Multiple-micronutrient supplementation for women during pregnancy.
Dietary Supplements
Drug Interactions
Female
Folic Acid
/ administration & dosage
Humans
Infant, Newborn
Infant, Small for Gestational Age
Iron, Dietary
/ administration & dosage
Micronutrients
/ administration & dosage
Perinatal Mortality
Pregnancy
Pregnancy Complications
/ therapy
Pregnancy Outcome
Premature Birth
/ epidemiology
Randomized Controlled Trials as Topic
Journal
The Cochrane database of systematic reviews
ISSN: 1469-493X
Titre abrégé: Cochrane Database Syst Rev
Pays: England
ID NLM: 100909747
Informations de publication
Date de publication:
14 03 2019
14 03 2019
Historique:
pubmed:
16
3
2019
medline:
17
4
2019
entrez:
16
3
2019
Statut:
epublish
Résumé
Multiple-micronutrient (MMN) deficiencies often coexist among women of reproductive age in low- and middle-income countries. They are exacerbated in pregnancy due to the increased demands of the developing fetus, leading to potentially adverse effects on the mother and baby. A consensus is yet to be reached regarding the replacement of iron and folic acid supplementation with MMNs. Since the last update of this Cochrane Review in 2017, evidence from several trials has become available. The findings of this review will be critical to inform policy on micronutrient supplementation in pregnancy. To evaluate the benefits of oral multiple-micronutrient supplementation during pregnancy on maternal, fetal and infant health outcomes. For this 2018 update, on 23 February 2018 we searched Cochrane Pregnancy and Childbirth's Trials Register, ClinicalTrials.gov, the WHO International Clinical Trials Registry Platform (ICTRP), and reference lists of retrieved studies. We also contacted experts in the field for additional and ongoing trials. All prospective randomised controlled trials evaluating MMN supplementation with iron and folic acid during pregnancy and its effects on pregnancy outcomes were eligible, irrespective of language or the publication status of the trials. We included cluster-randomised trials, but excluded quasi-randomised trials. Trial reports that were published as abstracts were eligible. Two review authors independently assessed trials for inclusion and risk of bias, extracted data and checked them for accuracy. We assessed the quality of the evidence using the GRADE approach. We identified 21 trials (involving 142,496 women) as eligible for inclusion in this review, but only 20 trials (involving 141,849 women) contributed data. Of these 20 trials, 19 were conducted in low- and middle-income countries and compared MMN supplements with iron and folic acid to iron, with or without folic acid. One trial conducted in the UK compared MMN supplementation with placebo. In total, eight trials were cluster-randomised.MMN with iron and folic acid versus iron, with or without folic acid (19 trials)MMN supplementation probably led to a slight reduction in preterm births (average risk ratio (RR) 0.95, 95% confidence interval (CI) 0.90 to 1.01; 18 trials, 91,425 participants; moderate-quality evidence), and babies considered small-for-gestational age (SGA) (average RR 0.92, 95% CI 0.88 to 0.97; 17 trials; 57,348 participants; moderate-quality evidence), though the CI for the pooled effect for preterm births just crossed the line of no effect. MMN reduced the number of newborn infants identified as low birthweight (LBW) (average RR 0.88, 95% CI 0.85 to 0.91; 18 trials, 68,801 participants; high-quality evidence). We did not observe any differences between groups for perinatal mortality (average RR 1.00, 95% CI 0.90 to 1.11; 15 trials, 63,922 participants; high-quality evidence). MMN supplementation led to slightly fewer stillbirths (average RR 0.95, 95% CI 0.86 to 1.04; 17 trials, 97,927 participants; high-quality evidence) but, again, the CI for the pooled effect just crossed the line of no effect. MMN supplementation did not have an