Many biotransformations of mid- to long chain fatty acyl derivatives are intrinsically interesting because of their high selectivity and novel mechanisms. These include one carbon transfer, hydration, isomerization, hydrogenation, ladderane and hydrocarbon formation, thiolation and various oxidative transformations such as epoxidation, hydroxylation and desaturation. In addition, hydroperoxidation of polyunsaturated fatty acids leads to a diverse array of bioactive compounds. The bioorganic aspects of selected reactions will be highlighted in this review; 210 references are cited
Chain elongation fermentation can be used to convert organic residues into biobased chemicals. This ...
Oleochemistry is a growing field from an industrial point of view, and it is fundamental to more sus...
The lipase-acyltransferase from Candida parapsilosis has been shown to catalyze fatty hydroxamic aci...
Utilisation of fatty acids generally relies on pre-existing functional groups such as the carboxylat...
Desaturation (O 2-dependent dehydrogenation) of long chain fatty acyl derivatives is a ubiquitous bi...
Living organisms are exposed to a number of different fatty acids and their various derivatives aris...
In spite of greater use of oils and fats in the food industry, the other applications have not been ...
β-Oxidation cycle reactions, which are key stages in the metabolism of fatty acids in eucaryotic cel...
Löwe J, Gröger H. Fatty Acid Hydratases: Versatile Catalysts to Access Hydroxy Fatty Acids in Effici...
International audienceA brief Review on the conjugation of fatty acids with some small bioactive mol...
Fatty acid hydratases are unique to microorganisms. Their native function is the oxidation of unsatu...
Isomerizing functionalization reactions that convert the internal double bonds of unsaturated fatty ...
Resumen del trabajo presentado al International Symposium on Green Chemistry (ISGC), celebrado en La...
The oleochemical industry has a permanent interested in controlling the physical, functional and org...
Fatty acid biosynthesis creates highly-reduced hydrocarbons dubbed nature's petroleum. The pathway ...
Chain elongation fermentation can be used to convert organic residues into biobased chemicals. This ...
Oleochemistry is a growing field from an industrial point of view, and it is fundamental to more sus...
The lipase-acyltransferase from Candida parapsilosis has been shown to catalyze fatty hydroxamic aci...
Utilisation of fatty acids generally relies on pre-existing functional groups such as the carboxylat...
Desaturation (O 2-dependent dehydrogenation) of long chain fatty acyl derivatives is a ubiquitous bi...
Living organisms are exposed to a number of different fatty acids and their various derivatives aris...
In spite of greater use of oils and fats in the food industry, the other applications have not been ...
β-Oxidation cycle reactions, which are key stages in the metabolism of fatty acids in eucaryotic cel...
Löwe J, Gröger H. Fatty Acid Hydratases: Versatile Catalysts to Access Hydroxy Fatty Acids in Effici...
International audienceA brief Review on the conjugation of fatty acids with some small bioactive mol...
Fatty acid hydratases are unique to microorganisms. Their native function is the oxidation of unsatu...
Isomerizing functionalization reactions that convert the internal double bonds of unsaturated fatty ...
Resumen del trabajo presentado al International Symposium on Green Chemistry (ISGC), celebrado en La...
The oleochemical industry has a permanent interested in controlling the physical, functional and org...
Fatty acid biosynthesis creates highly-reduced hydrocarbons dubbed nature's petroleum. The pathway ...
Chain elongation fermentation can be used to convert organic residues into biobased chemicals. This ...
Oleochemistry is a growing field from an industrial point of view, and it is fundamental to more sus...
The lipase-acyltransferase from Candida parapsilosis has been shown to catalyze fatty hydroxamic aci...