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Effects of Chinese herbal drug, dai-saiko-to on plasma lipids, lipoproteins and liver lipid contents in guinea pig.

Effects of Chinese herbal drug, Dai-saiko-to, on plasma lipids, lipoproteins and liver lipid contents were investigated in guinea pig with/without cholesterol feeding. Guinea pigs were divided into 4 groups (Group 1: normal chow (N) diet, Group 2: N + 1% Dai-saiko-to (D) diet, Group 3: 1% cholesterol (C) diet, Group 4: 1% C+ 1% D diet), and were treated for 5 weeks. Significant body weight reductions were observed in Groups 3 and 4 compared to Groups 1 and 2. Significant reductions of plasma triglyceride (TG) and very low and low density lipoproteins [(V) LDL]-TG were found in Group 3 compared to Groups 1, 2, and 4. (HDL)-TG significantly decreased in Groups 3 and 4 compared to Groups 1 and 2, but no significant difference was noted between Groups 1 and 2, and Groups 3 and 4. Liver lipid contents analysis showed no significant changes between Groups 1 and 2, and Groups 3 and 4, respectively, but the distribution of lipid droplets as pathologically determined using a computer program showed Group 4 had less lipid deposition compared to Group 3. These data suggest that Dai-saiko-to acts on triglyceride metabolism in hypercholesterolemic guinea pigs.

Alanine Transaminase↗

Cell-free transfer of membrane lipids. Evidence for lipid processing.

A latent phospholipase A is concentrated in cis elements of rat liver Golgi apparatus, the presumed sites of fusion of the 50-70-nm transition vesicles formed from endoplasmic reticulum. As a result, conversion of transferred phospholipids to their corresponding lysoforms may provide an index of post transfer lipid processing in a corresponding reconstituted membrane transfer system. To label the phosphatidylcholine of transitional endoplasmic reticulum in vitro, [14C]CDP-choline and endogenous cytidyltransferases were used. In the reconstituted transfer system, the radiolabeled phosphatidylcholine was transferred via transition vesicles to Golgi apparatus immobilized on nitrocellulose strips in a time- and temperature-dependent process. Transfer was promoted by ATP and the ATP-dependent transfer was specific for cis Golgi apparatus elements as acceptor. Trans Golgi apparatus elements were ineffective as acceptors. Median Golgi apparatus elements were intermediate. A portion of the transferred phosphatidylcholine was converted subsequently to lysophosphatidylcholine also in a time- and ATP-dependent manner. The phospholipase A activity of the Golgi apparatus was more than 90% latent (active site located on the lumens of the Golgi apparatus membranes). Therefore, the lipid-containing vesicles derived from endoplasmic reticulum must have combined with cis Golgi apparatus membranes as the basis for Golgi apparatus-dependent phospholipase A processing of endoplasmic reticulum-derived phosphatidylcholine. Since the lipids were processed by phospholipase A in approximately the same proportion as occurs in situ, the findings offer evidence both for the specificity of the ATP-dependent component of cell-free lipid transfer from endoplasmic reticulum to Golgi apparatus and its fidelity to lipid transfer observed in vivo.

Adenosine Triphosphate↗

[Evaluation of the effects of lipids isolated from sublimated mare's milk on the indicators of lipid metabolism and fatty acid composition of blood plasma, erythrocyte stroma and liver tissue in rats].

During six weeks rats were given a ration containing, as the only source of fat, lipids of sublimated mare's milk that had been stored with or without antioxidants (quercitrol, bisalcophen) during 3 months. The influence of specific quality of the ration fat on lipids and fatty acid composition of lipids in blood plasma, erythrocytic stroma and liver tissue, as well as on lipid peroxidation in the tissues was studied in the test animals. No changes induced by the lipids from sublimated mare's milk were detected in the parameters studied.

Animals↗

The mechanism of NADPH-dependent lipid peroxidation. The propagation of lipid peroxidation.