important effect on neonatal mortality (average RR 1.00, 95% CI 0.89 to 1.12; 14 trials, 80,964 participants; high-quality evidence). We observed little or no difference between groups for the other maternal and pregnancy outcomes: maternal anaemia in the third trimester (average RR 1.04, 95% CI 0.94 to 1.15; 9 trials, 5912 participants), maternal mortality (average RR 1.06, 95% CI 0.72 to 1.54; 6 trials, 106,275 participants), miscarriage (average RR 0.99, 95% CI 0.94 to 1.04; 12 trials, 100,565 participants), delivery via a caesarean section (average RR 1.13, 95% CI 0.99 to 1.29; 5 trials, 12,836 participants), and congenital anomalies (average RR 1.34, 95% CI 0.25 to 7.12; 2 trials, 1958 participants). However, MMN supplementation probably led to a reduction in very preterm births (average RR 0.81, 95% CI 0.71 to 0.93; 4 trials, 37,701 participants). We were unable to assess a number of prespecified, clinically important outcomes due to insufficient or non-available data.When we assessed primary outcomes according to GRADE criteria, the quality of evidence for the review overall was moderate to high. We graded the following outcomes as high quality: LBW, perinatal mortality, stillbirth, and neonatal mortality. The outcomes of preterm birth and SGA we graded as moderate quality; both were downgraded for funnel plot asymmetry, indicating possible publication bias.We carried out sensitivity analyses excluding trials with high levels of sample attrition (> 20%). We found that results were consistent with the main analyses for all outcomes. We explored heterogeneity through subgroup analyses by maternal height, maternal body mass index (BMI), timing of supplementation, dose of iron, and MMN supplement formulation (UNIMMAP versus non-UNIMMAP). There was a greater reduction in preterm births for women with low BMI and among those who took non-UNIMMAP supplements. We also observed subgroup differences for maternal BMI and maternal height for SGA, indicating greater impact among women with greater BMI and height. Though we found that MMN supplementation made little or no difference to perinatal mortality, the analysis demonstrated substantial statistical heterogeneity. We explored this heterogeneity using subgroup analysis and found differences for timing of supplementation, whereby higher impact was observed with later initiation of supplementation. For all other subgroup analyses, the findings were inconclusive.MMN versus placebo (1 trial)A single trial in the UK found little or no important effect of MMN supplementation on preterm births, SGA, or LBW but did find a reduction in maternal anaemia in the third trimester (RR 0.66, 95% CI 0.51 to 0.85), when compared to placebo. This trial did not measure our other outcomes. Our findings suggest a positive impact of MMN supplementation with iron and folic acid on several birth outcomes. MMN supplementation in pregnancy led to a reduction in babies considered LBW, and probably led to a reduction in babies considered SGA. In addition, MMN probably reduced preterm births. No important benefits or harms of MMN supplementation were found for mortality outcomes (stillbirths, perinatal and neonatal mortality). These findings may provide some basis to guide the replacement of iron and folic acid supplements with MMN supplements for pregnant women residing in low- and middle-income countries.
Sections du résumé
BACKGROUND
Multiple-micronutrient (MMN) deficiencies often coexist among women of reproductive age in low- and middle-income countries. They are exacerbated in pregnancy due to the increased demands of the developing fetus, leading to potentially adverse effects on the mother and baby. A consensus is yet to be reached regarding the replacement of iron and folic acid supplementation with MMNs. Since the last update of this Cochrane Review in 2017, evidence from several trials has become available. The findings of this review will be critical to inform policy on micronutrient supplementation in pregnancy.
