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Topic:High Density Lipoproteins (HDL)

High Density Lipoproteins (HDL) in horses are complex molecules composed of lipids and proteins that are involved in lipid metabolism and transport. HDL is responsible for the reverse transport of cholesterol from peripheral tissues back to the liver, where it can be processed and excreted. In horses, HDL is the predominant lipoprotein, differing from humans where low-density lipoproteins (LDL) are more prevalent. The composition and function of HDL in horses can provide insights into lipid metabolism and its implications for equine health. This page compiles peer-reviewed research studies and scholarly articles that explore the structure, function, and potential clinical applications of HDL in horses, including its role in metabolic disorders and cardiovascular health.
Comparison Between the Direct Method and Friedewald’s Formula for the Determination of Low-Density Lipoprotein Cholesterol Serum Levels in Horses.
Journal of equine veterinary science    January 24, 2023   Volume 122 104230 doi: 10.1016/j.jevs.2023.104230
Ribeiro RM, Ribeiro DDSF, Cota LO, Carvalho AM, Gobesso AAO, Faleiros RR.This study aimed to compare the use of enzymatic colorimetry and Friedewald's formula for the determination of LDL in horses. A total of 260 samples were used. Direct analysis was performed to determine low-density lipoprotein (LDL), high-density lipoprotein (HDL) cholesterol, triglycerides (TG), and total cholesterol (TC). The LDL level was calculated using the Friedewald equation (LDL= TC-HDL-TG/5). The correlations between the direct LDL analysis and the LDL calculated using the Friedewald formula were determined by Pearson's tests, and the coefficient of determination was also obtained by ...
Particle Size Distribution of Plasma Lipoproteins in Donkeys from Death Valley Compared to a Sampling of Horses.
Animals : an open access journal from MDPI    October 13, 2022   Volume 12, Issue 20 2746 doi: 10.3390/ani12202746
Goodrich EL, Behling-Kelly E.The clinical evaluation of lipid metabolism in equids is often limited to the measurement of total cholesterol and triglyceride concentrations. This provides a limited picture of metabolic state and general health, given the continuous exchange of lipid species between various lipoproteins. Major lipoprotein classes in equids include high-density lipoprotein (HDL), intermediate-density lipoprotein (IDL), low-density lipoprotein (LDL), very low-density lipoprotein (VLDL), and chylomicrons (CM). Unlike large breed horses, donkeys are highly susceptible to hepatic lipidosis. Currently, serum trig...
Hyperlipidaemia in trypanosomiasis of naturally infected horses: possible cachexia-anorexia syndrome?
Tropical animal health and production    July 27, 2012   Volume 45, Issue 2 417-421 doi: 10.1007/s11250-012-0232-z
Ranjithkumar M, Malik TA, Saxena A, Dan A, Sakthivel PC, Dey S.Trypanosomiasis caused by Trypanosoma evansi commonly produces wasting disease with signs of emaciation and cachexia mainly at the end stage. The present study was conducted to explore the possible hyperlipaemia or hyperlipidaemia and its association with cachexia-anorexia in equine trypanosomiasis. Out of the fifteen confirmed animals, none of the plasma sample was opaque. There was a significant increase in plasma triglyceride, total cholesterol and blood urea nitrogen and a highly significant increase in low-density lipoprotein (LDL) levels. A mild increase in high-density lipoprotein (HDL)...
Characterization of lipoproteins in cerebrospinal fluid of mares during pregnancy and lactation.
American journal of veterinary research    June 14, 2002   Volume 63, Issue 6 886-889 doi: 10.2460/ajvr.2002.63.886
Puppione DL, MacDonald MH.To measure apolipoproteins in cerebrospinal fluid (CSF) from healthy mares and to determine whether CSF concentrations of apolipoproteins change during pregnancy and lactation. Methods: 5 healthy pregnant mares. Methods: 2 sets of CSF samples were obtained; initial samples were obtained 10 to 30 days before parturition (mean, 18 days; median, 17 days), and second samples were obtained 19 to 26 days after parturition (mean, 23 days; median, 23 days). Cerebrospinal fluid was collected from the lumbosacral subarachnoid space of standing horses by use of routine collection techniques. Cerebrospina...
High density lipoprotein cholesteryl ester metabolism in the pony, an animal species without plasma cholesteryl ester transfer protein activity: transfer of high density lipoprotein cholesteryl esters to lower density lipoproteins and the effect of the amount of fat in the diet.
Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology    September 7, 2001   Volume 130, Issue 2 145-154 doi: 10.1016/s1096-4959(01)00416-x
Geelen SN, Lemmens AG, Terpstra AH, Wensing T, Beynen AC.The metabolism of high density lipoprotein cholesteryl esters (HDL CE) was studied in the pony, an animal species without plasma cholesteryl ester transfer protein (CETP) activity. Studies were done in ponies fed a low- (1.5% fat, w/w) and a high-fat diet (11.5%, w/w fat). The ponies fed the high-fat diet had higher plasma HDL CE concentrations (1.08+/-0.15 vs. 0.84+/-0.11 mmol/l, mean+/-S.D., n=6, P<0.01) and plasma lipoprotein lipase (LPL) activities (14.3+/-4.0 vs. 5.7+/-3.4 micromol free fatty acids (FFA)/ml per h, P<0.05) than those on the low-fat diet. Plasma triacylglycerol (TAG) ...
