Effect of several dietary levels of o,p'-DDT on reproduction and lactation in the rat.
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Biomedical subjects
Publications and source records attributed to J Bitman.
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Changes in lipid composition of mammary secretions of five women were studied at two prepartum periods and compared with composition of colostrum, transitional, and mature human milk. Fat content was approximately 1 g/dl during early (-42.0 days before parturition) and late (-9.5 days) prepartum periods and increased to 3-4 g/dl in colostrum (3.0 days post partum), transitional (7.2 days), and mature milk (56.2 days). Most of the lipid present was triglyceride either pre- (93%) or post- (97%) partum. All fat globule core lipids, with the exception of 1,3-diglycerides, increased from prepartum concentrations to levels usually found in milk. Prepartum secretions contained higher amounts of the membrane components, phospholipid (3.2 g/dl), cholesterol (2.3 g/dl), and cholesteryl ester (1.1 g/dl), which declined postpartum to 0.65, 0.37, and 0.09 g/dl, respectively. Thus, the content of core lipids exhibited an opposite pattern to the content of membrane lipids pre- and postpartum. With regard to synthesis of fatty acids, prepartum secretory mechanisms appeared to be very similar to those occurring postpartum since fatty acid composition of prepartum secretions closely resembled that of postpartum milk.
Milk was obtained on postpartum days 2-3 (colostrum) and days 7, 21, 42, and 84 from mothers of 18 very premature (VPT, 26-30 weeks gestational age), 28 premature (PT, 31-36 weeks), and 6 term (T, 37-40 weeks) infants. Lipids were extracted in chloroform-methanol and analyzed by thin-layer (TLC) and gas liquid chromatography (GLC). Fatty acid composition of cholesteryl esters was determined by GLC after isolation of cholesteryl esters by preparative TLC and preparation of methyl esters of the constituent fatty acids. As lactation progressed, amounts of total cholesterol and cholesteryl esters declined. Cholesteryl esters decreased from about 5 mg/dl in colostrum to 1 mg/dl in mature milk. The cholesteryl esters of colostrum from mothers of premature infants were different in fatty acid composition from those of term infants. Proportions of medium-chain saturated fatty acids (12:0, 14:0, 16:0) of preterm colostrum (VPT and PT) were considerably lower than in term colostrum: 23% of total fatty acids versus 35%. Proportions of 18:3, 20:3, and 20:4 of VPT (5.6%) and PT (6.2%) colostrum were considerably higher than T colostrum (1.8%). The fatty acid composition of cholesteryl esters of VPT, PT, and T milk was relatively similar at all subsequent lactation periods. Fatty acids esterified with cholesterol in weight percents were as follows: 10:0, 0.7; 12:0, 2.6; 14:0, 2.3; 16:0, 11.4; 16:1, 5.0; 18:0, 8.8; 18:1, 32.9; 18:2, 30.6; 18:3, 1.7; 20:3, 0.9; and 20:4, 1.8. Unsaturated fatty acids contributed 73 wt % of fatty acids in cholesteryl esters, which is considerably higher than in milk triglycerides. The greatest difference occurred in 18:2 content, which was 30.6% in cholesteryl esters and only 13.0% of total fatty acids in milk. Results suggest that unsaturated fatty acids are associated preferentially with the cholesteryl ester fraction and that the fatty acid composition of cholesteryl esters differs from the composition of total milk lipid.