OBJECTIVES
To evaluate the benefits of oral multiple-micronutrient supplementation during pregnancy on maternal, fetal and infant health outcomes.
SEARCH METHODS
For this 2018 update, on 23 February 2018 we searched Cochrane Pregnancy and Childbirth's Trials Register, ClinicalTrials.gov, the WHO International Clinical Trials Registry Platform (ICTRP), and reference lists of retrieved studies. We also contacted experts in the field for additional and ongoing trials.
SELECTION CRITERIA
All prospective randomised controlled trials evaluating MMN supplementation with iron and folic acid during pregnancy and its effects on pregnancy outcomes were eligible, irrespective of language or the publication status of the trials. We included cluster-randomised trials, but excluded quasi-randomised trials. Trial reports that were published as abstracts were eligible.
DATA COLLECTION AND ANALYSIS
Two review authors independently assessed trials for inclusion and risk of bias, extracted data and checked them for accuracy. We assessed the quality of the evidence using the GRADE approach.
MAIN RESULTS
We identified 21 trials (involving 142,496 women) as eligible for inclusion in this review, but only 20 trials (involving 141,849 women) contributed data. Of these 20 trials, 19 were conducted in low- and middle-income countries and compared MMN supplements with iron and folic acid to iron, with or without folic acid. One trial conducted in the UK compared MMN supplementation with placebo. In total, eight trials were cluster-randomised.MMN with iron and folic acid versus iron, with or without folic acid (19 trials)MMN supplementation probably led to a slight reduction in preterm births (average risk ratio (RR) 0.95, 95% confidence interval (CI) 0.90 to 1.01; 18 trials, 91,425 participants; moderate-quality evidence), and babies considered small-for-gestational age (SGA) (average RR 0.92, 95% CI 0.88 to 0.97; 17 trials; 57,348 participants; moderate-quality evidence), though the CI for the pooled effect for preterm births just crossed the line of no effect. MMN reduced the number of newborn infants identified as low birthweight (LBW) (average RR 0.88, 95% CI 0.85 to 0.91; 18 trials, 68,801 participants; high-quality evidence). We did not observe any differences between groups for perinatal mortality (average RR 1.00, 95% CI 0.90 to 1.11; 15 trials, 63,922 participants; high-quality evidence). MMN supplementation led to slightly fewer stillbirths (average RR 0.95, 95% CI 0.86 to 1.04; 17 trials, 97,927 participants; high-quality evidence) but, again, the CI for the pooled effect just crossed the line of no effect. MMN supplementation did not have an important effect on neonatal mortality (average RR 1.00, 95% CI 0.89 to 1.12; 14 trials, 80,964 participants; high-quality evidence). We observed little or no difference between groups for the other maternal and pregnancy outcomes: maternal anaemia in the third trimester (average RR 1.04, 95% CI 0.94 to 1.15; 9 trials, 5912 participants), maternal mortality (average RR 1.06, 95% CI 0.72 to 1.54; 6 trials, 106,275 participants), miscarriage (average RR 0.99, 95% CI 0.94 to 1.04; 12 trials, 100,565 participants), delivery via a caesarean section (average RR 1.13, 95% CI 0.99 to 1.29; 5 trials, 12,836 participants), and congenital anomalies (average RR 1.34, 95% CI 0.25 to 7.12; 2 trials, 1958 participants). However, MMN supplementation probably led to a reduction in very preterm births (average RR 0.81, 95% CI 0.71 to 0.93; 4 trials, 37,701 participants). We were unable to assess a number of prespecified, clinically important outcomes due to insufficient or non-available data.When we assessed primary outcomes according to GRADE criteria, the quality of evidence for the review overall was moderate to high. We graded the following outcomes as high