Effects of pregnancy and lactation on plasma lipid and lipoprotein concentrations, lipoprotein composition and post-heparin lipase activities in Shetland pony mares.
Journal of reproduction and fertility    March 1, 1993   Volume 97, Issue 2 563-568 doi: 10.1530/jrf.0.0970563
Watson TD, Burns L, Packard CJ, Shepherd J.The incidence of hyperlipaemia in ponies is highest in mares in late gestation and then early in lactation. Plasma lipid and lipoprotein concentrations were measured to establish the metabolic basis for this and the lipoprotein composition of six healthy Shetland ponies was analysed before pregnancy, in the last six weeks of gestation and one month after foaling. In the pregnant ponies, the concentrations of cholesterol and triglyceride were significantly increased (both P < 0.05) because of increased concentrations of high density lipoproteins (HDL) and very low density lipoproteins (VLDL)...
Effects of unopposed conjugated equine estrogen on lipoprotein composition and apolipoprotein-E distribution.
The Journal of clinical endocrinology and metabolism    November 1, 1992   Volume 75, Issue 5 1250-1254 doi: 10.1210/jcem.75.5.1430085
Muesing RA, Miller VT, LaRosa JC, Stoy DB, Phillips EA.Administration of conjugated equine estrogen to 31 postmenopausal women for 3 months produced 14.6% and 9.4% decreases in low density lipoprotein cholesterol (LDL-C) and apolipoprotein-B (apoB), and 11.5%, 12.7%, and 9.6% increases in high density lipoprotein cholesterol (HDL-C), apoA-I and apoA-II, respectively. Phospholipids of HDL2 and HDL3 were increased 57.9% and 19.3%, respectively, while relatively small increases in cholesterol of the two subfractions were not significant. Compositions of LDL and HDL and its subfractions were altered substantially with estrogen treatment. The proportio...
Comparison of the lipoprotein pattern of the horse, the pony and the lactating and non-lactating cow obtained by a combination of an ultracentrifugation and a precipitation technique.
Comparative biochemistry and physiology. B, Comparative biochemistry    January 1, 1989   Volume 94, Issue 4 735-738 doi: 10.1016/0305-0491(89)90158-2
van Dijk S, Wensing T.1. The serum lipoprotein pattern was studied in four horses, four ponies and in three high producing lactating and three non-lactating cows. The lipoprotein pattern was estimated with a combination of the preparative ultracentrifugation and the heparin-manganese precipitation technique. 2. The lipid composition of the lipoproteins of horse, pony, lactating cow and non-lactating cow was determined. 3. In all three species more than 50% of serum total lipids was found in the HDL fraction. 4. The mean chylomicron fraction in horse and pony was 3.1%. In the cow it varied from 1.5 to 2.5%. 5. Betwe...
Lipid and apolipoprotein distribution as a function of density in equine plasma lipoprotein.
Comparative biochemistry and physiology. B, Comparative biochemistry    January 1, 1989   Volume 93, Issue 2 371-377 doi: 10.1016/0305-0491(89)90094-1
Le Goff D, Pastier D, Hannan Y, Petit E, Ayrault-Jarrier M, Nouvelot A.1. Equine lipoproteins were isolated from plasma by density gradient ultracentrifugation and apolipoprotein composition determined by SDS-polyacrylamide gel electrophoresis. 2. VLDL and IDL were present at low concentration (0.2 mg/ml). Two apoB components of Mr corresponding to human apoB-100 and one apoB-48-like component were represented in VLDL fraction. 3. LDL-1 and LDL-2 subfractions have displayed an almost equal concentration (0.4 mg/ml). Two apoB-100-like components were the major apolipoproteins in each fraction. Small amounts of apoB-48-like component were detectable in LDL-1 and LD...
Characterization of equine plasma lipoproteins after separation by density gradient.
Comparative biochemistry and physiology. B, Comparative biochemistry    January 1, 1987   Volume 87, Issue 3 501-506 doi: 10.1016/0305-0491(87)90044-7
Le Goff D, Nouvelot A, Fresnel J, Silberzahn P.1. Plasma lipoproteins from six thoroughbred horses were separated by density gradient ultracentrifugation. For each sample, lipoprotein bands were visualized by means of a prestained plasma control and characterized by electrophoretic, chemical and morphological analysis. 2. Very low density lipoproteins (VLDL) were isolated at d less than 1.018 g/ml. 3. Two clearly resolved bands were detected in the low density lipoprotein fraction (LDL). The density limits were evaluated as follows: LDL1(1.028 less than d less than 1.045 g/ml) and LDL2(1.045 less than d less than 1.070 g/ml). Marked differ...
Lipid composition and cholesterol esterification in serum lipoprotein fraction of the horse, Equus caballus.
Comparative biochemistry and physiology. B, Comparative biochemistry    January 1, 1979   Volume 63, Issue 3 441-449 doi: 10.1016/0305-0491(79)90275-x
Yamamoto M, Tanaka Y, Sugano M.1. Changes in lipid components of lipoproteins during incubation of horse serum at 37 degrees C were investigated. In non-incubated serum, cholesterol and lecithin existed predominantly in alpha-lipoprotein or in high-density lipoprotein (HDL). Lysolecithin was mainly associated with the fraction with density above 1.21. 2. When serum was separated into alpha- and beta-lipoproteins by the heparin precipitation method after 1 hr incubation, the decrease in alpha-lipoprotein free cholesterol and lecithin was about four times that in beta-lipoprotein counterparts. 3. When serum lipoproteins were ...