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Current Women`s Health Reviews

Editor-in-Chief

ISSN (Print): 1573-4048
ISSN (Online): 1875-6581

Systematic Review Article

Diet and Gestational Diabetes Mellitus: A Systematic Review Study

Author(s): Seideh-Hanieh Alamolhoda, Elham Zare and Parvaneh Mirabi*

Volume 19, Issue 1, 2023

Published on: 17 May, 2022

Article ID: e050422203128 Pages: 7

DOI: 10.2174/1573404818666220405135719

Price: $65

Abstract

Objective: Diet may have an impact on gestational diabetes mellitus (GDM) development; nevertheless, controvertible studies have been published. The aim of this study was to provide evidence from analytical studies on the relationship between diet and GDM development.

Methods: Following the PRISMA guidelines, ISI Web of Knowledge, PubMed, Google Scholar, Scopus, Embase, and the Cochrane library were searched for articles published in the English language from Jan 2005 to Dec 2020. We included observational studies, assessed their risk of bias, and extracted data on association between diet status and GDM development. Keywords were selected based on the Mesh terms, which included gestational diabetes mellitus“, “GDM”, “diet,” “nutrition,” “food,” “dietary pattern which was combined by "OR" and "AND" Boolean operators. Two reviewers (SHA and PM) independently reviewed abstracts and full-text articles and extracted data.

Results: Among the 5 articles included, 4 were case-control and one was a cross-sectional study. Studies have shown that diets with a high intake of saturated fatty acids (more than 10% of total daily fat intake) and trans fatty acids (more than 1% of total daily fat intake) before and during pregnancy significantly increase the risk of gestational diabetes mellitus.

Conclusion: High intake of saturated fat and trans fat before and during pregnancy can disturb glucose metabolism and increase the risk of GDM, although all of the studies recommend more widespread observational and clinical trials studies to identify the exact relationship between high saturated and trans fatty acids intake and GDM.

Keywords: Gestational diabetes mellitus, GDM, diet, nutrition, food, dietary pattern.

