Comparison of the lipolysis of chylomicron remnants derived from corn oil or olive oil by hepatic lipase in vitro.
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Publications and source records attributed to A Cantafora.
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The uptake and processing of high-density lipoprotein (HDL) unesterified and esterified cholesterol were compared in vivo in the rat. HDL labelled with 3H in either unesterified cholesterol or cholesteryl ester was administered intravenously, and the clearance of radioactivity from the blood, its distribution in plasma lipoprotein density fractions, uptake by tissues, and appearance in bile were studied at intervals up to 180 min. 3H in HDL unesterified cholesterol was cleared more rapidly from the blood than that in HDL cholesteryl ester, and this difference was mainly due to rapid sequestration of [3H]unesterified cholesterol by the liver, with 58.2% of the administered dose found in this tissue after 10 min, compared to 6.8% of the [3H]cholesteryl ester dose. Non-hepatic tissues took up only a small proportion of the administered label from both HDL unesterified and esterified cholesterol, but on a per gram wet weight basis, the specific uptake of HDL cholesteryl ester in the adrenal glands and the spleen was higher than in the liver, particularly in the first 60 min. The distribution of radioactivity in the plasma lipoprotein density fractions remained constant between 10 and 180 min when [3H]unesterified cholesterol was used, but the proportion of plasma radioactivity from HDL labelled in esterified cholesterol in the very-low-density lipoprotein (VLDL) fraction increased from 0% to 26%, while in HDL there was a shift in the distribution of radioactivity from the most (d 1.125-1.250 g/ml) to the least (d 1.050-1.085 g/ml) dense sub-fractions. A greater percentage of the administered label from HDL unesterified cholesterol (8.8%) than from HDL cholesteryl ester (3.3%) was secreted into bile during 180 min, but the proportions secreted in bile acids and unesterified cholesterol were similar with both labels. These findings indicate that there are significant differences in the uptake and processing of HDL unesterified as compared to esterified cholesterol in the rat in vivo.
Crystal observation time is a rough estimate of the first microscopic appearance of cholesterol monohydrate crystals in an isotropic bile, and does not provide information on crystal growth kinetics. We have developed a method for quantitating cholesterol crystal growth in gallbladder bile. Crystals were separated from other biliary particles by ultracentrifugation on a discontinuous NaBr gradient, after bile density adjustment to d = 1.060 g/ml. More than 95% of crystals, both of native or synthetic source, floated in the density range 1.045-1.055. This density fraction was collected and crystal mass was measured by photometric turbidity, after calibration with suspensions of different-sized cholesterol crystals. The recovery of crystals added to original bile samples averaged 96.0 +/- 2.8%. Contamination with vesicles, which may potentially interfere with the turbidimetric assay, was excluded by gel-chromatography. The method was sequentially applied, until the 20th day of incubation, to biles obtained at surgery from patients with (A, n = 6) or without cholesterol gallstone (B, n = 4), and from gallstone patients pretreated for 1 week with oral ursodeoxycholic acid (C, n = 5). Crystal growth curves greatly differed, being much steeper in group A and almost flat in patients receiving ursodeoxycholic acid. The mean percent mass of biliary cholesterol in crystalline form at the 20th day was 19.2 +/- 13.5%, 1.2 +/- 0.8% and 2.7 +/- 1.1% in A, B and C, respectively (A vs. B: P = 0.014; A vs. C: P = 0.008). We conclude that the method allows a precise estimate of cholesterol crystal growth and can be usefully applied to human gallbladder biles.
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We have shown previously that the age-dependent increase in plasma cholesterol levels observed in male Wistar rats is associated with relevant changes in the lipoprotein pattern (in particular, with a much higher proportion of the HDL1 class) that are evident in animals from the age of 9 months. In this study, the possibility that a decreased catabolism of HDL1 cholesterol may cause this is evaluated by infusing this lipoprotein fraction labeled with [14C]cholesterol into both young (3.5 +/- 0.5 months) and adult (13.0 +/- 1.0 months) male Wistar rats with a permanent biliary drainage. The clearance of radioactivity from the blood compartment was slower in the older animals than in the younger ones. Conversely, the incorporation of radioactivity into plasma cholesteryl esters and the secretion of radioactivity into bile was higher in the younger animals. These results support the hypothesis that the age-related increase in HDL1 proportion is due, at least in part, to a slower liver catabolism of HDL1-cholesterol.