quality: LBW, perinatal mortality, stillbirth, and neonatal mortality. The outcomes of preterm birth and SGA we graded as moderate quality; both were downgraded for funnel plot asymmetry, indicating possible publication bias.We carried out sensitivity analyses excluding trials with high levels of sample attrition (> 20%). We found that results were consistent with the main analyses for all outcomes. We explored heterogeneity through subgroup analyses by maternal height, maternal body mass index (BMI), timing of supplementation, dose of iron, and MMN supplement formulation (UNIMMAP versus non-UNIMMAP). There was a greater reduction in preterm births for women with low BMI and among those who took non-UNIMMAP supplements. We also observed subgroup differences for maternal BMI and maternal height for SGA, indicating greater impact among women with greater BMI and height. Though we found that MMN supplementation made little or no difference to perinatal mortality, the analysis demonstrated substantial statistical heterogeneity. We explored this heterogeneity using subgroup analysis and found differences for timing of supplementation, whereby higher impact was observed with later initiation of supplementation. For all other subgroup analyses, the findings were inconclusive.MMN versus placebo (1 trial)A single trial in the UK found little or no important effect of MMN supplementation on preterm births, SGA, or LBW but did find a reduction in maternal anaemia in the third trimester (RR 0.66, 95% CI 0.51 to 0.85), when compared to placebo. This trial did not measure our other outcomes.
AUTHORS' CONCLUSIONS
Our findings suggest a positive impact of MMN supplementation with iron and folic acid on several birth outcomes. MMN supplementation in pregnancy led to a reduction in babies considered LBW, and probably led to a reduction in babies considered SGA. In addition, MMN probably reduced preterm births. No important benefits or harms of MMN supplementation were found for mortality outcomes (stillbirths, perinatal and neonatal mortality). These findings may provide some basis to guide the replacement of iron and folic acid supplements with MMN supplements for pregnant women residing in low- and middle-income countries.
Identifiants
pubmed: 30873598
doi: 10.1002/14651858.CD004905.pub6
pmc: PMC6418471
doi:
Substances chimiques
Iron, Dietary
0
Micronutrients
0
Folic Acid
935E97BOY8
Types de publication
Journal Article
Meta-Analysis
Research Support, Non-U.S. Gov't
Systematic Review
Langues
eng
Sous-ensembles de citation
IM
Pagination
CD004905Commentaires et corrections
Type : UpdateOf
Références
Am J Clin Nutr. 1985 Nov;42(5):815-28
pubmed: 4061343
J Perinat Med. 2007;35(2):108-14
pubmed: 17302515
JAMA Intern Med. 2013 Feb 25;173(4):276-82
pubmed: 23303315
J Nutr. 2004 Apr;134(4):898-903
pubmed: 15051844
J Nutr. 2003 May;133(5 Suppl 2):1597S-1605S
pubmed: 12730474
J Public Health Med. 1991 Aug;13(3):227-9
pubmed: 1958415
Acta Paediatr. 2017 Jan;106(1):49-54
pubmed: 27659772
Przegl Lek. 2004;61(7):755-9
pubmed: 15792015
Oman Med J. 2014 Mar;29(2):123-9
pubmed: 24715940
Niger J Med. 2011 Jan-Mar;20(1):131-4
pubmed: 21970275
FASEB J. 2012 May;26(5):1782-90
pubmed: 22267336
PLoS One. 2012;7(3):e32519
pubmed: 22427850
JAMA. 2012 May 16;307(19):2050-9
pubmed: 22665104
Matern Child Nutr. 2017 Jan;13(1):
pubmed: 26898720
Br J Nutr. 2010 Jun;103(12):1784-91
pubmed: 20211040
Lancet Glob Health. 2017 Feb;5(2):e217-e228
pubmed: 28104188
Am J Obstet Gynecol. 1999 Feb;180(2 Pt 1):483-90
pubmed: 9988823
J Nutr. 2013 May;143(5):728-34
pubmed: 23514767
J Nutr. 2001 Jan;131(1):85-90
pubmed: 11303488
BMC Public Health. 2012 Oct 24;12:898
pubmed: 23092451
BMJ. 2003 Mar 15;326(7389):571
pubmed: 12637400
Am J Clin Nutr. 1962 Nov;11:533-6
pubmed: 14018865
PLoS One. 2015 Apr 30;10(4):e0125740
pubmed: 25928545
J Nutr. 2001 Oct;131(10):2664-9
pubmed: 11584088
Food Nutr Bull. 2009 Dec;30(4 Suppl):S517-26
