Vitamin C and E supplementation to prevent spontaneous preterm birth: a randomized controlled trial
- PMID: 20733448
- PMCID: PMC2987650
- DOI: 10.1097/AOG.0b013e3181ed721d
Vitamin C and E supplementation to prevent spontaneous preterm birth: a randomized controlled trial
Abstract
Objective: To estimate whether maternally administered vitamins C and E lower the risk of spontaneous preterm birth.
Methods: This is a secondary analysis of a randomized, double-masked, placebo-controlled trial in nulliparous women at low-risk administered 1,000 mg vitamin C and 400 international units vitamin E or placebo daily from 9 to 16 weeks of gestation until delivery. Outcomes include preterm birth attributable to premature rupture of membranes (PROM) and total spontaneous preterm births (spontaneous preterm birth attributable to PROM or spontaneous labor).
Results: Of the 10,154 women randomized, outcome data were available for 9,968 (4,992 vitamin group and 4,976 placebo group). A total of 1,038 women (10.4%) delivered preterm, of whom 698 (7.0%) had spontaneous preterm birth. A spontaneous preterm birth occurred in 356 women (7.1%) assigned to daily vitamin C and E supplementation and in 342 (6.9%) assigned to placebo. There were 253 women (2.5%) who delivered after preterm PROM and 445 (4.5%) after a spontaneous preterm labor. In women supplemented with vitamins C and E, births attributed to preterm PROM were similar at less than 37 and 35 weeks of gestation, but births were less frequent before 32 weeks of gestation (0.3% compared with 0.6%, adjusted odds ratio 0.3-0.9). However, total spontaneous preterm births across gestation in women supplemented with vitamins C and E or a placebo were similar.
Conclusion: Maternal supplementation with vitamins C and E beginning at 9 to 16 weeks of gestation in nulliparous women at low risk did not reduce spontaneous preterm births.
Clinical trial registration: ClinicalTrials.gov, www.clinicaltrials.gov, NCT00135707.
Level of evidence: I.
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References
-
- Hamilton BE, Martin JA, Ventura SJ. National vital statistics reports, web release. 12. Vol. 57. National Center for Health Statistics; Hyattsville, MD: [March 18, 2009]. Preliminary data for 2007.
-
- Meis PJ, Michielutte R, Peter TJ, et al. Factors associated with preterm birth in Cardiff, Wales, I. Univariable and multivariable analysis. Am J Obstet Gynecol. 1995;173:590–6. - PubMed
-
- Meis PJ, Goldenberg RL, Mercenter BM, et al. The preterm prediction study: risk factors for indicated preterm births. Am J Obstet Gynecol. 1998;178:562–7. - PubMed
-
- American College of Obstetricians and Gynecologists Premature rupture of membranes. ACOG practice bulletin no. 80. Obstet Gynecol. 2007;109:1007–19. - PubMed
-
- Woods JR, Plessinger MA, Miller RK. Vitamins C and E: Missing links in preventing preterm premature rupture of membranes? Am J Obstet Gynecol. 2001;185:5–10. - PubMed
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