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Turnover and aortic uptake of very low density lipoproteins (VLDL) from hypercholesteremic rabbits as a model for testing antiatherosclerotic compounds.

VLDL from hypercholesteremic (HC) rabbits display features which are suggestive of inherent atherogenicity. The lipid composition, compared to that of control VLDL, shows an enrichment of cholesterol esters, which have a very high 18:1/18:2 ratio in their fatty acids, and an increased sphingomyelin content, with decreased PC/Sph ratio. This lipid composition is very similar to that of the atherosclerotic plaqua. Apoprotein peptides of HC VLDL show a predominance of arg-rich proteins, similar to human conditions (Type III hyperlipoproteinemia and hypothyroidism) characterized by early and severe atherosclerosis. Turnover of 125I-labelled HC VLDL is significantly slower than that of control VLDL, both when the lipoprotein is injected into the donor animals and into controls. Conversion of HC VLDL into lipoproteins of higher density is also very small, as compared to control VLDL. Uptake of radioactivity into the aortic wall after injection is about doubled, as compared to control VLDL, when HC rabbits receive HC VLDL. This experimental model suggests that structural modifications of the HC VLDL make them poorly metabolizable, and possible more akin to the recently described arterial lipoprotein complexing factor (ALCF). Metformin was selected as the test compound, because it has been shown to decrease aortic and liver lipid accumulation in cholesterol fed rabbits, while only slightly affecting plasma cholesterol levels. VLDL from rabbits fed cholesterol and metformin (HC+Met), while still enriched in cholesterol esters, have a higher protein content, less sphingomyelin and more phosphatidylethanolamine and phosphatidylinositol than HC VLDL, while fatty acid composition of cholesterol esters does not differ. Turnover of HC+Met VLDL is extremely rapid, with a t1/2 even shorter than that of control VLDL.

Animals

Female steroid hormones and lipoprotein synthesis in the cockerel: effects of progesterone and nafoxidine on the estrogenic stimulation of very low density lipoproteins (VLDL) synthesis.

Since progesterone is known to modulate the effects of estradiol in a number of organ systems, we have studied the effects of the two hormones on very low density lipoproteins (VLDL) synthesis in the cockerel. We have also examined the effect of an estrogen antagonist, nafoxidine-HCl, on the process. When three week-old cockerels were treated with a single injection of estradiol (1 mg) or estradiol (1 mg) + progesterone (2 mg), plasma VLDL increased within 5 h, reached a peak at 48 h and returned to baseline values at 68 h. There was no significant difference between estradiol or estradiol + progesterone treated animals. Liver slices were prepared from similarly treated animals and incubated in vitro with L-[3H]lysine for 2 h. Following homogenization and centrifugation at 105,000 X g, newly synthesized VLDL were quantitiated in the supernatant fluid by immunoprecipitation with a monospecific antibody. Radioactivity incorporated into VLDL was found to increase from low baseline levels to a peak at about 17 h after treatment. There was, again, no significant difference between estradiol and estradiol + progesterone-treated animals. Estrogen priming or progesterone pretreatment also did not significantly alter the VLDL biosynthetic response in liver slices to estradiol alone or in combination with progesterone. When the estrogen-antagonist nafoxidine-HCl (5 mg) was administered simultaneously with estradiol (1 mg), it totally inhibited the VLDL biosynthetic response in liver slices in vitro. The interaction of estradio, progesterone and nafoxidine-HCl on the hepatic synthesis of VLDL should serve as a valuable model for the study of VLDL synthesis and its regulation as well as the mode of action of the sex steroid hormones in the liver.

Animals

The composition of low (LDL) and very low (VLDL) density lipoprotein subfractions in type III hyperlipoproteinaemia: comparison with normal subjects.