NADPH-dependent lipid peroxidation occurs in two distinct sequential radical steps. The first step, initiation, is the ADP-perferryl ion-catalyzed formation of low levels of lipid hydroperoxides. The second step, propagation, is the iron-catalyzed breakdown of lipid hydroperoxides formed during initiation generating reactive intermediates and products characteristic of lipid peroxidation. Propagation results in the rapid formation of thiobarbituric acid-reactive material and lipid hydroperoxides. Propagation can be catalyzed by ethylenediamine tetraacetate-chelated ferrous ion, diethylenetriamine pentaacetic acid-chelated ferrous ion, or by ferric cytochrome P-450. However, cytochrome P-450 is destroyed during propagation.

Animals↗

Effects of prolonged ingestion of glucose or ethanol on tissue lipid composition and lipid biosynthesis in rat.

The effects on lipid metabolism of long-term feeding of large amounts of ethanol or glucose differed from those that have been reported in short-term experiments. Three groups of male rats were investigated. The first was fed lab chow and 15% (v/v) ethanol ad lib.; the second was pair-fed with the first and given isocaloric amounts of glucose in lieu of ethanol; the third was fed lab chow and water ad lib. All three groups consumed nearly the same number of calories, and about 30% of the calories in the first group were derived from ethanol. Neither glucose nor ethanol added to a nutritionally adequate diet promoted the development of a fatty liver, although both stimulated acetate-(14)C utilization for hepatic lipid synthesis. In all three groups more than 80% of the label in hepatic lipid was found in fatty acids, and the distribution of label amongst the fatty acids of different chain lengths was virtually the same. Ethanol decreased while glucose increased the quantity of lipid in fat depots, and each altered the fatty acid composition of the lipids in adipose tissue, kidney, liver, and hepatic subcellular fractions in a different manner. The most striking of these changes was the relative increase in monounsaturated fatty acids and the decrease in essential fatty acids produced by glucose.

Acetates↗

Amniotic fluid total lipids, lipid phosphorus, phospholipids and cholesterol in diabetic women.

Total lipids, lipid phosphorus, phospholipids and cholesterol were determined in amniotic fluid of 36 normals and 6 mothers with diabetes. Total lipids, lipid phosphorus and phospholipids are significantly decreased in diabetic cases and the decrement was more pronounced in the cases with stillbirth or intrapartum deaths or infants with respiratory distress syndrome. Total cholesterol was significantly decreased in the same cases mentioned above. However, in spite of this decrease the ratio of total cholesterol to total lipids was constant except in cases with prolonged intrauterine fetal death where it was increased.

Adult↗

[Basis examinations for pathogenesis and treatment of fat embolism. III. The interface tension of blood against lipids. B. Their influence by addition of surfactants and the effect on the lipid solubility in vitro].

Various surfactants such as Pluronic L 61, L 64, F 68 and F 108, Tween 80 und Triton WR 1339 as well as bile acids and sodium taurocholate were tested for their capacity to reduce the interface tension against neutral lipids and for their capacity to induce stable emulsions of triglycerides in rabbit sera. No positive correlation was found to exist between the interface activity against neutral lipids and the lipid emulsifying capacity of rabbit sera, added with the surfactants. When ether was added to serum, the lipid emulsifying capacity was increased most at concentrations of about 0,0075 g ether per 100 ml serum. This is about 1/10 of the ether concentration, achieved during anesthesia at the stage of tolerance. Pluronic F 108 in non toxic concentrations was the agent increasing the lipid emulsifying capacity of rabbit (and human) sera most efficiently. It proved superior also to ethanol and ether and appears to be the most suitable agent for mobilization of embolized fat in lung vessels.

Animals↗

Binding of apolipoprotein A-I model peptides to lipid bilayers. Measurement of binding isotherms and peptide-lipid headgroup interactions.

