Search PubMed⌕ Search

Biomedical subjects

M Aviram

Publications and source records attributed to M Aviram.

At least 163 records · Page 9Linked to original sources

[Platelet hypoactivity in hypocholesterolemia].

A 6-year-old girl with severe malabsorption resulting from pancreatic insufficiency, and with hypocholesterolemia is described. 57% of her plasma cholesterol was found in high density lipoprotein (HDL), 95 mg/dl, while only 25 mg/dl was in the low density lipoprotein (LDL) fraction. Platelet aggregation in platelet-rich plasma, in response to both collagen and ADP, were substantially reduced (by 54 and 33%, respectively) in comparison with normal controls. However, after removal of plasma and washing the isolated platelets, they were not hypoactive. These results suggest that the plasma environment affects platelet activity, and confirms our in vitro results on the enhancing and inhibiting effects of LDL and HDL, respectively, on platelet activity.

Child↗

Neutral lipid storage disease with ichthyosis: serum apolipoprotein levels and cholesterol metabolism in monocyte-derived macrophages.

Neutral lipid storage disease with ichthyosis (NLSDI) is an inherited metabolic disorder characterized by accumulation of neutral lipids, in a wide variety of cells, by a still unknown mechanism. Previous studies have shown normal cholesterol content in NLSDI granulocytes, fibroblasts and skin cells. Monocyte-derived macrophages possess an additional pathway of cholesterol uptake, which is not shared by these cells and which is not regulated by intracellular cholesterol levels. This pathway is thought to play a rôle in the process of atherosclerosis. Three NLSDI patients were studied. The serum levels of triglycerides, cholesterol, high-density lipoprotein cholesterol, and apolipoproteins A-I and B were within normal limits in all three patients. The intracellular levels of free and esterified cholesterol were measured in the monocyte-derived macrophages of one patient and found to be normal, while the triglyceride concentrations were twice as high as normal. The cholesterol esterification rates, which serve as a sensitive indicator of intracellular changes in cholesteryl ester levels, were normal in the monocyte-derived macrophages of all three patients. These findings provide further evidence that cholesterol metabolism is not disturbed in NLSDI, and it may be inferred that in this respect these patients are not at increased risk for atherosclerosis.

Adult↗

Lipid-protein particles secreted from activated platelets reduce macrophage uptake of low density lipoprotein.

Cellular uptake of low density lipoprotein (LDL) was reduced by 30-40% in macrophages that were preincubated with platelet conditioned medium (PCM) obtained from activated platelets. LDL mediated cholesterol accumulation and cholesterol esterification in macrophages were substantially inhibited by macrophages preincubation with PCM. This inhibitory effect was found to be dose dependent, and resulted from a reduction in the number of LDL receptors (decrement of 35% in "apparent Vmax"). The active component in PCM was present only in medium obtained from activated platelets and was found to be of a molecular weight higher than 25,000 dalton. It comprised of both protein and cholesterol but upon PCM delipidation only the lipid fraction demonstrated the inhibitory effect on macrophage uptake of LDL. Specific uptake of the PCM lipoprotein-like particle via the scavenger receptor on macrophages was found to be essential for the expression of LDL receptor reduced activity. Furthermore, LDL mediated cholesterol esterification was not inhibited by PCM in U937 macrophages, a cell line that lacks the scavenger receptors. It is concluded that activated platelets secrete a lipoprotein-like particle which is recognized by the macrophage scavenger receptor. Subsequent to PCM-macrophage interaction, cellular LDL uptake was reduced. This effect could be attributed to the PCM lipid constituents.

Blood Platelets↗

Platelet secreted lipoprotein-like particle is taken up by the macrophage scavenger receptor and enhances cellular cholesterol accumulation.