The lipid and protein composition of very low density lipoprotein (VLDL) and low density lipoprotein (LDL) subfractions (Sf greater than 100, 60--100 and 20--60 VLDL and Sf 10.4--20, 5.7--12 and 3.5--6.5 LDL) in six subjects with type III hyperlipoproteinaemia (HLP) was compared to that of 12 normal subjects. In type III HLP all VLDL subfractions contained increased concentrations of cholesterol and triglycerides and were relatively enriched in cholesterol. VLDL of Sf 20--60 also contained and increased concentration of B-protein. The tetramethylurea (TMU) soluble apolipoproteins of the VLDL subfractions were separated by polyacrylamide disc gel electrophoresis. In the subjects with type III HLP the proportion of arginine rich protein (ARP) was increased in all subfractions. The concentrations of cholesterol and triglycerides were increased in the LDL subfraction of Sf 10.4--20 and cholesterol was decreased in LDL of Sf 5.7--12, but the ratios of cholesterol to triglycerides were not significantly different from those in the LDL subfractions of the normal subjects and the protein composition was also similar. These results provide further evidence that in type III HLP abnormalities are not confined to the stage of conversion of VLDL to LDL, but occur throughout the VLDL spectrum.

Adult

Interaction of rat plasma very low density lipoprotein with lipoprotein lipase-rich (postheparin) plasma.

Incubation of 125I-labeled very low density lipoprotein (VLDL) with lipoprotein lipase-rich (postheparin) plasma obtained from intact or supradiaphragmatic rats resulted in the transfer of more than 80% of apoprotein C from VLDL to high density lipoprotein (HDL), whereas apoprotein B was associated with lipoprotein of density less than 1.019 g/ml (intermediate lipoprotein). The transfer of 125I-labeled apoprotein C from VLDL to HDL increased with time and decreased in proportion to the amount of VLDL in the incubation system. A relationship was established between the content of triglycerides and apoprotein C in VLDL, whereas the amount of apoprotein C in VLDL was independent of that of other apoproteins, especially apoprotein B. The injection of heparin to rats preinjected with 125I-labeled VLDL caused apoprotein interconversions similar to those observed in vitro. The intermediate lipoprotein was relatively rich in apoprotein B, apoprotein VS-2, cholesterol, and phospholipids and poor in triglycerides and apoprotein C. The mean diameter of intermediate lipoprotein was 269 A (compared with 427 A, the mean Sf rate was 30.5 (compared with 115), and the mean weight was 7.0 X 10(6) daltons (compared with 23.1 X 10(6)). From these data it was possible to calculate the mass of lipids and apoproteins in single lipoprotein particles. The content of apoprotein B in both particles was virtually identical, 0.7 X 10(6) daltons. The relative amount of all other constituents in intermediate lipoprotein was lower than in VLDL: triglycerides, 22%; free cholesterol, 37%; esterified cholesterol, 68%; phospholipids, 41%; apoprotein C, 7%, and VS-2 apoprotein, 60%. The data indicate that (a) one and only one intermediate lipoprotein is formed from each VLDL particle, and (b) during the formation of the intermediate lipoprotein all lipid and apoprotein components other than apoprotein B leave the density range of VLDL to a varying degree. Whether these same changes occur during the clearance of VLDL in vivo is yet to be established.

Animals

[Coronary atherosclerosis and serum lipoproteins].

VLDL triglycerides were increased both in obese patients and obese controls. In lean CHD patients the VLDL triglycerides were higher than in lean controls but lower than in obese CHD patients. CHD patients had lower HDL cholesterol than controls. The lowest HDL cholesterol was observed when VLDL triglycerides were high in both CHD patients and controls. However, the differences in HDL cholesterol between CHD patients and controls with low VLDL triglycerides were more marked. It appears that factors other than VLDL triglycerides may also contribute to the low HDL cholesterol observed in CHD patients. Serum cholesterol and triglycerides did not reflect the more subtle changes occurring in the lipoprotein lipids of CHD patients.

Adult

Lipoprotein spectrum analysis of uremic patients maintained on chronic hemodialysis.

It is known that patients maintained on chronic hemodialysis have elevated plasma lipids. In order to establish whether the type of kidney pathology is related to a specific lipoprotein abnormality, we measured plasma lipoprotein in eight patients with glomerulonephritis, two patients with polycystic kidney disease and nine patients that had been surgically nephrectomized. The concentration and composition of plasma very low density lipoproteins (VLDL), low density lipoproteins (LDL) and high density lipoproteins (HDL) in patients were compared to plasma lipoproteins in a control group. In all patient groups, the lipoprotein alterations appeared identical. VLDL were elevated 3 to 4 fold, LDL were decreased 15--35% and HDL were decreased 30--45% when compared to values of our control group. Since no differences in the lipoprotein spectrum were found among the patient groups, it appears that the hypertriglyceridemia of chronic uremia is due to the uremic state per se and is not related to a specific pathology of the kidney.

