Hepatic triacylglycerol synthesis during a period of fatty liver development in sheep. 1988

T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
State University of Utrecht, the Netherlands.

Fatty liver was induced in six sheep by fasting and treatment with phloridzin and epinephrine. Treatment was associated with a rise in the concentration in serum and hepatic uptake of nonesterified fatty acid (NEFA) compared with pretreatment (P less than .01). At 24 h after the start of the treatment, concentrations of serum lipoprotein in each density class were not different from baseline, but all were elevated (P less than .01) by 120 h of treatment. Hepatic triacylglycerol (TG) concentration increased (P less than .01) 17-fold within the first 48 h of treatment, with no additional increase during the remaining 72 h. The activity of phosphatidate phosphohydrolase (PAP) in hepatic microsomes increased (P less than .01) fourfold over baseline by 48 h of treatment, then declined slightly by 120 h. The activities of diacylglycerol acyltransferase (DGAT) and glycerolphosphate acyltransferase (GPAT) in hepatic microsomes increased during treatment but appeared to follow a slightly different pattern from that of PAP. Activity of GPAT was not above baseline at 48 h, but was at 120 h (P less than .05); DGAT activity was increased (P less than .05) twofold at 48 h, with an apparent continued increase (P less than .01) to threefold over baseline by 120 h of treatment. Fatty liver appeared to develop during a period of rapid hepatic uptake of NEFA without a corresponding increase in serum lipoprotein concentrations. The activities of PAP, GPAT and DGAT, putative regulators of TG synthesis rate, all increased in liver microsomes during a period of high hepatic NEFA uptake, but that of PAP appeared to coincide most closely with the development of fatty liver.

UI MeSH Term Description Entries
D007262 Infusions, Intravenous The long-term (minutes to hours) administration of a fluid into the vein through venipuncture, either by letting the fluid flow by gravity or by pumping it. Drip Infusions,Intravenous Drip,Intravenous Infusions,Drip Infusion,Drip, Intravenous,Infusion, Drip,Infusion, Intravenous,Infusions, Drip,Intravenous Infusion
D007279 Injections, Subcutaneous Forceful administration under the skin of liquid medication, nutrient, or other fluid through a hollow needle piercing the skin. Subcutaneous Injections,Injection, Subcutaneous,Subcutaneous Injection
D008074 Lipoproteins Lipid-protein complexes involved in the transportation and metabolism of lipids in the body. They are spherical particles consisting of a hydrophobic core of TRIGLYCERIDES and CHOLESTEROL ESTERS surrounded by a layer of hydrophilic free CHOLESTEROL; PHOSPHOLIPIDS; and APOLIPOPROTEINS. Lipoproteins are classified by their varying buoyant density and sizes. Circulating Lipoproteins,Lipoprotein,Lipoproteins, Circulating
D008099 Liver A large lobed glandular organ in the abdomen of vertebrates that is responsible for detoxification, metabolism, synthesis and storage of various substances. Livers
D010695 Phlorhizin Phloridzin,Phlorizin
D004837 Epinephrine The active sympathomimetic hormone from the ADRENAL MEDULLA. It stimulates both the alpha- and beta- adrenergic systems, causes systemic VASOCONSTRICTION and gastrointestinal relaxation, stimulates the HEART, and dilates BRONCHI and cerebral vessels. It is used in ASTHMA and CARDIAC FAILURE and to delay absorption of local ANESTHETICS. Adrenaline,4-(1-Hydroxy-2-(methylamino)ethyl)-1,2-benzenediol,Adrenaline Acid Tartrate,Adrenaline Bitartrate,Adrenaline Hydrochloride,Epifrin,Epinephrine Acetate,Epinephrine Bitartrate,Epinephrine Hydrochloride,Epinephrine Hydrogen Tartrate,Epitrate,Lyophrin,Medihaler-Epi,Acetate, Epinephrine
D005234 Fatty Liver Lipid infiltration of the hepatic parenchymal cells resulting in a yellow-colored liver. The abnormal lipid accumulation is usually in the form of TRIGLYCERIDES, either as a single large droplet or multiple small droplets. Fatty liver is caused by an imbalance in the metabolism of FATTY ACIDS. Liver Steatosis,Steatohepatitis,Steatosis of Liver,Visceral Steatosis,Liver Steatoses,Liver, Fatty,Steatohepatitides,Steatoses, Liver,Steatoses, Visceral,Steatosis, Liver,Steatosis, Visceral,Visceral Steatoses
D005260 Female Females
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D012756 Sheep Any of the ruminant mammals with curved horns in the genus Ovis, family Bovidae. They possess lachrymal grooves and interdigital glands, which are absent in GOATS. Ovis,Sheep, Dall,Dall Sheep,Ovis dalli

Related Publications

T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
October 1995, Journal of dairy science,
T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
October 1978, Acta physiologica Scandinavica,
T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
June 1988, Journal of animal science,
T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
November 1986, Mechanisms of ageing and development,
T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
September 2009, European journal of clinical investigation,
T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
January 1973, Biology of the neonate,
T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
June 1985, Archives internationales de physiologie et de biochimie,
T H Herdt, and T Wensing, and H P Haagsman, and L M van Golde, and H J Breukink
January 1984, Experimental pathology,
Copied contents to your clipboard!