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Open AccessJournal ArticleDOI

Conjugated linoleic acid is synthesized endogenously in lactating dairy cows by Delta(9)-desaturase.

TLDR
Results demonstrate that endogenous synthesis of CLA from trans-11 18:1 represented the primary source of CLA in milk fat of lactating cows.
Abstract
Conjugated linoleic acid (CLA) is a naturally occurring anticarcinogen found in milk fat and body fat of ruminants. Although CLA is an intermediate in ruminal biohydrogenation of linoleic acid, we hypothesized that its primary source was from endogenous synthesis. This would involve Delta(9)-desaturase and synthesis from trans-11 18:1, another intermediate in ruminal biohydrogenation. Our first experiment supplied lactating cows (n = 3) with trans-11 18:1 by abomasal infusion and examined the potential for endogenous synthesis by measuring changes in milk fat CLA. By d 3, infusion of trans-11 18:1 resulted in a 31% increase in concentration of cis-9, trans-11 CLA in milk fat, demonstrating that an active pathway for endogenous synthesis of CLA exists. Our second experiment examined the quantitative importance of endogenous synthesis of CLA in lactating cows (n = 3) by abomasally infusing a putative stimulator (retinol palmitate) or an inhibitor (sterculic oil) of Delta(9)-desaturase. Infusion of retinol palmitate had no influence on milk fatty acid desaturation, and yield of CLA in milk fat was not altered. However, sterculic oil infusion decreased the concentration of CLA in milk fat by 45%. Consistent with Delta(9)-desaturase inhibition, the sterculic oil treatment also altered the milk fat concentration of other Delta(9)-desaturase products as indicated by the two- to threefold increase in the ratios of 14:0 to 14:1(,) 16:0 to 16:1 and 18:0 to cis-18:1. Using changes in the ratio of 14:0 to 14:1 as an indication of the extent of Delta(9)-desaturase inhibition with the sterculic oil treatment, an estimated 64% of the CLA in milk fat was of endogenous origin. Overall, results demonstrate that endogenous synthesis of CLA from trans-11 18:1 represented the primary source of CLA in milk fat of lactating cows.

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Citations
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Journal ArticleDOI

Content of trans c18:1 and trans c18:2 isomers and cis9trans11 c18:2 (cla) in fat blends

TL;DR: In this article, the content of Trans C18:1, Trans C 18:2 and cis9trans11 C18 :2 in the marketed fat blends was evaluated by capillary gas chromatography and silver thin-layer chromatography.

Konjuge Linoleik Asidin Ruminatlarda Biyosentezi, Fizyoloji ve Lipid Metabolizması Üzerine Etkileri

Ladine Çelik
TL;DR: Biyosentezi et al. as discussed by the authorsizyoloji ve Lipid Metabolizmasi Uzerine Etkileri, Fizyolab et al., 2014
Book ChapterDOI

Organic milk: does it confer health benefits?

TL;DR: However, dairy production with low (or no) antibiotic use and forage feeding are not the sole preserve of organic registration, although inspection and certification offers confidence in tracing the provenance of the food on offer.
Book ChapterDOI

Does modifying dairy fat composition by changing the diet of the dairy cow provide health benefits

TL;DR: It is highlighted that the possible interaction between the dairy ‘food matrix’ and the effects of changing the fatty acid composition of dairy foods should be considered in future studies to ensure a more accurate insight into cardiometabolic health-dairy food associations.
References
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Journal ArticleDOI

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Journal ArticleDOI

Dietary sources of conjugated dienoic isomers of linoleic acid, a newly recognized class of anticarcinogens

TL;DR: In this article, an improved method for quantifying linoleic acid (CLA) in food was developed, which was used to produce a data base of more than 90 food items including meat, poultry, seafood, dairy products, plant oils, and infant and processed foods.
Journal ArticleDOI

A simple procedure for rapid transmethylation of glycerolipids and cholesteryl esters

TL;DR: A simple procedure suitable for rapid transmethylation of triacylglycerols, other neutral lipids, and glycerophospholipids is described, which can occur within a few minutes with no hydrolysis.
Journal ArticleDOI

Regulation of stearoyl-coa desaturase by polyunsaturated fatty acids and cholesterol

TL;DR: The goal of this review is to provide an overview of the genetic regulation of the stearoyl-CoA desaturase in response to dietary polyunsaturated fatty acids and cholesterol.
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