Vitamin A, E, and D deficiencies are very common in Tunisian VLBW neonates and are associated with pre-eclampsia. Improved nutritional and health support for pregnant women and high dose vitamins A, E, and D supplementation in VLBW neonates are strongly required in Tunisia.
Objective: To look at changes in plasma vitamin A, E and D concentrations during the early postnatal life and to study their link with growth and mortality in Tunisian very low birth weight (VLBW) infants. Patients and methods: A cohort of 607 VLBW infants had been followed from birth until hospital discharge or death. Blood was collected at birth, at time of maximal weight loss and at time of recovering birth weight. Retinol and α-tocopherol were analyzed using HPLC and 25 hydroxy vitamin D using radioimmunoassay. Results: Vitamin A, D and E deficiencies were very common at birth (75.9%, 74.1% and 65.2%, respectively). The prevalence's have decreased throughout hospital stay, but remained high at time of recovering birth weight (59.4%, 31.2% and 28.8%, respectively). Vitamin A deficiency was associated with longer hospital stay [OR (95% CI), 1.66 (1.03-2.93)] and vitamin E deficiency was associated with increased neonatal mortality [1.44 (1.01-2.23)]. Conclusions: Current nutritional practices are ineffective to achieve adequate vitamins A, E and D status in Tunisian VLBW infants during the early postnatal life and should be revised. Further work is needed to establish recommended doses of vitamins supplements in these preterm infants.
To study plasma arachidonic acid (AA) and docosahexaenoic acid (DHA) status in Tunisian very low birth weight (VLBW) infants and their association with selected neonatal morbidities. A total of 709 VLBW infants and 339 term infants were included. Plasma fatty acids were analyzed using capillary gas chromatography. VLBW infants had significantly (p < 0.001) lower plasma AA (9.44 ± 2.12 vs. 10.8 ± 2.10) and DHA (2.56 ± 0.89 vs. 3.46 ± 1.09) levels, but higher n-6:n-3 ratio (5.58 ± 1.22 vs. 5.17 ± 1.46) than term infants. In VLBW infants, plasma AA and DHA were related to gestational age (r = 0.156; p = 0.001 and r = 0.134; p = 0.003, respectively), birthweight (r = 0.242; p < 0.001 and r = 0.181; p < 0.001, respectively) and head circumference (r = 0.138; p = 0.005 and r = 0.108; p = 0.027, respectively). Infants with respiratory distress syndrome have decreased plasma AA and DHA and those with intraventricular hemorrhage have decreased plasma AA and n-6:n-3 ratio. Sepsis was associated with decreased DHA levels. Plasma long chain polyunsaturated fatty acids status is low in VLBW infants. These deficits may enhance the risk of common neonatal morbidities, rendering their prevention and correction greatly warranted.
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