Amphiphatic alpha-helices are the lipid-binding motif in many apolipoproteins. Two model peptides, namely Asp-Trp-Leu-Lys-Ala-Phe-Tyr-Asp-Lys-Val-Ala-Glu-Lys-Leu-Lys-Glu-Ala-Phe (18A) and Lys-Trp-Leu-Asp-Ala-Phe-Tyr-Lys-Asp-Val-Ala-Lys-Glu-Leu-Glu-Lys-Ala- Phe (18R), have been synthesized previously to mimic the structural and functional properties of apolipoprotein A-1. Here a quantitative thermodynamic analysis of the binding process of 18A and 18R to neutral and negatively charged lipid membranes is provided. Peptide 18A has a higher lipid affinity than 18R, and both peptides bind better to mixed 1-palmitoyl-2-oleoyl-3-sn-glycero-phosphocholine-1- palmitoyl-2-oleoyl-3-sn-glycero-phosphoglycerol (POPC/POPG) bilayers than to pure POPC bilayers. At lipid-to-peptide ratios > 100, the binding of 18A and 18R to phospholipid bilayers can be described by an apparent surface partition equilibrium with binding constants in the range of 40-900 M-1. At high peptide concentrations, the membrane affinity of 18A and 18R increases dramatically. NMR studies provide evidence that peptide-peptide interactions make additional contributions to the binding energy. A cooperative binding model is developed to describe the binding process over the whole concentration range. The cooperativity parameter sigma is identical for 18A and 18R yielding a peptide-peptide interaction energy of about -2.4 kcal/mol. The free energy of membrane insertion is about -6.5 kcal/mol for 18A and -5.5 kcal/mol for 18R. The binding reaction is driven by the hydrophobic surface energy which is partially balanced by the loss in translational and rotational degrees of freedom. A molecular analysis of the free energy of binding predicts a 40-60% insertion of the peptides into the hydrophobic membrane environment. Deuterium and phosphorus solid state NMR were used to monitor the influence of 18A and 18R on the long range and short range order of the phospholipids. The spectra are characteristic of fluid-like lipid bilayers and provide no evidence for the formation of discoidal particles. However, both peptides change the conformation of the phosphocholine dipoles, moving the N+ end of the latter toward the water phase. The rotation of the -P-N+ dipoles is due to the interaction of the phospholipids with the positive charges on 18A and 18R, with 18A being more effective than 18R. For 18R the NMR data predict a pK shift and a partial charge neutralization of the carboxylate groups located at the edge of the polar/nonpolar interface.

Amino Acid Sequence↗

Effects of protein, lipid, or carbohydrate supplementation on hepatic lipid accumulation during rapid weight loss in obese cats.

Effects of restricted tube-feeding (25% of energy requirements) of protein, lipid, or carbohydrates on body weight loss; hematologic and clinical chemical variables; plasma lipid and amino acid concentrations; nitrogen balance; and hepatic histologic features and lipid concentrations were compared with values in voluntary-fasting cats (control, CON). Twelve obese cats (6.1 +/- 0.1 kg, > 40% above optimal body weight) were randomly assigned to 4 matched treatment groups (n = 3)--protein (PRO), lipid (LIP), carbohydrate (CHO), and CON--and were offered a low-palatability diet for 4 weeks. Cats of the PRO, LIP, and CHO groups were also tube-fed isocaloric amounts (88 kcal of metabolizable energy) of a casein-soybean protein mixture, corn oil, or a dextrin-dextrose mixture, respectively, during the 4 weeks. All cats fasted, rather than eat the low-palatability purified diet. Cats of the PRO group lost weight at a lower rate (P < 0.05) than did cats of other groups. After 4 weeks of fasting, serum alkaline phosphatase activities were higher than reference values in all cats of the CON and LIP groups and in 2 cats of the CHO group. At that time, 1 cat of the LIP group had lethargy, hepatomegaly, and hyperbilirubinemia. Total hepatic lipid and triglyceride concentrations increased in all groups during the study, but the increase was significantly (P < 0.05) less in cats of the PRO group, compared with those of the CON and LIP groups, and those of the CHO group, compared with those of the LIP group.(ABSTRACT TRUNCATED AT 250 WORDS)

Analysis of Variance↗

Subcellular distributions of lipids in cultured BHK cells: evidence for the enrichment of lysobisphosphatidic acid and neutral lipids in lysosomes.