As part of a study of the effects of aging on lipoprotein metabolism, the uptake and processing in vivo of cholesterol from high density lipoprotein (HDL) was compared in young (3 months of age) and mature (10-12 months of age) rats by studying the fate of HDL [3H] unesterified cholesterol or [3H] cholesteryl ester after intravenous administration. Radioactivity from [3H] unesterified cholesterol was cleared from the blood more slowly in older rats, and this difference was accounted for by decreased uptake by the liver. Uptake by other tissues were unaffected. In addition, a shift in the distribution of radioactivity across the plasma lipoprotein density range from the d = 1.125-1.250 g/ml (HDL3) to the d = 1.050-1.085 g/ml (HDL1) fraction was observed in the mature as compared to the young rat group. The secretion of radioactivity from [3H] unesterified cholesterol into bile was also decreased in the older animals, particularly in the first hour after injection of the label. In the case of HDL labeled with [3H] cholesteryl ester, clearance from the blood was similar in both age groups in the first 30 min after injection, but was significantly lower in older rats at later time points. After 180 min, less radioactivity was found in the VLDL density fraction in mature as compared to young rats, suggesting that hepatic secretion of VLDL cholesterol originating from HDL cholesteryl ester is less efficient in the older animals. The amount of radioactivity from HDL [3H] cholesteryl ester secreted in bile was less in the mature rat group at all time points measured.(ABSTRACT TRUNCATED AT 250 WORDS)
Insulin-induced down-regulation of erythrocyte insulin receptors is a simplified model that can provide useful information on the cell surface regulative phenomena and on role of the plasma membrane and cytoskeleton in such physiological processes. Oxidative imbalance was examined since it was shown to play an important role in numerous cellular pathologies as well as in cell aging. Specifically, the free radical inducer menadione was used in order to evaluate if this compound is able to modify (and in which manner) the down-regulation process. Biochemical, biophysical, and ultrastructural approaches were used. The results obtained seem to indicate that menadione-induced oxidative damage was able to decrease the insulin-induced down-regulation process, as measured by binding assays. This effect was accompanied by slight alterations in plasma membrane ultrastructure and insignificant variations in plasma membrane lipid composition. In addition, the decrease in membrane order, measured by electron paramagnetic resonance, which was shown to usually occur during the process of down-regulation, was not observed. In contrast, cytoskeletal protein assembly, as previously shown in other in vitro systems, appeared to be remarkably altered. Such changes in specific cytoskeletal elements could lead to the decrease of down-regulation phenomenon induced by menadione. Changes in electrophoretic pattern of some cytoskeletal proteins (e.g., spectrin) reinforce this hypothesis. Considering the importance of free radicals in cell injury, data reported here could represent a specific example of a general mechanism by which cell surface receptor expression and recycling can be modified by changes in some intracellular molecule redox status and cell ionic homeostasis.
Small aliquots of rat high-density lipoproteins (HDL) (388 +/- 67 nmol lipoprotein cholesterol) were labeled with [14C]cholesterol and administered as a bolus to perfused rat livers. Bile and perfusate samples were collected for 2 hours at 30-minute intervals. After perfusion, both the microsomes and lipid extracts were prepared from the livers. Lipid composition was examined in both liver and microsomes, and 3-hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA) reductase activity was evaluated in microsomes. Basal values of bile flow, lipid composition, and enzyme activity were evaluated using livers in which perfusion was discontinued before injecting the lipoprotein. In some experiments, the effect of perfusion per se was assessed by infusing saline instead of lipoprotein. After 10 minutes of lipoprotein perfusion, 50% of cholesterol administered was taken up by the perfused liver. During infusion, transient but significant increases in both bile flow and bile steroid secretion were observed. Cholesterol administration, even if rapid, represented less than 0.4% of total liver cholesterol content. However, this was enough to significantly increase the cholesterol to phospholipid (CH/PL) molar ratio in liver microsomes and at the same time decrease HMG-CoA reductase activity. In conclusion, the main response of the perfused liver to HDL cholesterol infusion is a reduced activity of the rate-limiting enzyme in cholesterol biosynthesis, due to the shift in the microsomal CH/PL molar ratio. A small proportion of the infused cholesterol enters bile as cholesterol and bile salts.
