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Published on: June 29, 2013
Pulse dexamethasone does not impair growth and body composition of very low birth weight infants
C H Gilmour1, J M Sentipal-Walerius, J G Jones
1Magee-Womens Research Institute, University of Pittsburgh School of Medicine, USA.
Insights
Repeated dexamethasone pulses in very low birth weight infants temporarily delayed growth and affected glucose metabolism. However, infants showed similar body composition and size by 36 weeks postmenstrual age.
Area of Science:
- Neonatalogy
- Pediatric Endocrinology
- Clinical Pharmacology
Background:
- Very low birth weight (VLBW) infants often require respiratory support.
- Dexamethasone is used to improve cardiopulmonary outcomes in VLBW infants.
- The impact of repeated dexamethasone pulses on VLBW infant growth requires further investigation.
Purpose of the Study:
- To evaluate the effect of repeated dexamethasone pulses on the growth of VLBW infants.
- To assess the impact on nutritional intake, glucose metabolism, and body composition.
Main Methods:
- Prospective, double-blind, randomized clinical trial.
- VLBW infants received intravenous dexamethasone pulses or placebo.
- Growth, fluid and caloric intake, serum glucose, and nutritional assessments were monitored until 36 weeks postmenstrual age.
Main Results:
- No significant differences in average daily weight gain, fluid, or caloric intake between groups.
- Dexamethasone group showed temporary growth delays during and after pulses, with subsequent catch-up growth.
- Hyperglycemia occurred in the dexamethasone group; no differences in body size, composition, or bone mineral content at 36 weeks PMA.
Conclusions:
- Repeated dexamethasone pulses negatively impacted glucose metabolism and transiently altered growth patterns in VLBW infants.
- Despite short-term effects, infants showed similar growth and body composition near term gestational age.
Objective:
Evaluation of repeated pulses of dexamethasone (PDEX), given to improve cardiopulmonary outcome, on growth of very low birth weight (VLBW, < 1500 g) infants.
Methods:
In this prospective, double-blind, randomized clinical trial, VLBW infants mechanically ventilated at 1 week of age received intravenous PDEX or saline placebo (P) for 3 days, every 10 days, until no supplemental oxygen or ventilation was required or 36 weeks postmenstrual age (PMA). Weight gain, fluid intake, caloric intake, and serum glucose were monitored throughout the study. Nutritional assessment at 36 weeks PMA consisted of weight, length, head circumference, skinfold thickness measures, body composition by total body electrical conductance, and bone mineral content (BMC) by single beam photon absorptiometry.
Results:
37 PDEX and 31 P infants survived at least 36 days and completed the protocol. Average daily weight gain, fluid intake and caloric intake were not different between groups. The pattern of weight gain (g/kg/day, mean +/- SD) was different: PDEX infants showed significant growth delay during (3.0 +/- 11.4) and immediately after (7.8 +/- 8.7) each pulse, with subsequent growth acceleration (18.3 +/- 8.2) until the next steroid pulse. In contrast, growth rate of P infants was constant (12.6 +/- 3.7) (p = 0.04). Hyperglycemia requiring insulin therapy occurred only in the PDEX group (10/37). The catch-up growth noted between pulses in the PDEX group was explained only in part by insulin therapy. At 36 weeks PMA, there were no differences between groups in body size, composition, or BMC.
Conclusion:
PDEX negatively affected glucose metabolism and growth patterns during and immediately after drug exposure. However, assessment near term gestational age showed similar body composition and size in both groups.
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