pubmed: 20120793
J Pediatr. 2016 Aug;175:106-110.e2
pubmed: 27263403
Food Nutr Bull. 2009 Dec;30(4 Suppl):S547-55
pubmed: 20120796
Int J Gynaecol Obstet. 2009 Jul;106(1):3-7
pubmed: 19368922
Cochrane Database Syst Rev. 2015 Oct 27;(10):CD008666
pubmed: 26503498
Asia Pac J Clin Nutr. 2002;11(4):263-7
pubmed: 12495257
Food Nutr Bull. 2009 Dec;30(4 Suppl):S556-73
pubmed: 20120797
Trials. 2011 Feb 28;12:60
pubmed: 21356082
Nutrients. 2018 Sep 11;10(9):
pubmed: 30208589
Eur Rev Med Pharmacol Sci. 2014;18(2):270-4
pubmed: 24488919
Am J Clin Nutr. 2014 Nov;100(5):1257-68
pubmed: 25332324
Am J Trop Med Hyg. 2007 Jun;76(6):1066-71
pubmed: 17556612
BMC Pregnancy Childbirth. 2014 Mar 20;14:111
pubmed: 24650219
PLoS Med. 2013;10(6):e1001470
pubmed: 23853552
J Nutr. 2008 Oct;138(10):1946-50
pubmed: 18806105
Arch Gynecol Obstet. 1994;255(3):131-9
pubmed: 7979565
PLoS One. 2018 Feb 15;13(2):e0191260
pubmed: 29447176
Eur J Haematol. 2001 Jun;66(6):389-95
pubmed: 11488938
BMC Public Health. 2017 Jan 5;17(1):24
pubmed: 28056945
Food Nutr Bull. 2014 Dec;35(4 Suppl):S205-8
pubmed: 25639140
BMJ Open. 2017 Oct 12;7(10):e016637
pubmed: 29025835
Malar J. 2015 May 10;14:193
pubmed: 25957793
Int J Vitam Nutr Res. 1996;66(1):55-8
pubmed: 8698547
Acta Paediatr. 2011 Feb;100(2):220-5
pubmed: 20868371
Paediatr Perinat Epidemiol. 2012 Jul;26 Suppl 1:27-35
pubmed: 22742600
Ann Trop Med Parasitol. 1986 Apr;80(2):211-33
pubmed: 3530158
Am J Clin Nutr. 2006 Apr;83(4):788-94
pubmed: 16600929
Am J Clin Nutr. 2016 Mar;103(3):784-93
pubmed: 26843155
N Engl J Med. 2007 Apr 5;356(14):1423-31
pubmed: 17409323
Przegl Lek. 2004;61(7):760-3
pubmed: 15792016
Lancet. 2008 Feb 9;371(9611):492-9
pubmed: 18262041
J Acquir Immune Defic Syndr. 2014 Dec 1;67 Suppl 4:S173-8
pubmed: 25436815
Indian Pediatr. 1993 Nov;30(11):1309-14
pubmed: 8039855
Clin Nutr. 2019 Feb;38(1):146-151
pubmed: 29428785
Paediatr Perinat Epidemiol. 2012 Jul;26 Suppl 1:153-67
pubmed: 22742608
Prostaglandins Leukot Essent Fatty Acids. 2017 Feb;117:28-35
pubmed: 28237085
Food Nutr Bull. 2012 Jun;33(2):142-9
pubmed: 22908696
Matern Child Nutr. 2018 Jan;14(1):
pubmed: 28251804
Pediatrics. 2009 Apr;123(4):e685-92
pubmed: 19336358
Malar J. 2018 Feb 07;17(1):74
pubmed: 29415730
Public Health Nutr. 2011 Dec;14(12):2185-96
pubmed: 21729487
Arch Pediatr Adolesc Med. 2007 Jan;161(1):58-64
pubmed: 17199068
Am J Clin Nutr. 2010 Feb;91(2):391-7
pubmed: 19939985
Cochrane Database Syst Rev. 2016 Jan 14;(1):CD008873
pubmed: 26765344
J Nutr. 1999 Aug;129(8):1563-8
pubmed: 10419991
BJOG. 2002 Aug;109(8):905-8
pubmed: 12197370
Eur J Clin Nutr. 2009 Mar;63(3):332-9
pubmed: 17940544
Matern Child Nutr. 2015 Jul;11(3):297-304
pubmed: 23253638
J Nutr. 2016 Feb;146(2):343-52
pubmed: 26764321
Matern Child Nutr. 2015 Jul;11(3):385-97
pubmed: 23241449
BMC Public Health. 2016 Jun 03;16:466
pubmed: 27255923
Glob Health Action. 2013 Dec 13;6:22476
pubmed: 24331714
J Nutr. 2017 Jun;147(6):1094-1103
pubmed: 28446631
Food Nutr Bull. 2016 Dec;37(4):461-474
pubmed: 27150299
Matern Child Nutr. 2015 Oct;11(4):537-49
pubmed: 23556466
Cochrane Database Syst Rev. 2015 Feb 02;(2):CD000230
pubmed: 25927101
BMC Pregnancy Childbirth. 2016 Aug 30;16:253
pubmed: 27577112
Cochrane Database Syst Rev. 2012 Mar 14;(3):CD009755
pubmed: 22419344
Lancet. 1993 Nov 27;342(8883):1325-8
pubmed: 7901636
Am J Clin Nutr. 2004 Jul;80(1):178-84
pubmed: 15213046
J Obstet Gynaecol. 2018 Jan;38(1):32-37
pubmed: 28741390
J Obstet Gynaecol Br Emp. 1946 Dec;53(6):498-509
pubmed: 12255545
Matern Child Health J. 2015 Dec;19(12):2605-14
pubmed: 26164422
Cochrane Database Syst Rev. 2015 Jul 22;(7):CD004736
pubmed: 26198451
Lancet. 2013 Aug 3;382(9890):427-451
pubmed: 23746772
Br J Nutr. 2001 May;85 Suppl 2:S193-7
pubmed: 11509110
Pediatrics. 2014 Apr;133(4):e1001-8
pubmed: 24590752
Am J Clin Nutr. 1963 Jun;12(6):427-30
pubmed: 13954597
PLoS One. 2016 Dec 5;11(12):e0167416
pubmed: 27918586
