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1.
Br J Nutr ; 111(5): 773-84, 2014 Mar 14.
Article in English | MEDLINE | ID: mdl-24128654

ABSTRACT

The gut microbiota plays an important role in the development of the immune and gastrointestinal systems of infants. In the present study, we investigated whether increased salmon consumption during pregnancy, maternal weight gain during pregnancy or mode of infant feeding alter the markers of gut immune defence and inflammation. Women (n 123) who rarely ate oily fish were randomly assigned to continue consuming their habitual diet or to consume two 150 g portions of farmed salmon per week from 20 weeks of pregnancy to delivery. Faecal samples were collected from the mothers (n 75) at 38 weeks of gestation and from their infants (n 38) on days 7, 14, 28 and 84 post-partum. Fluorescence in situ hybridisation was used to determine faecal microbiota composition and ELISA to measure faecal secretory IgA (sIgA) and calprotectin concentrations. There was no effect of salmon consumption on maternal faecal microbiota or on maternal or infant faecal sIgA and calprotectin concentrations. The degree of weight gain influenced maternal faecal microbiota, and the mode of infant feeding influenced infant faecal microbiota. Faecal samples collected from infants in the salmon group tended to have lower bacterial counts of the Atopobium cluster compared with those collected from infants in the control group (P=0·097). This difference was significant in the formula-fed infants (P< 0·05), but not in the exclusively breast-fed infants. In conclusion, the impact of oily fish consumption during pregnancy on maternal and infant gut microbiota composition is limited, but significant differences are associated with maternal weight gain during pregnancy and mode of infant feeding.


Subject(s)
Immunity, Mucosal , Immunoglobulin A, Secretory/analysis , Intestines/microbiology , Leukocyte L1 Antigen Complex/analysis , Prenatal Nutritional Physiological Phenomena , Salmon , Seafood , Adult , Animals , Biomarkers/analysis , Child Development , Feces/chemistry , Feces/microbiology , Female , Humans , Hypersensitivity/epidemiology , Hypersensitivity/prevention & control , Infant Nutritional Physiological Phenomena , Infant, Newborn , Intestines/growth & development , Intestines/immunology , Pregnancy , Risk , Seafood/adverse effects , Single-Blind Method , United Kingdom/epidemiology , Weight Gain
2.
Br J Nutr ; 109(11): 1949-61, 2013 Jun.
Article in English | MEDLINE | ID: mdl-23148871

ABSTRACT

Breast milk fatty acid composition may be affected by the maternal diet during gestation and lactation. The influence of dietary and breastmilk fatty acids on breast milk immune factors is poorly defined. We determined the fatty acid composition and immune factor concentrations of breast milk from women residing in river/lake, coastal and inland regions of China, which differ in their consumption of lean fish and oily fish. Breast milk samples were collected on days 3­5 (colostrum), 14 and 28 post-partum (PP) and analysed for soluble CD14 (sCD14), transforming growth factor (TGF)-b1, TGF-b2, secretory IgA (sIgA) and fatty acids. The fatty acid composition of breast milk differed between the regions and with time PP. The concentrations of all four immune factors in breast milk decreased over time, with sCD14, sIgA and TGF-b1 being highest in the colostrum in the river and lake region. Breast milk DHA and arachidonic acid (AA) were positively associated, and g-linolenic acid and EPA negatively associated, with the concentrations of each of the four immune factors. In conclusion, breast milk fatty acids and immune factors differ between the regions in China characterised by different patterns of fish consumption and change during the course of lactation. A higher breast milk DHA and AA concentration is associated with higher concentrations of immune factors in breast milk, suggesting a role for these fatty acids in promoting gastrointestinal and immune maturation of the infant.


Subject(s)
Diet , Fatty Acids/chemistry , Immunologic Factors/chemistry , Milk, Human/chemistry , Milk, Human/immunology , Adult , China , Cross-Sectional Studies , Demography , Fatty Acids/metabolism , Female , Food Analysis , Humans , Immunologic Factors/metabolism , Lakes , Milk Proteins/analysis , Milk, Human/metabolism , Oceans and Seas , Pregnancy , Rivers , Young Adult
3.
J Nutr ; 142(8): 1603-10, 2012 Aug.
Article in English | MEDLINE | ID: mdl-22739373

ABSTRACT

Fish oil supplementation during pregnancy alters breast milk composition, but there is little information about the impact of oily fish consumption. We determined whether increased salmon consumption during pregnancy alters breast milk fatty acid composition and immune factors. Women (n = 123) who rarely ate oily fish were randomly assigned to consume their habitual diet or to consume 2 portions of farmed salmon per week from 20 wk of pregnancy until delivery. The salmon provided 3.45 g long-chain (LC) (n-3) PUFA/wk. Breast milk fatty acid composition and immune factors [soluble CD14, transforming growth factor-ß (TGFß)1, TGFß2, and secretory IgA] were analyzed at 1, 5, 14, and 28 d postpartum (PP). Breast milk from the salmon group had higher proportions of EPA (80%), docosapentaenoic acid (30%), and DHA (90%) on d 5 PP compared with controls (P < 0.01). The LC (n-6) PUFA:LC (n-3) PUFA ratio was lower for the salmon group on all days of PP sampling (P ≤ 0.004), although individual (n-6) PUFA proportions, including arachidonic acid, did not differ. All breast milk immune factors decreased between d 1 and 28 PP (P < 0.001). Breast milk secretory IgA (sIgA) was lower in the salmon group (d 1-28 PP; P = 0.006). Salmon consumption during pregnancy, at the current recommended intakes, increases the LC (n-3) PUFA concentration of breast milk in early lactation, thus improving the supply of these important fatty acids to the breast-fed neonate. The consequence of the lower breast milk concentration of sIgA in the salmon group is not clear.


Subject(s)
Fatty Acids/chemistry , Immunoglobulin A/chemistry , Milk, Human/chemistry , Salmon , Adult , Animals , Diet , Fatty Acids/metabolism , Feeding Behavior , Female , Humans , Immunoglobulin A/metabolism , Meat , Pregnancy
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