Fatty acids (FA) are nonrandomly distributed within milk fat triacylglycerols (TAG). Moreover, the structure of milk fat TAG differs with feeding regimens. So far, nothing is known about the variation of milk fat TAG structure among individual cows. A deep understanding of the normal variation of TAG structures and the relationships between milk fat FA profile and its TAG structure could help to better control functional and compositional differences between milk fats from various sources and to increase the knowledge on milk fat synthesis. The focus of the present study was to determine the regiospecific TAG structure of individual samples of winter milk fat from Dutch Holstein-Friesian cows with a wide variation of FA profiles and with 2 ...
The aim of this study was to analyze the effect of fat and protein supplementation to dairy cattle r...
Bovine milk fat (MF) is considered to be one of the most complex fats, as it can consist of 400 FA w...
The objective of this study was to characterize the fatty acids (FA) in milk based on genetic and he...
Fatty acids (FA) are nonrandomly distributed within milk fat triacylglycerols (TAG). Moreover, the s...
Milk fat (MF) triacylglycerols (TAG) determine the physical and functional properties of butter and ...
Milk samples were collected in early lactation (8–14 days in milk; DIM) and late lactation (199–326 ...
Milk fat (MF) triacylglycerol composition varies within a population of dairy cows. The variability ...
Milk fat (MF) triacylglycerol composition varies within a population of dairy cows. The variability ...
Milk fat (MF) triacylglycerol composition varies within a population of dairy cows. The variability ...
In the present study, we aimed to investigate the changes in triacylglycerol (TAG) composition as af...
Pancreatic lipase deacylation was used to study the variation in distribution of the fatty acids at ...
A pair of monozygous twin cows was used to investigate the influence of the increased availability o...
During secretion of milk fat globules, triacylglycerol (TAG) droplets are enveloped by a phospholipi...
The composition and regiodistribution of fatty acids influence the physical and the nutritional prop...
The aim of this study was to analyze the effect of fat and protein supplementation to dairy cattle r...
Bovine milk fat (MF) is considered to be one of the most complex fats, as it can consist of 400 FA w...
The objective of this study was to characterize the fatty acids (FA) in milk based on genetic and he...
Fatty acids (FA) are nonrandomly distributed within milk fat triacylglycerols (TAG). Moreover, the s...
Milk fat (MF) triacylglycerols (TAG) determine the physical and functional properties of butter and ...
Milk samples were collected in early lactation (8–14 days in milk; DIM) and late lactation (199–326 ...
Milk fat (MF) triacylglycerol composition varies within a population of dairy cows. The variability ...
Milk fat (MF) triacylglycerol composition varies within a population of dairy cows. The variability ...
Milk fat (MF) triacylglycerol composition varies within a population of dairy cows. The variability ...
In the present study, we aimed to investigate the changes in triacylglycerol (TAG) composition as af...
Pancreatic lipase deacylation was used to study the variation in distribution of the fatty acids at ...
A pair of monozygous twin cows was used to investigate the influence of the increased availability o...
During secretion of milk fat globules, triacylglycerol (TAG) droplets are enveloped by a phospholipi...
The composition and regiodistribution of fatty acids influence the physical and the nutritional prop...
The aim of this study was to analyze the effect of fat and protein supplementation to dairy cattle r...
Bovine milk fat (MF) is considered to be one of the most complex fats, as it can consist of 400 FA w...
The objective of this study was to characterize the fatty acids (FA) in milk based on genetic and he...