Adult

Lipid metabolic studies in oophorectomized women. Effects of three different progestogens.

Ten oophorectomized women (ranging in age from 27 to 45 years, having a mean age of 34.5 years with a standard deviation of 5.3) were given three different progestogens (norgestrel, norethisterone and medroxyprogesterone) in treatment periods of 3 weeks' duration immediately preceded by 3 weeks "wash out" periods. Venous blood samples were drawn before and after each treatment period. Free and total cholesterol, triglycerides and phospholipids were determined in the three lipoprotein fractions: Very low density lipoproteins (VLDL), low density lipoprotein (LDL) and high density lipoprotein (HDL). Individual phosphatides were determined after thin layer chromatography. In addition, the relative fatty acid composition of serum lecithin and cholesterol esters were assessed by gas-liquid-chromatography. Both norethisterone and norgestrel caused a decrease in alpha-lipoprotein cholesterol. The relative fatty acid composition of serum lecithin revealed an increase of biochemical pathway 1 for liver lecithin synthesis on norgestrel and norethisterone but no major changes on medroxyprogesterone. With norgestrel an increase in serum-lysolecithin concomitant with a decrease in lecithin was observed, while the two other progestogens did not induce any significant changes. From the present data it is suggested that the 19-norethisterone derivatives, norethisterone and especially norgestrel, have androgen-like influences on lipid metabolism. Medroxyprogesterone, being a 17-alpha-hydroxyprogesterone, caused less changes and consequently less disturbance of lipid metabolism.

Adult

The influence of crude cottonseed oil in the feed on the blood and egg yolk lipoproteins of laying hens.

Lipovitellin, very low density lipoproteins (VLDL), low density lipoproteins (LDL), high density lipoproteins (HDL), and proteins of d greater than 1.20 were isolated from blood plasma and egg yolks obtained from hens fed a normal diet or one containing 2.5% of crude cottonseed oil. The amounts and compositions of each fraction were determined. Hen blood plasma and egg yolk VLDL and LDL obtained from hens fed a normal diet contained similar levels of lipid, and the fatty acid compositions of those lipids were, for the most part, similar. The percentages of VLDL and LDL in total lipoproteins were similar for plasma and egg yolk obtained from hens fed the normal diet. Separation of VLDL from LDL was not clear-cut in eggs from hens fed the diet which contained crude cottonseed oil. Lipovitellin, as it is isolated from egg yolk, did not appear to be present in any appreciable amount in hen blood plasma. Hen plasma appeared to contain about 10% of a liproprotein d greater than 1.20, the lipid of which was similar in fatty acid composition to that of lipovitellin except for palmitic and oleic acids. Lipids of all the different lipoproteins isolated from plasma and egg yolks of hens fed diets which contained 2.5% of crude cottonseed oil contained more stearic acid and less palmitoleic and oleic acids than did those from normal hens. The increased content of stearic acid increased the density of the lipoproteins so that a larger proportion of the lipoproteins were in the LDL and a smaller proportion were in the VLDL than in lipoproteins from normal plasma and eggs.

Animals

[Effect of clofibrate on lipoprotein-lipids in patients with type IV hyperlipoproteinaemia (author's transl)].

The effect of clofibrate treatment (1.5 g/day for four weeks) on triglycerides, cholesterol and phospholipids in very low density lipoproteins (VLDL), low density lipoproteins (LDL) and high density lipoproteins (HDL) was investigated in 12 patients with type IV hyperlipoproteinaemia. The decrease of serum triglycerides was due to the reduction of VLDL-triglycerides. Furthermore, LDL-hypertriglyceridemia was normalised by clofibrate. -- There existed a significant decrease of VLDL- und HDL-cholesterol as well as of VLDL-phospholipids. The changes in LDL-cholesterol and LDL-phospholipids by clofibrate depended on their initial concentrations which were negatively correlated to the serum triglycerides before treatment. -- The normalisation of lipid concentrations in VLDL and LDI could be explained by a stimulated delipidation of the apo B-lipoproteins.