J Nutr. 2017 Aug;147(8):1586-1592
pubmed: 28615379
Matern Child Nutr. 2018 Apr;14(2):e12518
pubmed: 28960913
Am J Clin Nutr. 1999 Jun;69(6):1257-63
pubmed: 10357748
Br J Nutr. 1979 Nov;42(3):391-8
pubmed: 508701
Am J Clin Nutr. 2000 Apr;71(4):956-61
pubmed: 10731503
Acta Obstet Gynecol Scand. 2011 Jan;90(1):47-56
pubmed: 21275915
Food Nutr Bull. 2007 Sep;28(3):317-27
pubmed: 17974365
Eur J Clin Nutr. 2012 Feb;66(2):261-8
pubmed: 22085869
Am J Clin Nutr. 2006 Nov;84(5):1086-92
pubmed: 17093161
J Nutr. 2017 Oct 1;147(10):1867-1874
pubmed: 28794206
J Nutr. 2016 Sep;146(9):1775-82
pubmed: 27440259
Am J Clin Nutr. 2005 May;81(5):1206S-1212S
pubmed: 15883453
J Nutr. 2006 May;136(5):1389-94
pubmed: 16614435
N Engl J Med. 1992 Dec 24;327(26):1832-5
pubmed: 1307234
Ann N Y Acad Sci. 1993 Mar 15;678:266-75
pubmed: 8257482
Am J Clin Nutr. 2015 Dec;102(6):1450-9
pubmed: 26561613
Br J Nutr. 2016 Feb 28;115(4):644-9
pubmed: 26824731
Lancet Glob Health. 2017 Nov;5(11):e1090-e1100
pubmed: 29025632
J Nutr. 2011 Oct;141(10):1912-7
pubmed: 21865563
Am J Clin Nutr. 2008 Mar;87(3):704-11
pubmed: 18326610
Salud Publica Mex. 2007 May-Jun;49(3):190-8
pubmed: 17589773
J Nutr. 2010 Oct;140(10):1788-92
pubmed: 20739447
Int J Gynaecol Obstet. 1996 Jun;53(3):219-33
pubmed: 8793624
Am J Med Genet. 1996 Mar 15;62(2):179-83
pubmed: 8882400
Annu Rev Nutr. 2010 Aug 21;30:83-104
pubmed: 20415580
Int J Prev Med. 2015 Jul 13;6:62
pubmed: 26288706
Matern Child Nutr. 2017 Apr;13(2):
pubmed: 26924599
Eur J Obstet Gynecol Reprod Biol. 2015 Nov;194:223-7
pubmed: 26454228
Am J Epidemiol. 2017 Aug 1;186(3):318-325
pubmed: 28472219
Int J Vitam Nutr Res. 1999 Nov;69(6):396-402
pubmed: 10642897
Lancet. 2005 Dec 10;366(9502):2001; author reply 2002-3
pubmed: 16338444
Placenta. 2017 Jun;54:38-44
pubmed: 28031147
J Nutr. 2003 Nov;133(11):3492-8
pubmed: 14608063
J Nutr. 2005 May;135(5):1106-12
pubmed: 15867289
Zhongguo Zhong Xi Yi Jie He Za Zhi. 1996 May;16(5):270-3
pubmed: 9387716
N Engl J Med. 2004 Jul 1;351(1):23-32
pubmed: 15229304
Lancet. 2013 Aug 3;382(9890):452-477
pubmed: 23746776
Alcohol. 2015 Nov;49(7):647-56
pubmed: 26493109
BMJ. 2011 May 19;342:d2901
pubmed: 21596735
Nutr J. 2011 Dec 08;10:134
pubmed: 22152147
Gynecol Obstet Invest. 1987;24(1):38-42
pubmed: 3623260
Am J Epidemiol. 2009 Nov 1;170(9):1127-36
pubmed: 19778983
Ann N Y Acad Sci. 1993 Mar 15;678:158-68
pubmed: 8494259
Acta Paediatr. 2017 Dec;106(12):1979-1986
pubmed: 28779492
J Nutr. 2001 Feb;131(2S-2):616S-633S; discussion 633S-635S
pubmed: 11160594
Food Nutr Bull. 2009 Jun;30(2 Suppl):S207-14
pubmed: 20496613
Lancet. 2008 Jan 19;371(9608):186-7
pubmed: 18207005
J Reprod Med. 1998 Feb;43(2):133-40
pubmed: 9513875
Matern Child Nutr. 2017 Apr;13(2):
pubmed: 27696720
CMAJ. 2009 Jun 9;180(12):1188-9
pubmed: 19506273
Lancet. 2005 Aug 27-Sep 2;366(9487):711-2
pubmed: 16125578
J Nutr. 2014 Jun;144(6):943-8
pubmed: 24744317
Am J Clin Nutr. 2014 Dec;100(6):1587-95
pubmed: 25411294
J Nutr. 2017 Apr;147(4):697-705
pubmed: 28275100
BMC Womens Health. 2017 Jun 17;17(1):44
pubmed: 28623904
PLoS One. 2016 Mar 02;11(3):e0149700
pubmed: 26934484
Eur J Clin Nutr. 2011 Oct;65(10):1110-7
pubmed: 21673719
Am J Clin Nutr. 2017 Oct 1;106(4):1062-1069
pubmed: 28793991
Am J Clin Nutr. 2016 Oct;104(4):1175-1182
pubmed: 27604769
Trials. 2017 Mar 20;18(1):131
pubmed: 28320484
Food Nutr Bull. 2009 Mar;30(1 Suppl):S60-78
pubmed: 19472602
Am J Clin Nutr. 2008 Jul;88(1):154-60
pubmed: 18614736
Lancet. 2005 Mar 12-18;365(9463):955-62
pubmed: 15766997
Am J Clin Nutr. 2016 Feb;103(2):559-66
pubmed: 26739037
Asia Pac J Clin Nutr. 2010;19(4):513-9
pubmed: 21147712
Am J Clin Nutr. 2010 Oct;92(4):881-6
pubmed: 20739426
Am J Clin Nutr. 2005 May;81(5):1060-4
pubmed: 15883429
Am J Clin Nutr. 2015 Feb;101(2):387-97
pubmed: 25646337
Cochrane Database Syst Rev. 2006 Oct 18;(4):CD004905
pubmed: 17054223
Am J Clin Nutr. 2009 Jul;90(1):132-40
pubmed: 19474130
Acta Obstet Gynecol Scand. 2007;86(7):783-7