Graphical Abstract
[1]
Alamolhoda, S.H.; Simbar, M.; Mirmiran, P.; Mirabi, P. The effectiveness of low trans-fatty acids dietary pattern in pregnancy and the risk of gestational diabetes mellitus. Caspian J. Intern. Med., 2019, 10(2), 197-204.
[PMID: 31363398]
[2]
Alamolhoda, H.; Simbar, M.; Asghari, G.; Mirmiran, P.; Azizi, F. Trans fatty acids and gestational diabetes mellitus: Systematic review. Majallah-i Ghudad-i Darun/Riz va Mitabulism-i Iran, 2016, 18(1), 63-72.
[3]
Boriboonhirunsarn, D.; Talungjit, P.; Sunsaneevithayakul, P.; Sirisomboon, R. Adverse pregnancy outcomes in gestational diabetes mellitus. J. Med. Assoc. Thai., 2006, 89(4), S23-S28.
[PMID: 17725139]
[4]
O’Sullivan, J.B. Diabetes mellitus after GDM. Diabetes, 1991, 40, 131-135.
[http://dx.doi.org/10.2337/diab.40.2.S131] [PMID: 1748242]
[5]
Boney, C.M.; Verma, A.; Tucker, R.; Vohr, B.R. Metabolic syndrome in childhood: Association with birth weight, maternal obesity, and gestational diabetes mellitus. Pediatrics, 2005, 115(3), e290-e296.
[http://dx.doi.org/10.1542/peds.2004-1808] [PMID: 15741354]
[6]
Reece, E.A. The fetal and maternal consequences of gestational diabetes mellitus. J. Matern. Fetal Neonatal Med., 2010, 23(3), 199-203.
[http://dx.doi.org/10.3109/14767050903550659] [PMID: 20121460]
[7]
Monroy-Torres, R.; Naves-Sanchez, J. The influence of diet to control the metabolism in gestational diabetes mellitus.Gestational Diabetes; Radenkovic, M., Ed.; IntechOpen: London, 2011, pp. 277-292.
[http://dx.doi.org/10.5772/23948]
[8]
Radesky, J.S.; Oken, E.; Rifas-Shiman, S.L.; Kleinman, K.P.; Rich-Edwards, J.W.; Gillman, M.W. Diet during early pregnancy and development of gestational diabetes. Paediatr. Perinat. Epidemiol., 2008, 22(1), 47-59.
[http://dx.doi.org/10.1111/j.1365-3016.2007.00899.x] [PMID: 18173784]
[9]
Yamamoto, J.M.; Kellett, J.E.; Balsells, M.; García-Patterson, A.; Hadar, E.; Solà, I.; Gich, I.; van der Beek, E.M.; Castañeda-Gutiérrez, E.; Heinonen, S.; Hod, M.; Laitinen, K.; Olsen, S.F.; Poston, L.; Rueda, R.; Rust, P.; van Lieshout, L.; Schelkle, B.; Murphy, H.R.; Corcoy, R. Gestational diabetes mellitus and diet: A systematic review and meta-analysis of randomized controlled trials examining the impact of modified dietary interventions on maternal glucose control and neonatal birth weight. Diabetes Care, 2018, 41(7), 1346-1361.
[http://dx.doi.org/10.2337/dc18-0102] [PMID: 29934478]
[10]
Viana, L.V.; Gross, J.L.; Azevedo, M.J. Dietary intervention in patients with gestational diabetes mellitus: A systematic review and meta-analysis of randomized clinical trials on maternal and newborn outcomes. Diabetes Care, 2014, 37(12), 3345-3355.
[http://dx.doi.org/10.2337/dc14-1530] [PMID: 25414390]
[11]
Oostdam, N.; van Poppel, M.N.; Wouters, M.G.; van Mechelen, W. Interventions for preventing gestational diabetes mellitus: A systematic review and meta-analysis. J. Womens Health (Larchmt.), 2011, 20(10), 1551-1563.
[http://dx.doi.org/10.1089/jwh.2010.2703] [PMID: 21838525]
[12]
Dong, HL; Cai, CJ; Bai, D; Pang, XX; Lan, X; Zhang, YQ; Zhang, J; Zhou, FM; Sun, H; Zeng, G Association between dietary glycemic load during first trimester and the risk of gestational diabetes mellitus: A prospective study. Zhonghua Liuxingbingxue Zazhi, 2020, 41(8), 1352-8.
[13]
Zhang, C.; Ning, Y. Effect of dietary and lifestyle factors on the risk of gestational diabetes: Review of epidemiologic evidence. Am. J. Clin. Nutr., 2011, 94(6), 1975S-1979S.
[http://dx.doi.org/10.3945/ajcn.110.001032] [PMID: 21613563]
[14]
Cuschieri, S. The strobe guidelines. Saudi J. Anaesth., 2019, 13(5), S31-S34.
[http://dx.doi.org/10.4103/sja.SJA_543_18] [PMID: 30930717]
[15]
Asadi, M.; Shahzeidi, M.; Nadjarzadeh, A.; Hashemi Yusefabad, H.; Mansoori, A. The relationship between prepregnancy dietary patterns adherence and risk of gestational diabetes mellitus in Iran: A case-control study. Nutr. Diet., 2019, 76(5), 597-603.
[http://dx.doi.org/10.1111/1747-0080.12514] [PMID: 30729640]
[16]
Sartorelli, D.S.; Zuccolotto, D.C.C.; Crivellenti, L.C.; Franco, L.J. Dietary patterns during pregnancy derived by reduced-rank regression and their association with gestational diabetes mellitus. Nutrition, 2019, 60, 191-196.
[http://dx.doi.org/10.1016/j.nut.2018.10.008] [PMID: 30612039]
[17]
Zamani, B.; Milajerdi, A.; Tehrani, H.; Bellissimo, N.; Brett, N.R.; Azadbakht, L. Association of a plant-based dietary pattern in relation to gestational diabetes mellitus. Nutr. Diet., 2019, 76(5), 589-596.
[http://dx.doi.org/10.1111/1747-0080.12512] [PMID: 30680868]
[18]