Homogenates of cultured hamster fibroblasts (BHK 21 cells) were fractionated by differential centrifugation into six main fractions: nuclear, mitochondrial, light mitochondrial, microsomal, soluble, and floating. The contents of several lipids and some marker enzymes were measured. According to the enzyme distributions, lysosomes were enriched both in the floating fraction and in the light mitochondrial fraction. Lysobisphosphatidic acid was enriched in the floating fraction more than tenfold relative to phospholipid. Cholesteryl esters and triglycerides were the main constituents of the fraction (70% of total lipids). Lysobisphosphatidic acid, triglycerides, and cholesteryl esters were enriched also in the light mitochondrial fraction. Their distribution patterns were different from those of the other lipids. Electron microscopy showed that the floating fraction contained numerous lipofuscin-like particles with darkly stained peripheries and with core regions staining like droplets of neutral lipids. Similar particles, frequently containing prominent multilamellar formations, were also common in intact cells. They contained cytochemically identified acid phosphatase. We conclude that lysobisphosphatidic acid was enriched in the lysosomes of the BHK cells and that the lysosomes also contained variable amounts of neutral lipids in the form of intralysosomal droplets.

Carboxylic Ester Hydrolases↗

[The relationship between serum lipids, apolipoproteins level and bile lipids level, chemical type of stone].

To pick up serum high risk lithogenic factors predisposing one to gallstone formation and protective factors against gallstone formation in gallbladder. We compared serum lipid and apolipoprotein level of patients with gallbladder stone (stone group) with that of patients without gallbladder stone (control group). The correlation between serum lipid, apolipoprotein level and bile lipid level, cholesterol saturated index (CSI), characteristics of lipidemia in different kinds of gallbladder stones were studied. The results showed that the increase of serum Apo A1, C2 and E level in the stone group was more significant than in the control group. But there was no statistical significance in TC, TG, LDL-C, HDL-C, Apo A2, B, C3 level between the stone and control groups. These results suggested that serum apolipoproteins perhaps are more sensitive parameters than serum lipids in distinguishing patients with stones from those without stones. There were different profiles of serum lipid and apolipoproteins in different chemical types of gallbladder stones. Increased level in serum LDL-C, Apo B and ratio of LDL-C/HDL-C were characterized by an index for cholesterol stone, otherwise that in serum TG and Apo C2 an index for pigment stones. There was a positive correlation between serum total cholesterol (TC) or Apo B, C2, C3 and cholesterol amount or CSI in gallbladder bile. Therefore, TC, Apo B, C2, C3 could be considered as high risk lithogenic factors. A positive correlation existed between serum HDL-C and lecithin in gallbladder or common bile duct (CBD) bile as well as between HDL-C and bile acids in CBD bile. Thus, HDL-C might be a protective factor against gallstone formation in gallbladder.

Adult↗

A rapid procedure for elimination of non-polar lipids hampering the usual polar lipid extraction and TLC separation.

A new and rapid method is proposed for extraction of non-polar lipids from tissues where they are present as abundant components which can interfere with the usual procedures of lipid extraction and TLC separation, and hamper, in particular, sulphatide visualization. A solvent more hydrophobic than chloroform, i.e. n-hexane, was utilized to remove the neutral lipids from samples of female rabbit parotid gland, and the n-hexane phase was used for TLC which showed considerable amounts of cholesterol esters, in addition to triglycerides, diglycerides and monoglycerides. The methanol phase, now devoid of non-polar lipids, was utilized to prepare TLC plates in order to separate and visualize the polar lipid fractions, in particular the sulphatides.

Animals↗

[Program for the study of lipids and lipid groups in human biological fluids and tissues].

A brief survey of the well known and used methods for separate determination of lipids and lipid groups is presented. A systematic course for lipid analysis is proposed. It has two advantages--lipid extract is used and chromatographic technique is applied. The reliability and accuracy of the analytical results are guaranteed. A scheme is presented for the respective links in the systematic course as well as for their practical application in the clinical practice in obtaining maximal information about the lipid state. A comparison is made between the methodical links included in the systematic course (author's own elaboration) and the methods cited in literature.

