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Published on: November 27, 2016
Suppression of Bile Acid Synthesis in a Preterm Infant Receiving Prolonged Parenteral Nutrition
Naureen Memon1,2, Chris W Lee1, Aimee Herdt1
1MidAtlantic Neonatology Associates, Morristown, NJ, USA.
Insights
Bile acid synthesis enzyme activity remained undetectable in a preterm infant on parenteral nutrition (PN). This contrasts with healthy infants, suggesting PN disrupts bile acid metabolism and liver health in neonates.
Area of Science:
- Neonatal physiology
- Hepatology
- Gastroenterology
Background:
- Parenteral nutrition (PN) can alter bile acid metabolism in neonates, increasing risk for liver disease.
- Cholesterol 7α-hydroxylase (CYP7A1) is key in bile acid synthesis, regulated by fibroblast growth factor 19 (FGF19) and phytosterols (PS).
Observation:
- A preterm infant with necrotizing enterocolitis (NEC) received exclusive PN for over two months.
- Serial measurements of CYP7A1 activity, FGF19, and PS were compared between the case infant and five healthy preterm infants.
Findings:
- CYP7A1 activity increased in healthy controls within two weeks but was undetectable in the infant case.
- Plasma FGF19 levels were high at birth in all infants, declining over time without significant differences between groups.
- Phytosterols (PS) were elevated in the case infant and increased further despite lipid management.
Implications:
- Prolonged PN in preterm infants with NEC suppresses crucial bile acid synthesis (CYP7A1).
- Elevated FGF19 at birth in preterm infants warrants further investigation regarding its role in neonatal adaptation.
- Understanding these metabolic alterations is vital for preventing parenteral nutrition-associated liver disease in vulnerable neonates.
Abstract:
Bile acid metabolism is altered in neonates on parenteral nutrition (PN), predisposing them to parenteral nutrition-associated liver disease. Cholesterol 7α-hydroxylase (CYP7A1), the rate-limiting enzyme in the bile acid synthesis pathway, is repressed by fibroblast growth factor 19 (FGF19) and phytosterols (PS). We describe a case of a preterm infant who developed necrotizing enterocolitis (NEC) and received exclusive PN for over 2 months. Our objective was to serially assess CYP7A1 activity and plasma FGF19 and PS concentrations in this infant case compared to five healthy preterm infants. We found that CYP7A1 activity increased during the first 2 weeks of life in control infants but was undetectable in the infant case. FGF19 concentrations were high at birth in all infants and subsequently declined and did not differ between the case and control infants. As expected, PS concentrations were elevated in the infant case and continued to increase despite lipid minimization. In conclusion, CYP7A1 activity was gradually upregulated in healthy preterm infants but remained suppressed in the infant requiring prolonged PN. Preterm infants also had elevated FGF19 concentrations at birth, which decreased with advancing postnatal age.
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