Karamanos, B.; Thanopoulou, A.; Anastasiou, E.; Assaad-Khalil, S.; Albache, N.; Bachaoui, M.; Slama, C.B.; El Ghomari, H.; Jotic, A.; Lalic, N.; Lapolla, A.; Saab, C.; Marre, M.; Vassallo, J.; Savona-Ventura, C. Relation of the Mediterranean diet with the incidence of gestational diabetes. Eur. J. Clin. Nutr., 2014, 68(1), 8-13.
[http://dx.doi.org/10.1038/ejcn.2013.177] [PMID: 24084515]
[19]
Olmedo-Requena, R.; Gómez-Fernández, J.; Amezcua-Prieto, C.; Mozas-Moreno, J.; Khan, K.S.; Jiménez-Moleón, J.J. Pre-pregnancy adherence to the Mediterranean diet and gestational diabetes mellitus: a case-control study. Nutrients, 2019, 11(5), 1003.
[http://dx.doi.org/10.3390/nu11051003] [PMID: 31052474]
[20]
Bao, W.; Tobias, D.K.; Olsen, S.F.; Zhang, C. Pre-pregnancy fried food consumption and the risk of gestational diabetes mellitus: A prospective cohort study. Diabetologia, 2014, 57(12), 2485-2491.
[http://dx.doi.org/10.1007/s00125-014-3382-x] [PMID: 25303998]
[21]
Schoenaker, D.A.; Mishra, G.D.; Callaway, L.K.; Soedamah-Muthu, S.S. The role of energy, nutrients, foods, and dietary patterns in the development of gestational diabetes mellitus: A systematic review of observational studies. Diabetes Care, 2016, 39(1), 16-23.
[http://dx.doi.org/10.2337/dc15-0540] [PMID: 26696657]
[22]
Park, S.; Kim, M.Y.; Baik, S.H.; Woo, J.T.; Kwon, Y.J.; Daily, J.W.; Park, Y.M.; Yang, J.H.; Kim, S.H. Gestational diabetes is associated with high energy and saturated fat intakes and with low plasma visfatin and adiponectin levels independent of prepregnancy BMI. Eur. J. Clin. Nutr., 2013, 67(2), 196-201.
[http://dx.doi.org/10.1038/ejcn.2012.207] [PMID: 23385969]
[23]
Bowers, K.; Tobias, D.K.; Yeung, E.; Hu, F.B.; Zhang, C. A prospective study of prepregnancy dietary fat intake and risk of gestational diabetes. Am. J. Clin. Nutr., 2012, 95(2), 446-453.
[http://dx.doi.org/10.3945/ajcn.111.026294] [PMID: 22218158]
[24]
Lappas, M.; Hiden, U.; Desoye, G.; Froehlich, J.; Hauguel-de Mouzon, S.; Jawerbaum, A. The role of oxidative stress in the pathophysiology of gestational diabetes mellitus. Antioxid. Redox Signal., 2011, 15(12), 3061-3100.
[http://dx.doi.org/10.1089/ars.2010.3765] [PMID: 21675877]
[25]
Thomas, B.; Ghebremeskel, K.; Lowy, C.; Crawford, M.; Offley-Shore, B. Nutrient intake of women with and without gestational diabetes with a specific focus on fatty acids. Nutrition, 2006, 22(3), 230-236.
[http://dx.doi.org/10.1016/j.nut.2005.07.017] [PMID: 16500549]
[26]
Sun, H.; Dong, H.; Zhang, Y.; Lan, X.; Pang, X.; Cai, C.; Bai, D.; Zhang, J.; Li, F.; Zeng, G. Specific fruit but not total fruit intake during early pregnancy is inversely associated with gestational diabetes mellitus risk: A prospective cohort study. Public Health Nutr., 2021, 24(13), 4054-4063.
[http://dx.doi.org/10.1017/S1368980021001920] [PMID: 33947494]
[27]
Saldana, T.M.; Siega-Riz, A.M.; Adair, L.S. Effect of macronutrient intake on the development of glucose intolerance during pregnancy. Am. J. Clin. Nutr., 2004, 79(3), 479-486.
[http://dx.doi.org/10.1093/ajcn/79.3.479] [PMID: 14985225]
[28]
Wang, Y.; Storlien, L.H.; Jenkins, A.B.; Tapsell, L.C.; Jin, Y.; Pan, J.F.; Shao, Y.F.; Calvert, G.D.; Moses, R.G.; Shi, H.L.; Zhu, X.X. Dietary variables and glucose tolerance in pregnancy. Diabetes Care, 2000, 23(4), 460-464.
[http://dx.doi.org/10.2337/diacare.23.4.460] [PMID: 10857935]
[29]
McGuire, V.; Rauh, M.J.; Mueller, B.A.; Hickock, D. The risk of diabetes in a subsequent pregnancy associated with prior history of gestational diabetes or macrosomic infant. Paediatr. Perinat. Epidemiol., 1996, 10(1), 64-72.
[http://dx.doi.org/10.1111/j.1365-3016.1996.tb00027.x] [PMID: 8746432]
[30]
Bouthoorn, S.H.; Silva, L.M.; Murray, S.E.; Steegers, E.A.; Jaddoe, V.W.; Moll, H.; Hofman, A.; Mackenbach, J.P.; Raat, H. Low-educated women have an increased risk of gestational diabetes mellitus: The Generation R Study. Acta Diabetol., 2015, 52(3), 445-452.
[http://dx.doi.org/10.1007/s00592-014-0668-x] [PMID: 25344768]
[31]
Pan, M.L.; Chen, L.R.; Tsao, H.M.; Chen, K.H. Relationship between polycystic ovarian syndrome and subsequent gestational diabetes mellitus: A nationwide population-based study. PLoS One, 2015, 10(10), e0140544.
[http://dx.doi.org/10.1371/journal.pone.0140544] [PMID: 26488176]
[32]
DeSalvo, K.B.; Olson, R.; Casavale, K.O. Dietary guidelines for Americans. JAMA, 2016, 315(5), 457-458.
[http://dx.doi.org/10.1001/jama.2015.18396] [PMID: 26746707]
[33]
Nissen, S.E. US dietary guidelines: An evidence-free zon. Ann. Intern. Med., 2016, 164(8), 558-559.

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