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Assessing the neuroprotective benefits for babies of antenatal magnesium sulphate: An individual participant data
Caroline A Crowther1,2, Philippa F Middleton2,3, Merryn Voysey4
1Liggins Institute, University of Auckland, Auckland, New Zealand.
Insights
Antenatal magnesium sulphate given before preterm birth significantly reduces the risk of cerebral palsy (CP) in infants. This treatment also lowers the combined risk of infant death or CP, offering global health benefits.
Area of Science:
- Obstetrics and Gynecology
- Neonatology
- Perinatal Medicine
Background:
- Preterm birth increases infant mortality and the risk of cerebral palsy (CP).
- Antenatal magnesium sulphate is a potential intervention to mitigate these risks.
Purpose of the Study:
- To assess the effects of antenatal magnesium sulphate on maternal and fetal outcomes in women at risk of preterm birth.
- To determine if magnesium sulphate reduces the risk of infant death or CP, and if effects vary by treatment or participant characteristics.
Main Methods:
- Individual participant data (IPD) meta-analysis of 5 eligible randomized controlled trials involving 5,493 women and 6,131 babies.
- Primary outcomes: infant death or CP, and severe maternal outcomes.
- Analyses focused on overall treatment effects and specifically on trials with fetal neuroprotection intent.
Main Results:
- No significant effect on the combined outcome of death or CP overall (RR 0.94).
- Significant reduction in death or CP when magnesium sulphate was used for fetal neuroprotection (RR 0.86, NNT 41).
- Strong protective effect against CP in survivors (RR 0.68, NNT 46 overall, NNT 42 for neuroprotection intent).
Conclusions:
- Antenatal magnesium sulphate, particularly for fetal neuroprotection, prevents CP and reduces the combined risk of death or CP in preterm infants.
- Benefits are consistent across various reasons for preterm birth, gestational ages, and treatment regimens.
- Widespread adoption of this intervention can yield significant global health benefits for preterm infants.
Background:
Babies born preterm are at an increased risk of dying in the first weeks of life, and those who survive have a higher rate of cerebral palsy (CP) compared with babies born at term. The aim of this individual participant data (IPD) meta-analysis (MA) was to assess the effects of antenatal magnesium sulphate, compared with no magnesium treatment, given to women at risk of preterm birth on important maternal and fetal outcomes, including survival free of CP, and whether effects differed by participant or treatment characteristics such as the reason the woman was at risk of preterm birth, why treatment was given, the gestational age at which magnesium sulphate treatment was received, or the dose and timing of the administration of magnesium sulphate.
Methods And Findings:
Trials in which women considered at risk of preterm birth (<37 weeks' gestation) were randomised to magnesium sulphate or control treatment and where neurologic outcomes for the baby were reported were eligible for inclusion. The primary outcomes were infant death or CP and severe maternal outcome potentially related to treatment. Studies were identified based on the Cochrane Pregnancy and Childbirth search strategy using the terms [antenatal or prenatal] and [magnesium] and [preterm or premature or neuroprotection or 'cerebral palsy']. The date of the last search was 28 February 2017. IPD were sought from investigators with eligible trials. Risk of bias was assessed using criteria from the Cochrane Collaboration. For each prespecified outcome, IPD were analysed using a 1-stage approach. All 5 trials identified were included, with 5,493 women and 6,131 babies. Overall, there was no clear effect of magnesium sulphate treatment compared with no treatment on the primary infant composite outcome of death or CP (relative risk [RR] 0.94, 95% confidence interval (CI) 0.85 to 1.05, 6,131 babies, 5 trials, p = 0.07 for heterogeneity of treatment effect across trials). In the prespecified sensitivity analysis restricted to data from the 4 trials in which the intent of treatment was fetal neuroprotection, there was a significant reduction in the risk of death or CP with magnesium sulphate treatment compared with no treatment (RR 0.86, 95% CI 0.75 to 0.99, 4,448 babies, 4 trials), with no significant heterogeneity (p = 0.28). The number needed to treat (NNT) to benefit was 41 women/babies to prevent 1 baby from either dying or having CP. For the primary outcome of severe maternal outcome potentially related to magnesium sulphate treatment, no events were recorded from the 2 trials providing data. When the individual components of the composite infant outcome were assessed, no effect was seen for death overall (RR 1.03, 95% CI 0.91 to 1.17, 6,131 babies, 5 trials) or in the analysis of death using only data from trials with the intent of fetal neuroprotection (RR 0.95, 95% CI 0.80 to 1.13, 4,448 babies, 4 trials). For cerebral palsy in survivors, magnesium sulphate treatment had a strong protective effect in both the overall analysis (RR 0.68, 95% CI 0.54 to 0.87, 4,601 babies, 5 trials, NNT to benefit 46) and the neuroprotective intent analysis (RR 0.68, 95% CI 0.53 to 0.87, 3,988 babies, 4 trials, NNT to benefit 42). No statistically significant differences were seen for any of the other secondary outcomes. The treatment effect varied little by the reason the woman was at risk of preterm birth, the gestational age at which magnesium sulphate treatment was given, the total dose received, or whether maintenance therapy was used. A limitation of the study was that not all trials could provide the data required for the planned analyses so that combined with low event rates for some important clinical events, the power to find a difference was limited.
Conclusions:
Antenatal magnesium sulphate given prior to preterm birth for fetal neuroprotection prevents CP and reduces the combined risk of fetal/infant death or CP. Benefit is seen regardless of the reason for preterm birth, with similar effects across a range of preterm gestational ages and different treatment regimens. Widespread adoption worldwide of this relatively inexpensive, easy-to-administer treatment would lead to important global health benefits for infants born preterm.