Cholesterol↗

Lipid peroxidation and alteration of membrane lipids in isolated hepatocytes exposed to carbon tetrachloride.

Lipid peroxidation, determined by malondialdehyde formation, occurs at a low, but detectable, rate in parenchymal cells isolated from livers of fasted rats. Pretreatment of rats with phenobarbital increased malondialdehyde formation about 2-fold, probably because of the increased amount of endoplasmic reticulum. Lipid peroxidation was increased in the cells by the addition of either NADPH or CCl4, and the effect of the two agents together was more than additive. Phenobarbital pretreatment increased peroxidation due to exposure of the cells to CCl4 but not that associated with NADPH addition. The amount of CCl4 producing a 50% increase in malondialdehyde formation was about 3-fold less for cells from phenobarbital-treated rats than for those from control rats. Decreased cytochrome P450 levels in isolated hepatocytes produced by prior treatment of rats with allylisopropylacetamide enhanced lipid peroxidation from endogenous substrates but did not affect lipid peroxidation caused by the addition of NADPH. Allylisopropylacetamide markedly lowered lipid peroxidation caused by CCl4 in proportion to the loss of cytochrome P450. Malondialdehyde production associated with metabolism of endogenous substrates in the cells, or resulting from incubation of the cells with NADPH was not accompanied by changes in the fatty acid or protein content of three membranous fractions (microsomal mitochondrial, and cell debris) isolated from homogenates of these cells. Exposure of liver cells to CCl4, however, caused major losses in all fatty acids and of protein from the microsomal fraction, but only polyunsaturated fatty acids were decreased in the cellular debris fraction. Incubation with NADPH and CCl4 together enhanced malondialdehyde formation, but caused no further decrease in fatty acid content in these two fractions. Mitochondrial fatty acids were not decreased by any treatments described.

Animals↗

Study on body mass index, lipid profile and lipid peroxidation status in coronary artery disease.

Among the many known risk factors of coronary artery disease (CAD) obesity and hypercholesterolaemia are important ones. Whatever may be the risk factor, the basic pathology of CAD is deposition of altered lipids on the endothelium. One of such altered lipid is oxidatively modified low density lipoprotein (LDL). Lipid peroxidation has been assessed by several methods. Quantitation of malondialdehyde (MDA) by thiobarbituric acid (TBA) method is one of the commonly utilised method in several laboratories. In this study 40 cases of CAD were selected for evaluation. The body mass index (BMI), lipid profile and the level of lipid peroxidation (MDA) were measured. Seventeen cases (42.5%) had normal BMI (20-25), 20 cases (50%) were in the overweight range of BMI (26-30) and only 3 cases (7.5%) were in the obese group with a BMI more than 30. BMI correlated better with the level of total cholesterol (Tc), low density lipoprotein cholesterol (HDLc) and MDA. BMI did not show any correlation with triglyceride (Tg) or high density lipoprotein cholesterol (HDLc). MDA level correlated better with Tc, Tg levels and BMI, poorly correlated with LDLc and in inverse relationship was observed with HDLc.

Aged↗

Lipid-saccharide intermediates in glycoprotein biosynthesis. III. Comparison of oligosaccharide-lipids formed by slices from several tissues.

