Pulse dexamethasone does not impair growth and body composition of very low birth weight infants.

1995 ◽  
Vol 14 (5) ◽  
pp. 455-462 ◽  
Author(s):  
C H Gilmour ◽  
J M Sentipal-Walerius ◽  
J G Jones ◽  
J M Doyle ◽  
B S Brozanski ◽  
...  
2011 ◽  
Vol 10 (1) ◽  
Author(s):  
Juan Antonio Costa-Orvay ◽  
Josep Figueras-Aloy ◽  
Gerardo Romera ◽  
Ricardo Closa-Monasterolo ◽  
Xavier Carbonell-Estrany

Author(s):  
Kera McNelis ◽  
Chunyan Liu ◽  
Shelley Ehrlich ◽  
Christopher Fields ◽  
Trayce Fields ◽  
...  

Nutrients ◽  
2020 ◽  
Vol 12 (4) ◽  
pp. 1156 ◽  
Author(s):  
Sumesh Parat ◽  
Praneeta Raza ◽  
May Kamleh ◽  
Dennis Super ◽  
Sharon Groh-Wargo

Despite improvements in nutritional management, preterm infants continue to face high rates of postnatal growth restriction. Because variability in breast milk composition may result in protein and energy deficits, targeted fortification has been advocated. We conducted an interventional study to compare body composition and growth outcomes of very low birth weight infants fed targeted protein-fortified human milk (HM) with those fed standard fortified HM. If mother’s own milk was not available, donor milk was used. Weekly analysis of HM with mid-infrared spectroscopy was conducted and additional protein was added to the fortified HM to ensure a protein intake of 4 g/kg/day. Weekly anthropometric measurements were done. Prior to discharge or at 37 weeks, corrected age skinfold thickness (SFT) measurements as well as body composition measurement using air displacement plethysmography were done. Among 36 preterm infants enrolled, those in the targeted group (n = 17) received more protein and had a larger flank SFT at study end than those in the standard group (n = 19). A pilot post-hoc analysis of subjects having at least 30 intervention days showed a 3% higher fat-free mass in the targeted group. Use of a targeted fortification strategy resulted in a higher protein intake and fat-free mass among those receiving longer intervention.


Nutrients ◽  
2021 ◽  
Vol 13 (11) ◽  
pp. 3962
Author(s):  
Michela Perrone ◽  
Camilla Menis ◽  
Pasqua Piemontese ◽  
Chiara Tabasso ◽  
Domenica Mallardi ◽  
...  

The nutritional management of preterm infants is a critical point of care, especially because of the increased risk of developing extrauterine growth restriction (EUGR), which is associated with worsened health outcomes. Energy requirements in preterm infants are simply estimated, so the measurement of resting energy expenditure (REE) should be a key point in the nutritional evaluation of preterm infants. Although predictive formulae are available, it is well known that they are imprecise. The aim of our study was the evaluation of REE and protein oxidation (Ox) in very low birth weight infants (VLBWI) and the association with the mode of feeding and with body composition at term corrected age. Methods: Indirect calorimetry and body composition were performed at term corrected age in stable very low birth weight infants. Urinary nitrogen was measured in spot urine samples to calculate Ox. Infants were categorized as prevalent human milk (HMF) or prevalent formula diet (PFF). Results: Fifty VLBWI (HMF: 23, PFF: 27) were evaluated at 36.48 ± 0.85 post-conceptional weeks. No significant differences were found in basic characteristics or nutritional intake in the groups at birth and at the assessment. No differences were found in the REE of HMF vs. PFF (59.69 ± 9.8 kcal/kg/day vs. 59.27 ± 13.15 kcal/kg/day, respectively). We found statistical differences in the protein-Ox of HMF vs. PFF (1.7 ± 0.92 g/kg/day vs. 2.8 ± 1.65 g/kg/day, respectively, p < 0.01), and HMF infants had a higher fat-free mass (kg) than PFF infants (2.05 ± 0.26 kg vs. 1.82 ± 0.35 kg, respectively, p < 0.01), measured with air displacement plethysmography. Conclusion: REE is similar in infants with a prevalent human milk diet and in infants fed with formula. The HMF infants showed a lower oxidation rate of proteins for energy purposes and a better quality of growth. A greater amount of protein in HMF is probably used for anabolism and fat-free mass deposition. Further studies are needed to confirm our hypothesis.


Sign in / Sign up

Export Citation Format

Share Document