis of fetomaternal data including demographics, smoking status, and maternal diet.
Conclusions:
- Understanding Creatine for Neurological Health in Babies (UNICORN) aims to elucidate creatine's role in preterm infant brain development.
- Findings may inform novel nutritional strategies, including creatine supplementation, to mitigate preterm-associated brain injury.
- Improved cerebral energy availability through creatine may support optimal *ex utero* brain development.
Abstract:
Creatine is an essential metabolite for brain function, with a fundamental role in cellular (ATP) energy homeostasis. It is hypothesized that preterm infants will become creatine deplete in the early postnatal period, due to premature delivery from a maternal source of creatine and a limited supply of creatine in newborn nutrition. This potential alteration to brain metabolism may contribute to, or compound, poor neurological outcomes in this high-risk population. Understanding Creatine for Neurological Health in Babies (UNICORN) is an observational study of circulating and cerebral creatine levels in preterm infants. We will recruit preterm infants at gestational ages 23+0-26+6, 27+0-29+6, 30+0-32+6, 33+0-36+6, and a term reference group at 39+0-40+6 weeks of gestation, with 20 infants in each gestational age group. At birth, a maternal capillary blood sample, as well as a venous cord blood sample, will be collected. For preterm infants, serial infant plasma (heel prick), urine, and nutrition samples [total parenteral nutrition (TPN), breast milk, or formula] will be collected between birth and term "due date." Key fetomaternal information, including demographics, smoking status, and maternal diet, will also be collected. At term corrected postnatal age (CPA), each infant will undergo an MRI/1H-MRS scan to evaluate brain structure and measure cerebral creatine content. A general movements assessment (GMA) will also be conducted. At 3 months of CPA, infants will undergo a second GMA as well as further neurodevelopmental evaluation using the Developmental Assessment of Young Children - Second Edition (DAYC-2) assessment tool. The primary outcome measures for this study are cerebral creatine content at CPA and plasma and urine creatine and guanidinoacetate (creatine precursor) concentrations in the early postnatal period. We will also determine associations between (1) creatine levels at term CPA and neurodevelopmental outcomes (MRI, GMA, and DAY-C); (2) dietary creatine intake and circulating and cerebral creatine content; and (3) creatine levels and maternal characteristics. Novel approaches are needed to try and improve preterm-associated brain injury. Inclusion of creatine in preterm nutrition may better support ex utero brain development through improved cerebral cellular energy availability during a period of significant brain growth and development. Ethics Ref: HDEC 18/CEN/7 New Zealand. ACTRN: ACTRN12618000871246.
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