Bibliografia: DHA in gravidanza post partum
Articolo della dott.ssa Stefania Cazzavillan
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· Decsi T, Campoy C, Koletzko B. Effect of N-3 polyunsaturated fatty acid supplementation in pregnancy: the Nuheal trial. InEarly Nutrition and its Later Consequences: New Opportunities: Perinatal Programming of Adult Health—EC Supported Research 2005 (pp. 109-113). Springer Netherlands.
· Imhoff-Kunsch B, Stein AD, Villalpando S, Martorell R, Ramakrishnan U. Docosahexaenoic acid supplementation from mid-pregnancy to parturition influenced breast milk fatty acid concentrations at 1 month postpartum in Mexican women. The Journal of nutrition. 2011 Feb 1;141(2):321-6.
· Helland IB, Saugstad OD, Saarem K, Van Houwelingen AC, Nylander G, Drevon CA. Supplementation of n-3 fatty acids during pregnancy and lactation reduces maternal plasma lipid levels and provides DHA to the infants. The Journal of Maternal-Fetal & Neonatal Medicine. 2006 Jan 1;19(7):397-406
· Basak S, Mallick R, Duttaroy AK. Maternal docosahexaenoic acid status during pregnancy and its impact on infant neurodevelopment. Nutrients. 2020 Nov 25;12(12):3615.
· Gustafson KM, Christifano DN, Hoyer D, Schmidt A, Carlson SE, Colombo J, Mathis NB, Sands SA, Chollet-Hinton L, Brown AR, Mudaranthakam DP. Prenatal docosahexaenoic acid effect on maternal-infant DHA-equilibrium and fetal neurodevelopment: a randomized clinical trial. Pediatric Research. 2022 Jul;92(1):255-64.
· Makrides M, Best K, Yelland L, McPhee A, Zhou S, Quinlivan J, Dodd J, Atkinson E, Safa H, Van Dam J, Khot N. A randomized trial of prenatal n− 3 fatty acid supplementation and preterm delivery. New England Journal of Medicine. 2019 Sep 12;381(11):1035-45.
· Giorlandino C, Giannarelli D. Effect of vaginally administered DHA fatty acids on pregnancy outcome in high risk pregnancies for preterm delivery: a double blinded randomised controlled trial. Journal of prenatal medicine. 2013 Jul;7(3):42.
· Kim HY, Huang BX, Spector AA. Molecular and signaling mechanisms for docosahexaenoic acid-derived neurodevelopment and neuroprotection. International Journal of Molecular Sciences. 2022 Apr 22;23(9):4635.
· Judge MP, Casavant SG, Dias JA, McGrath JM. Reduced DHA transfer in diabetic pregnancies: mechanistic basis and long-term neurodevelopmental implications. Nutrition Reviews. 2016 Jun 1;74(6):411-20.
· Wojcicki JM, Heyman MB. Maternal omega-3 fatty acid supplementation and risk for perinatal maternal depression. The Journal of Maternal-Fetal & Neonatal Medicine. 2011 May 1;24(5):680-6.
· Majou D, Dermenghem AL. DHA (omega-3 fatty acid) increases the action of brain-derived neurotrophic factor (BDNF). OCL. 2024;31:1.
· Majou D, Dermenghem AL. DHA (omega-3 fatty acid) increases the action of brain-derived neurotrophic factor (BDNF). OCL. 2024;31:1.
· Hsu MC, Tung CY, Chen HE. Omega-3 polyunsaturated fatty acid supplementation in prevention and treatment of maternal depression: Putative mechanism and recommendation. Journal of affective disorders. 2018 Oct 1;238:47-61.
· Judge MP, Beck CT, Durham H, McKelvey MM, Lammi-Keefe CJ. Pilot trial evaluating maternal docosahexaenoic acid consumption during pregnancy: Decreased postpartum depressive symptomatology. International Journal of Nursing Sciences. 2014 Dec 1;1(4):339-45
· Cunnane SC, Crawford MA. Survival of the fattest: fat babies were the key to evolution of the large human brain. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology. 2003 Sep 1;136(1):17-26.
· Cunnane SC, Crawford MA. Energetic and nutritional constraints on infant brain development: implications for brain expansion during human evolution. Journal of human evolution. 2014 Dec 1;77:88-98.