4.7 Article

Carnitine Intake and Serum Levels Associate Positively with Postnatal Growth and Brain Size at Term in Very Preterm Infants

期刊

NUTRIENTS
卷 14, 期 22, 页码 -

出版社

MDPI
DOI: 10.3390/nu14224725

关键词

carnitine; acylcarnitine; preterm; postnatal growth; brain size; pediatric nutrition

资金

  1. Kuopio University Hospital State Research Funding
  2. Emil Aaltonen Foundation
  3. Paivikki and Sakari Sohlberg Foundation

向作者/读者索取更多资源

There is a positive correlation between carnitine intake and serum carnitine levels with growth and brain size in very preterm infants. Adequate carnitine intake during hospitalization is essential for better postnatal growth and larger brain size.
Carnitine has an essential role in energy metabolism with possible neuroprotective effects. Very preterm (VPT, <32 gestation weeks) infants may be predisposed to carnitine deficiency during hospitalization. We studied the associations of carnitine intake and serum carnitine levels with growth and brain size at term equivalent age (TEA) in VPT infants. This prospective cohort study included 35 VTP infants admitted to Kuopio University Hospital, Finland. Daily nutrient intakes were registered at postnatal weeks (W) 1 and 5, and serum carnitine levels were determined at W1, W5, and TEA. The primary outcomes were weight, length, and head circumference Z-score change from birth to TEA, as well as brain size at TEA in magnetic resonance imaging. Carnitine intake at W1 and W5, obtained from enteral milk, correlated positively with serum carnitine levels. Both carnitine intake and serum levels at W1, W5, and TEA showed a positive correlation with weight, length, and head circumference Z-score change and with brain size at TEA. In linear models, independent positive associations of carnitine intake and serum carnitine levels with length and head circumference Z-score change and brain size at TEA were seen. In VPT infants, sufficient carnitine intake during hospitalization is necessary since it is associated with better postnatal growth and larger brain size at term age.

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