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Phosphatidylcholine isolated from samples of bile, liver and plasma was converted into 1,2-diradylglycerobenzoate molecular species by hydrolysis with phospholipase C and reaction with benzoic anhydride. Up to seventeen molecular species were separated and determined by reversed-phase high-performance liquid chromatography with detection at 230 nm. The major improvement introduced here was the use of distearoylphosphatidylcholine as the internal standard, which corrected the results for incomplete hydrolysis and benzoylation. Other improvements concerned the clean-up of benzoyl derivatives and the chromatographic separation. The analytical results obtained were validated by comparison with the results of either lipid phosphorus or gas chromatographic determinations.
We have recently demonstrated, using electron paramagnetic resonance (EPR) spectroscopy, that insulin receptor internalization in response to insulin incubation (down-regulation) in human erythrocytes is accompanied by a transient decrease in membrane order, as measured by the 2T' parallel order parameter. Since membrane lipids play such an important role in receptor internalization, we investigated the possible effects that an alteration of the normally-occurring lipid profile might have on down-regulation and the concomitant transient decrease in membrane order. Consequently, human erythrocytes enriched with cholesterol and erythrocytes from cirrhotic patients were examined, because both of these groups of cells have a higher cholesterol/phospholipid molar ratio (CH/PL) than controls. The 5-nitroxystearate spin label, which inserts into the lipid bilayer of cell membranes, was used to monitor changes in 2T' parallel for a 3-h period at 37 degrees C. We report here that both cholesterol-enriched and cirrhotic erythrocytes do not down-regulate, as demonstrated by binding assays, and that they do not show the typical transient decrease in membrane order observed in controls. The results seem to indicate that a more ordered membrane inhibits internalization of the insulin receptor in erythrocytes, and that an increase in membrane disorder is necessary for insulin receptor down-regulation.
The metabolic fate of cholesterol in chylomicron remnants was studied after intravenous infusion into biliary drained rats. The remnants were radiolabelled with [3H]cholesterol in vivo, so that radioactivity was incorporated into both the unesterified (27% of label) and esterified (73% of label) cholesterol fractions, or with 14C-labelled unesterified cholesterol after exchange in vitro. Blood and bile samples were collected at intervals for 180 min, after which the animals were killed for analysis. The total amount of radioactivity found in the liver (46%) and bile (4.5%) after infusion of [3H] remnants was higher than that found when the label was 14C (33 and 2.7%, respectively). Radioactivity from 14C-labelled unesterified cholesterol was cleared more rapidly from the blood, but the distribution of the label between the lipoprotein fractions VLDL + LDL, HDL2 and HDL3 at the end of the experiment was similar to that found when total [3H]cholesterol was used. In experiments with both types of label, approximately 94% of the total radioactivity secreted into bile was associated with the bile acid, with only about 6% in biliary unesterified cholesterol, and these proportions did not change during 180 min. When the chylomicron remnants were labelled with total [3H]cholesterol the specific radioactivity of the bile acid, taurochenodeoxycholic acid, in the bile was approximately twice that observed when the label was unesterified [14C]cholesterol. The specific radioactivity of unesterified biliary cholesterol was very low in the latter case, but higher and more comparable to that of taurochenodeoxycholic acid in the former. Thus, the metabolic fate of chylomicron remnant cholesterol differs, depending on whether it is in the esterified or unesterified form, suggesting that hepatic cholesterol originating from the two fractions may mix to a different extent with the various intracellular pools. In addition, the experiments with 14C indicate that the behaviour of chylomicron remnant unesterified cholesterol resembles that exhibited by cholesterol in HDL more than that carried in VLDL or LDL.