Adult

The demonstration of very low density lipoprotein in the basal lamina of the granulosa layer in the hen's ovarian follicle.

The isolated basal lamina from the granulosa layer in ovarian follicles of the domestic fowl contains an abundance of spherical particles with a modal cross-sectional diameter of 25-30 nm. The lipid in this basal lamina is predominantly triacylglycerol and its total fatty acid composition resembles that of plasma very low density lipoprotein (VLDL). Immunodiffusion studies and immunoelectrophoresis indicated that this basal lamina contains diffusible antigen identifiable with plasma VLDL. Perfusion with an alkaline buffer displaced the particles from the basal lamina and subsequent perfusion with plasma VLDL in an acidic buffer resulted in the reappearance of particles of similar size and form. Alternatively, when the perfused basal lamina was subsequently perfused with VLDL-free serum, few particulate structures were observed. Measurements of total and VLDL triacylglycerol together with electron microscope studies of the untreated and of the perfused basal lamina provided further evidence for the identification of the majority of particles with plasma VLDL. Other particulate lipoprotein is most probably plasma low density lipoprotein (LDL). These studies demonstrated that this basal lamina is permeable to the circulating VLDL of the laying fowl.

Animals

[Concentration and composition of serum lipoproteins in the fetal rat].

1. Concentration and composition of the "very low density lipoproteins" (VLDL), "low density lipoproteins" (LDL) and "high density lipoproteins" (HDL) and of non-floatable lipids of fetal rat serum (day 22 of pregnancy) were determined by ultracentrifugation, thin-layer chromatographic separation of the floated lipids and quantitation of the lipid and protein moiety. 2. The concentration of VLDL is in the fetal rat by one order of magnitude lower, and that of LDL, 5fold higher than in the adult animal; the concentration of HDL in fetal serum amounts to 60% of the value of adult animals. 3. The composition of LDL and HDL of fetal serum does not differ from that in the serum of adult animals; in contrast, the fetal VLDL have a higher proportion of protein and cholesterol and a lower proportion of triglycerides than the VLDL of adult serum. The electrophoretic mobility of the fetal VLDL is lower than that of adult VLDL.

Animals

Plasma lipoprotein separations by zonal ultracentrifugation.

Procedures for the separation of plasma lipoprotein classes and subclasses by zonal ultracentrifugation are described. The main density classes, very low density lipoproteins (VLDL), low density lipoproteins (LDL) and high density lipoproteins (HDL), in plasma can be separated in a single run for 20 hours. For the isolation of VLDL-LDL a centrifugation time of only 90 minutes is needed. Separations can be performed on plasma volumes varying from 10 to 400 ml in the Ti-14 rotor used; VLDL can in this way be isolated from 400 ml plasma in 30 minutes. The advantages and disadvantages of zonal ultracentrifugation in comparison with the commonly employed differential ultracentrifugation for separation of lipoproteins are discussed.

Centrifugation, Zonal

Interaction of cholesterol ester and triglyceride in human plasma very low density lipoprotein.

The properties of human plasma very low density lipoproteins (VLDL), low density lipoproteins (LDL), and their extracted lipids were compared using calorimetric, X-ray scattering, and polarizing microscopy techniques. Intact LDL, and cholesterol esters isolated from LDL and VLDL each undergo reversible changes in their physical state around body temperature. These transitions are associated with ordered liquid crystalline to liquid phase changes of the cholesterol esters. In contrast to LDL, VLDL has no reversible transitions and shows no evidence of ordered liquid crystalline structures between 10 and 45 degrees C. Therefore, unlike LDL, VLDL does not contain a separate cholesterol ester region capable of undergoing cooperative melting. Solubility studies at 37 degrees C of cholesterol esters and triglyceride isolated from VLDL show that even at a weight ratio of 1:1, which greatly exceeds the relative amount of cholesterol esters in VLDL, cholesterol ester is completely soluble in triglyceride. Thus, the cholesterol ester in VLDL is not sequestered in a separate domain within VLDL, but is dissolved in the liquid core of the particle.

Binding Sites