pubmed: 17611821
J Nutr. 2017 Sep;147(9):1776-1784
pubmed: 28724657
J Pediatr. 2016 Nov;178:40-46.e3
pubmed: 27449363
J Nutr. 2015 Mar;145(3):634-9
pubmed: 25733482
Plant Foods Hum Nutr. 2010 Mar;65(1):25-30
pubmed: 20013055
Am J Obstet Gynecol. 2005 Feb;192(2):520-1
pubmed: 15695996
Nat Rev Endocrinol. 2016 May;12(5):274-89
pubmed: 27032981
J Nutr. 2012 Jun;142(6):1109-15
pubmed: 22535759
Am J Clin Nutr. 2017 Apr;105(4):958-969
pubmed: 28275128
Obstet Gynecol. 2001 Apr;97(4):533-8
pubmed: 11275024
Matern Child Nutr. 2017 Apr;13(2):
pubmed: 27060705
Int Health. 2014 Dec;6(4):298-305
pubmed: 25173342
Acta Paediatr. 2013 Aug;102(8):815-23
pubmed: 23638711
PLoS One. 2012;7(11):e50568
pubmed: 23209782
Food Nutr Bull. 2005 Sep;26(3):273-80
pubmed: 16222918
Public Health Nutr. 2010 Jan;13(1):82-90
pubmed: 19454124
Int J Reprod Biomed. 2017 May;15(5):273-278
pubmed: 28744522
Eur J Clin Nutr. 2005 Sep;59(9):1081-9
pubmed: 16015266
Br J Nutr. 2015 Jul;114(2):274-85
pubmed: 26099195
Zhonghua Yu Fang Yi Xue Za Zhi. 2001 Nov;35(6):370-3
pubmed: 11840761
Indian J Pediatr. 2004 Nov;71(11):1007-14
pubmed: 15572822
Asia Pac J Clin Nutr. 2014;23(4):567-74
pubmed: 25516314
J Nutr. 2003 May;133(5):1339-46
pubmed: 12730420
J Nutr. 2013 May;143(5):576-83
pubmed: 23535609
Am J Clin Nutr. 2010 Jun;91(6):1649-58
pubmed: 20375185
BMC Pregnancy Childbirth. 2017 Jan 17;17(1):35
pubmed: 28095801
Hum Mol Genet. 2012 May 1;21(9):2086-101
pubmed: 22307237
Am J Clin Nutr. 2015 Apr;101(4):835-46
pubmed: 25833980
J Nutr. 2016 Jul;146(7):1445S-52S
pubmed: 27281806
J Obstet Gynaecol Res. 2012 Sep;38(9):1152-61
pubmed: 22563751
J Nutr. 2003 May;133(5 Suppl 2):1592S-1596S
pubmed: 12730473
Obstet Gynecol. 1955 Apr;5(4):562-8
pubmed: 14370701
Public Health Nutr. 2008 Jan;11(1):30-40
pubmed: 17565762
J Reprod Med. 1987 Jun;32(6 Suppl):478-87
pubmed: 3612641
J Nutr. 2012 Jun;142(6):1095-101
pubmed: 22496401
Am J Clin Nutr. 2007 May;85(5):1335-43
pubmed: 17490971
JAMA. 2010 Apr 21;303(15):1507-16
pubmed: 20407060
BMC Pregnancy Childbirth. 2012 Oct 11;12:107
pubmed: 23057665
J Clin Endocrinol Metab. 2014 Jul;99(7):2448-55
pubmed: 24646102
J Nutr. 2009 Aug;139(8):1575-81
pubmed: 19549749
Br J Nutr. 2001 Nov;86(5):607-15
pubmed: 11737959
JAMA. 2010 Dec 22;304(24):2716-23
pubmed: 21177506
JAMA. 2014 Dec 24-31;312(24):2649-58
pubmed: 25536256
J Nutr. 2010 Mar;140(3):605-11
pubmed: 20107141
J Nutr. 2017 Dec;147(12):2326-2337
pubmed: 29021370
Acta Obstet Gynecol Scand. 1991;70(1):9-12
pubmed: 1858501
Przegl Lek. 2004;61(7):764-8
pubmed: 15792017
Int J Prev Med. 2014 Apr;5(4):439-46
pubmed: 24829731
J Perinat Med. 2010 Jul;38(4):425-30
pubmed: 20443667
Int J Epidemiol. 2011 Apr;40(2):350-62
pubmed: 21252212
J Nutr. 2016 Feb;146(2):335-42
pubmed: 26740682
Am J Clin Nutr. 2007 May;85(5):1375-84
pubmed: 17490976
Eur J Clin Nutr. 2002 Apr;56(4):338-46
pubmed: 11965510
Bull World Health Organ. 2011 Jun 1;89(6):402-411B
pubmed: 21673856
Early Hum Dev. 2016 Aug;99:43-51
pubmed: 27391572
Int J Epidemiol. 2014 Feb;43(1):216-23
pubmed: 24366492
Arch Gynecol Obstet. 1992;251(4):181-5
pubmed: 1503509
Curr Opin Obstet Gynecol. 2011 Dec;23(6):422-6
pubmed: 21986726
Eur Respir J. 2015 Jun;45(6):1566-75
pubmed: 25700386
Arch Womens Ment Health. 2018 Feb;21(1):55-63
pubmed: 28698916
Food Nutr Bull. 2009 Dec;30(4 Suppl):S488-95
pubmed: 20120790
Am J Clin Nutr. 2002 Nov;76(5):1082-90
pubmed: 12399282
Cochrane Database Syst Rev. 2017 Apr 13;4:CD004905
pubmed: 28407219
J Nutr. 2017 Aug;147(8):1593-1601
pubmed: 28615372
J Nutr. 2016 Dec;146(12):2520-2529
pubmed: 27798335
Ann Nutr Metab. 2015;66 Suppl 2:22-33
pubmed: 26045325
J Nutr. 2010 Mar;140(3):618-24
pubmed: 20053938
Am J Clin Nutr. 1984 Sep;40(3):508-21
pubmed: 6475822
Am J Clin Nutr. 2003 Dec;78(6):1194-202
pubmed: 14668283
Food Nutr Bull. 2009 Dec;30(4 Suppl):S496-505
pubmed: 20120791
Q J Med. 1975 Apr;44(174):241-58
pubmed: 1103213