The effects of HDL1 lipoprotein infusion on biliary lipid secretion were studied in the in vitro model of rat perfused liver. A strong increase in bile flow was observed during and after lipoprotein infusion. This caused a significant rise in cholesterol, phospholipid and bile salt secretions. However, only the percentage of cholesterol increased with respect to the other bile lipids. The changes observed in the cholesterol/phospholipid molar ratio values of liver membrane subfractions (i.e., liver plasma membrane, mitochondria plus lysosomes and microsomes) isolated from the perfused rat liver after HDL1 administration were not significant.
It has been suggested that qualitative changes in bile phosphatidylcholine (lecithin) play a role in the pathogenesis of cholesterol gallstones. We investigated the possible relationship between the molecular composition and hydrophobicity of biliary lecithins and bile cholesterol saturation, nucleation time and the mode of cholesterol transport in human gallbladder bile. Nineteen patients (12 with and seven without gallstones) undergoing abdominal surgery were studied. Bile cholesterol saturation ranged from 77% to 186% (median: 123%) and nucleation time from 1 to 24 days (median: 3 days). Biliary lipid carriers (vesicles and mixed micelles) were separated using Superose-6 gel chromatography and their lipid content was quantitated. Biliary lecithin composition was analyzed by HPLC. Fourteen individual molecular species were detected in the bile: none were related to cholesterol saturation or nucleation time. An arbitrary cumulative index of lecithin hydrophobicity was computed for each bile sample, based on the HPLC capacity factor of the individual species and their percent mole fraction: this index ranged from 47.0 and 58.5 (median: 49) and was unrelated to cholesterol saturation and nucleation time. The biliary concentration of sn-1 palmitoyl:sn-2 arachidonoyl lecithin was significantly correlated (p less than 0.01) with the fraction of cholesterol carried by mixed micelles. This finding suggests that arachidonoyl lecithin may play a modulatory role in the partitioning of cholesterol among biliary carriers. We conclude that major abnormalities in the composition of biliary lecithins are unlikely to play a causative role in the pathogenesis of cholesterol gallstone, although the role of arachidonoyl species requires further investigation.
1. This study compares liver uptake, biliary secretion and blood decay of VLDL, LDL, HDL2 and HDL3 lipoprotein fractions isolated from both rat and human plasma and labelled with [14C]-cholesterol following the i.v. administration to the bile-fistulated rat model. 2. The present results demonstrate that the use of heterologous lipoproteins in bile-fistulated rat can be helpful in administering in a small volume large amounts of free and esterified cholesterol and in evaluating specific aspects of lipoprotein cholesterol metabolism by liver.
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The aim of this study was to determine whether insulin receptor processing capabilities of human erythrocytes could be improved by changing the cell membrane lipid composition using an intravenous infusion of polyunsaturated phosphatidylcholine. Thirteen cirrhotics were submitted to the i.v. infusion of phosphatidylcholine (2 g day-1 for 3 days). Both erythrocyte lipid composition and insulin receptor processing ability were examined at the beginning of the study and at 0, 3 and 11 days after the end of the treatment. This treatment decreased the erythrocyte cholesterol to phospholipid molar ratio and increased the proportion of polyunsaturated fatty acids (mainly linoleic acid) immediately after the end of the treatment. The proportion of arachidonic acid increased immediately in the phosphatidylserine class and, a few days later, also in phosphatidylethanolamine. The phospholipid class distribution did not show any relevant modification in the course of the study. Surface insulin receptors, which generally were up-regulated in the untreated subject (-7.1 +/- 20.4%), showed an improvement in down regulation capabilities that appeared to be well correlated with the changes in lipid composition of cell membranes induced by i.v. infusion of polyunsaturated phosphatidylcholine. The confirmation of these findings also in target cells for insulin may open new perspectives in the treatment of diabetes mellitus.