The synthesis of oligosaccharide-lipids thought to play a role in the attachment of carbohydrate to protein has been studied in incubations of slices from calf kidney, pancreas, thymus, and liver, as well as from hen oviduct. These compounds were characterized after radiolabeling of their saccharide moiety by incubation with [14C]glucose or [14C]mannose and a comparison was made with the oligosaccharide-lipid produced by thyroid slices. Furthermore, the unlabeled glycolipid was prepared from hen oviduct for the purpose of quantitating its sugar constituents. Purification of the oligosaccharide-lipids extracted with chloroform/methanol/water (10/10/3) was achieved by DEAE-cellulose chromatography and their carbohydrate moieties were released by mild acid hydrolysis. On the basis of gel filtration it was determined that the lipid-bound oligosaccharides formed by oviduct, thymus, kidney, and liver had molecular weights comparable to that from thyroid (about 2400). The saccharide moiety of the glycolipid from pancreas was however distinctly smaller in size with a molecular weight of approximately 1800. Analyses of the radiolabeled oligosaccharide-lipids from oviduct, kidney, and thymus indicated that they, like the compound from thyroid slices, but unlike those believed to be formed by cell-free systems from various tissues, contained glucose in addition to mannose and N-acetylglucosamine as their monosaccharide constituents. This compositional data was supported by the finding that the unlabeled oligosaccharide from oviduct consists of 10 mannose, 1 glucose, and 2 N-acetylglucosamine residues. Sodium borohydride reduction of this oviduct saccharide moiety indicated that 1 of the 2 glucosamines was situated in a reducing terminal position. The radiolabeled oligosaccharide from the glycolipid produced by pancreas differed from the others analyzed in that it contained only trace amounts of glucose. Upon treatment with alpha-mannosidase this glucose-deficient pancreatic oligosaccharide was extensively digested (85% of the mannose released). In contrast, the carbohydrate moieties of oviduct, kidney, and thymus, like that of thyroid, underwent a more limited digestion with the alpha-mannosidase (55% or less of the mannose released) suggesting that the presence of glucose may serve to block a more complete degradation of these oligosaccharides by this enzyme.

Acetylglucosamine↗

Altered lipid profile and changes in uroplakin properties of rat urothelial plasma membrane with diets of different lipid composition.

Rigid plaques containing protein particles in plasma membrane build on the apical surface of the mammalian urothelium. We have previously shown that dietary fats modified the fatty acid profile as well as the fluorescence anisotropy of rat urothelial plasma membranes. In this study, we have further examined the proportion of phosphatidylcholine, phosphatidylethanolamine, cerebrosides, sulfatides and cholesterol in detergent resistant (DRM) and soluble (DSM) plasma membrane fractions as well as the properties of the particles. Four groups of weaned rats were fed for 12 weeks on a commercial diet (control), or on a formula containing 5% (w/w) of corn oil, fish oil or olein. The control DRM behaved as a distinctive domain since it was enriched in cholesterol and glycosphingolipids. DSM showed higher levels of phosphatidylcholine and phosphatidylethanolamine with respect to DRM. On the other hand, the lipid distributions were affected by the diets. Homogeneous lipid distributions between DSM and DRM were found in olein membranes, suggesting a decreased potential formation of lipid domains. In addition, properties of the uroplakins were altered by dietary treatments. Thus, uroplakins (UP) Ia, Ib, II and III observed by SDS-PAGE, were in lower proportions (mainly olein) than in controls. Moreover, a higher proportion of UPIII was cross-linked to UPIII and UPlb in olein treatment than in control. Meanwhile, only cross-linking to UPIII or UPIb was altered in corn and fish diets, respectively. These results suggest a role of the lipids in the establishment of the uroplakin interactions. Thus, specific dietary fats may have important functional implications.

Animals↗

The effect of high-fat feeding on intramuscular lipid and lipid peroxidation levels in UCP3-ablated mice.

Uncoupling protein-3 (UCP3) has been suggested to protect against lipid-induced oxidative damage. Therefore, we studied intramuscular lipid peroxide levels and high-fat diet induced alterations in muscle lipid metabolism of UCP3-ablated mice. UCP3-/- mice showed approximately 3-fold higher levels of intramuscular lipid peroxides upon standard chow feeding, compared to wild-type littermates. Remarkably, this difference was no longer apparent on the high-fat diet. However, upon high-fat feeding, intramuscular triacylglycerol levels were approximately 50% lower in UCP3-/- mice, in comparison to UCP3+/+ animals. Succinate dehydrogenase activity, and total protein content of the muscle fatty acid transporter FAT/CD36 were however similar between UCP3-/- and UCP3+/+ mice.

Animals↗