Clin Infect Dis. 2004 Mar 1;38(5):716-22
pubmed: 14986257
Lancet. 2008 Jan 19;371(9608):215-27
pubmed: 18207017
Cochrane Database Syst Rev. 2010 Oct 06;(10):CD007950
pubmed: 20927767
Am J Clin Nutr. 2016 Sep;104(3):797-808
pubmed: 27534634
Am J Clin Nutr. 2008 Nov;88(5):1330-40
pubmed: 18996870
J Nutr. 2012 Nov;142(11):2010-6
pubmed: 22990469
Lancet. 2005 Dec 10;366(9502):2001-2; author reply 2002-3
pubmed: 16338443
BMC Public Health. 2014 Jan 07;14:5
pubmed: 24393610
Lancet Glob Health. 2014 Nov;2(11):e654-63
pubmed: 25442690
Minerva Ginecol. 2001 Aug;53(4):235-8
pubmed: 11431639
Public Health Nutr. 2005 Feb;8(1):33-7
pubmed: 15705243
Am J Clin Nutr. 1983 Apr;37(4):572-82
pubmed: 6837492
J Nutr. 2012 Mar;142(3):548-54
pubmed: 22298571
Br J Nutr. 2017 Feb;117(4):511-518
pubmed: 28382892
Public Health Nutr. 2008 Jun;11(6):596-605
pubmed: 17764606
Food Nutr Bull. 2009 Dec;30(4 Suppl):S480-7
pubmed: 20120789
J Nutr. 2015 Jun;145(6):1345-53
pubmed: 25926413
J Nutr. 2002 Jul;132(7):1909-12
pubmed: 12097669
Biol Trace Elem Res. 1992 Jan-Mar;32:405-14
pubmed: 1375082
BMC Public Health. 2017 May 16;17(1):452
pubmed: 28511688
J Health Popul Nutr. 2014 Sep;32(3):430-40
pubmed: 25395906
Indian J Med Res. 2000 Dec;112:206-11
pubmed: 11247198
Eur J Clin Nutr. 2004 Jan;58(1):52-9
pubmed: 14679367
Lancet. 1998 May 16;351(9114):1477-82
pubmed: 9605804
East Afr Med J. 2002 Nov;79(11):598-603
pubmed: 12630494
Br Med Bull. 1999;55(3):499-510
pubmed: 10746341
Am J Clin Nutr. 2012 Apr;95(4):916-24
pubmed: 22378724
Am J Clin Nutr. 2016 Jan;103(1):236-49
pubmed: 26607935
Pediatrics. 2013 Mar;131(3):e755-63
pubmed: 23400604
Int J Epidemiol. 2016 Oct;45(5):1656-1667
pubmed: 27694568
Am J Clin Nutr. 2009 Dec;90(6):1593-600
pubmed: 19812173
Hypertens Pregnancy. 2006;25(3):241-53
pubmed: 17065044
Matern Child Nutr. 2016 Jan;12(1):64-73
pubmed: 25059838
J Perinat Med. 2007;35(4):295-300
pubmed: 17547539
Am J Obstet Gynecol. 2010 May;202(5):436.e1-8
pubmed: 20060512
J Nutr. 2017 Jul;147(7):1401-1409
pubmed: 28515164
BMC Public Health. 2011 Apr 13;11 Suppl 3:S19
pubmed: 21501436
Pediatrics. 2012 Sep;130(3):e536-46
pubmed: 22908103
BMC Pregnancy Childbirth. 2006 Apr 04;6:10
pubmed: 16595003
J Nutr. 2005 Jul;135(7):1776-81
pubmed: 15987864
J Nutr. 2015 Aug;145(8):1844-9
pubmed: 26084366
Am J Clin Nutr. 2003 Mar;77(3):720-5
pubmed: 12600867
Salud Publica Mex. 2009 Jul-Aug;51(4):327-35
pubmed: 19668928
BMC Pregnancy Childbirth. 2015 Dec 22;15:346
pubmed: 26694646
Cochrane Database Syst Rev. 2012 Nov 14;11:CD004905
pubmed: 23152228
Afr J Reprod Health. 2010 Jun;14(2):17-26
pubmed: 21243915
Int J Vitam Nutr Res. 2000 Dec;70(6):271-7
pubmed: 11214351
Am J Clin Nutr. 1998 Aug;68(2 Suppl):499S-508S
pubmed: 9701168
PLoS One. 2015 Apr 23;10(4):e0121552
pubmed: 25905863
BMJ. 2008 Nov 07;337:a2001
pubmed: 18996930
Clin Nutr. 2011 Dec;30(6):689-701
pubmed: 21872372
J Matern Fetal Neonatal Med. 2018 Jun;31(12):1586-1594
pubmed: 28443698
J Acquir Immune Defic Syndr. 2000 Mar 1;23(3):246-54
pubmed: 10839660
J Matern Fetal Neonatal Med. 2015 Jul;28(11):1336-1342
pubmed: 25115164
BMJ. 2013 Jun 21;346:f3443
pubmed: 23794316
Am J Clin Nutr. 2017 Apr;105(4):944-957
pubmed: 28275125
Br J Nutr. 2010 Aug;104(3):437-45
pubmed: 20412605
Clin Ther. 1984;6(6):763-9
pubmed: 6391665
Public Health Nutr. 2007 Dec;10(12A):1606-11
pubmed: 18053287
PLoS One. 2015 Oct 02;10(10):e0137269
pubmed: 26431336
BMC Pregnancy Childbirth. 2015 May 28;15:125
pubmed: 26018633
J Nutr. 2001 Feb;131(2S-2):581S-589S
pubmed: 11160591
Am J Clin Nutr. 2011 May;93(5):1012-8
pubmed: 21367950
Am J Clin Nutr. 2005 Apr;81(4):880-8
pubmed: 15817867
Am J Clin Nutr. 2009 Mar;89(3):853-61
pubmed: 19176737
Food Nutr Bull. 2008 Sep;29(3):195-202
pubmed: 18947032
BMJ. 1993 Jun 19;306(6893):1645-8
pubmed: 8324432
Matern Child Nutr. 2018 Apr;14(2):e12570
pubmed: 29210520
Arch Dis Child. 2008 Aug;93(8):660-4
pubmed: 18644934
BMJ. 2003 Sep 6;327(7414):557-60
pubmed: 12958120