Effect of Hydrocortisone Therapy Initiated 7 to 14 Days After Birth on Mortality or Bronchopulmonary Dysplasia Among Very Preterm Infants Receiving Mechanical Ventilation: A Randomized Clinical Trial.
Anti-Inflammatory Agents
/ administration & dosage
Bronchopulmonary Dysplasia
/ prevention & control
Double-Blind Method
Humans
Hydrocortisone
/ administration & dosage
Incidence
Infant, Newborn
Infant, Premature
Infant, Premature, Diseases
/ mortality
Infant, Very Low Birth Weight
Intensive Care Units, Neonatal
Respiration, Artificial
Time-to-Treatment
Treatment Failure
Journal
JAMA
ISSN: 1538-3598
Titre abrégé: JAMA
Pays: United States
ID NLM: 7501160
Informations de publication
Date de publication:
29 01 2019
29 01 2019
Historique:
entrez:
30
1
2019
pubmed:
30
1
2019
medline:
21
3
2019
Statut:
ppublish
Résumé
Dexamethasone initiated after the first week of life reduces the rate of death or bronchopulmonary dysplasia (BPD) but may cause long-term adverse effects in very preterm infants. Hydrocortisone is increasingly used as an alternative, but evidence supporting its efficacy and safety is lacking. To assess the effect of hydrocortisone initiated between 7 and 14 days after birth on death or BPD in very preterm infants. Double-blind, placebo-controlled randomized trial conducted in 19 neonatal intensive care units in the Netherlands and Belgium from November 15, 2011, to December 23, 2016, among preterm infants with a gestational age of less than 30 weeks and/or birth weight of less than 1250 g who were ventilator dependent between 7 and 14 days of life, with follow-up to hospital discharge ending December 12, 2017. Infants were randomly assigned to receive a 22-day course of systemic hydrocortisone (cumulative dose, 72.5 mg/kg) (n = 182) or placebo (n = 190). The primary outcome was a composite of death or BPD assessed at 36 weeks' postmenstrual age. Twenty-nine secondary outcomes were analyzed up to hospital discharge, including death and BPD at 36 weeks' postmenstrual age. Among 372 patients randomized (mean gestational age, 26 weeks; 55% male), 371 completed the trial; parents withdrew consent for 1 child treated with hydrocortisone. Death or BPD occurred in 128 of 181 infants (70.7%) randomized to hydrocortisone and in 140 of 190 infants (73.7%) randomized to placebo (adjusted risk difference, -3.6% [95% CI, -12.7% to 5.4%]; adjusted odds ratio, 0.87 [95% CI, 0.54-1.38]; P = .54). Of 29 secondary outcomes, 8 showed significant differences, including death at 36 weeks' postmenstrual age (15.5% with hydrocortisone vs 23.7% with placebo; risk difference, -8.2% [95% CI, -16.2% to -0.1%]; odds ratio, 0.59 [95% CI, 0.35-0.995]; P = .048). Twenty-one outcomes showed nonsignificant differences, including BPD (55.2% with hydrocortisone vs 50.0% with placebo; risk difference, 5.2% [95% CI, -4.9% to 15.2%]; odds ratio, 1.24 [95% CI, 0.82-1.86]; P = .31). Hyperglycemia requiring insulin therapy was the only adverse effect reported more often in the hydrocortisone group (18.2%) than in the placebo group (7.9%). Among mechanically ventilated very preterm infants, administration of hydrocortisone between 7 and 14 days after birth, compared with placebo, did not improve the composite outcome of death or BPD at 36 weeks' postmenstrual age. These findings do not support the use of hydrocortisone for this indication. Netherlands National Trial Register Identifier: NTR2768.
Identifiants
pubmed: 30694322
pii: 2722773
doi: 10.1001/jama.2018.21443
pmc: PMC6439762
doi:
Substances chimiques
Anti-Inflammatory Agents
0
Hydrocortisone
WI4X0X7BPJ
Types de publication
Journal Article
Multicenter Study
Randomized Controlled Trial
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
354-363Commentaires et corrections
Type : CommentIn
Références
Am J Respir Crit Care Med. 2001 Jun;163(7):1723-9
pubmed: 11401896
Pediatrics. 2002 Feb;109(2):330-8
pubmed: 11826218
Neurology. 2002 Jun 25;58(12):1726-38
pubmed: 12084869
J Perinatol. 2003 Sep;23(6):451-6
pubmed: 13679930
Obstet Gynecol Clin North Am. 2005 Mar;32(1):1-16, vii
pubmed: 15644285
Arch Ophthalmol. 2005 Jul;123(7):991-9
pubmed: 16009843
Pediatr Res. 2007 Sep;62(3):267-70
pubmed: 17622955
Pediatrics. 2009 Jan;123(1):367-77
pubmed: 19117904
J Perinatol. 2009 May;29 Suppl 2:S44-9
pubmed: 19399009
Pediatrics. 2010 Oct;126(4):800-8
pubmed: 20819899
Pediatrics. 2010 Oct;126(4):e954-64
pubmed: 20837588
N Engl J Med. 2011 Jan 20;364(3):255-64
pubmed: 21247316
BMC Pediatr. 2011 Nov 09;11:102
pubmed: 22070744
J Pediatr. 2012 Jul;161(1):70-4.e1-2
pubmed: 22325187
Pediatrics. 2012 Jun;129(6):1019-26
pubmed: 22614775
J Pediatr. 2013 Apr;162(4):685-690.e1
pubmed: 23140612
BMC Pediatr. 2013 Apr 20;13:59
pubmed: 23601190
J Matern Fetal Neonatal Med. 2016;29(9):1525-9
pubmed: 26135227
JAMA. 2015 Sep 8;314(10):1039-51
pubmed: 26348753
Lancet. 2016 Apr 30;387(10030):1827-36
pubmed: 26916176
World J Pediatr. 2016 Aug;12(3):314-319
pubmed: 27351566
J Perinatol. 2016 Nov;36(11):1008-1013
pubmed: 27467566
J Pediatr. 2017 Apr;183:26-30.e3
pubmed: 28108103
PLoS One. 2017 Jan 23;12(1):e0170234
pubmed: 28114369
Front Pediatr. 2017 Jan 30;5:6
pubmed: 28194395
Paediatr Respir Rev. 2018 Mar;26:55-59
pubmed: 29031795
Cochrane Database Syst Rev. 2017 Oct 24;10:CD001146
pubmed: 29063585
Cochrane Database Syst Rev. 2017 Oct 24;10:CD001145
pubmed: 29063594
Am J Obstet Gynecol. 2018 Jan;218(1):130.e1-130.e13
pubmed: 29138031
JAMA. 2017 Dec 19;318(23):2301-2303
pubmed: 29260205
JAMA Pediatr. 2018 Apr 1;172(4):361-367
pubmed: 29459939
Trials. 2018 Mar 9;19(1):178
pubmed: 29523175
J Pediatr. 2018 Jun;197:300-308
pubmed: 29551318
JAMA Pediatr. 2018 Nov 1;172(11):1061-1069
pubmed: 30208467