Enhanced macrophage cholesterol accumulation is associated with foam cell formation in the atherosclerotic lesion. Since platelet activation plays an important role in atherogenesis, we questioned whether products released from activated platelets could affect macrophage cholesterol metabolism. The addition of platelet-conditioned medium (PCM, obtained from collagen activated platelets) to a J-774 macrophage cell line, enhanced cellular cholesteryl ester content by 32%. The cholesterol esterification rate was also increased by 29%. Pre-loading the macrophages with cholesterol by incubation with acetyl-LDL, resulted in a further elevation of 48% in PCM-mediated cholesterol esterification. Possible mechanisms for the enhanced cholesterol esterification by J-774 macrophages following incubation with PCM include increased cholesterol influx and/or decreased cholesterol efflux (These cells were recently shown not to synthesize cholesterol). However, both increased uptake of PCM cholesterol by the macrophages as well as increased cellular cholesterol efflux (by 22%) were noted. The enhancement of cholesterol esterification by PCM was competitively inhibited by fucoidin and polyinosinic acid, implicating PCM binding to the scavenger receptor. This was further evidenced by the observations that apolipoprotein E which reduces cellular uptake via the scavenger receptor but not via the LDL receptor, also inhibited the effect of PCM, whereas IgG C-7, the LDL receptor antibody, did not alter the effect of PCM. Lysosomal involvement in the cellular processing of PCM was observed since PCM activity was inhibited by the lysosomal inhibitor, chloroquine. Partial purification of PCM by gel filtration revealed that the cholesterol component was associated with both phospholipids and proteins in a lipoprotein-like particle. Delipidation of PCM resulted in its inactivation but both heat treatment and tryptic digestion of PCM, revealed that the protein (and not only the cholesterol) component was also essential for the effect of PCM on cellular cholesterol esterification. Furthermore, PCM prepared from platelets of a patient with Gray Platelet Syndrome that lack platelet alfa granules (which contain platelet specific proteins), failed to enhance cholesterol esterification. These results demonstrate that lipoprotein-like particles released during platelet activation can interact with the macrophage scavenger receptor thus leading to enhanced cellular cholesterol accumulation.

Animals↗

Excessive dietary tryptophan enhances plasma lipid peroxidation in rats.

High plasma cholesterol levels and plasma lipid peroxidation are associated with atherosclerosis. The effect of excessive dietary tryptophan on plasma lipid peroxidation was studied in rats fed a diet containing soybean oil (control), as well as an atherogenic diet, containing coconut oil and cholesterol. Feeding the atherogenic diet resulted in a 5-fold increment in plasma cholesterol concentration with no significant effect of the tryptophan supplementation. The plasma obtained from the hypercholesterolemic rats exhibited a 67% increased lipid oxidation (measured as thiobarbituric acid reactive substances) in comparison to normocholesterolemic plasma. Dietary tryptophan supplementation increased plasma lipid peroxidation by 9 and 21% in the control and in the hypercholesterolemic animals, respectively. Similarly, the excessive dietary tryptophan enhanced macrophage cholesterol esterification rate by 40 and 38% following cell incubation with the plasma obtained from the control and from the hypercholesterolemic animals, respectively. Since tryptophan is the precursor of serotonin we have measured urine concentration of 5-hydroxyindoleacetic acid (5HIAA), the metabolite of serotonin, and found 22 and 118% elevation in 5HIAA in the tryptophan fed control and hypercholesterolemic rats, respectively. The direct effect of tryptophan and serotonin on in vitro lipid peroxidation was also studied. Low density lipoprotein (LDL) was peroxidized by incubation with copper ions in the presence of tryptophan or serotonin. Serotonin was shown to enhance LDL peroxidation whereas tryptophan had no effect on LDL peroxidation. We conclude that excessive dietary tryptophan may be atherogenic since it enhanced plasma lipid peroxidation in hypercholesterolemic rats and increased macrophage uptake of plasma cholesterol. These effects are probably associated with increased plasma concentration of serotonin following the consumption of a tryptophan supplemented diet.

Animals↗

Enhanced in vitro oxidation of plasma lipoproteins derived from hypercholesterolemic patients.

In vitro oxidation of plasma lipoproteins, derived from either normolipidemic or hypercholesterolemic subjects, was performed in the presence of copper ions. Following this procedure, hypercholesterolemic low-density lipoprotein (LDL), very-low-density lipoprotein (VLDL), and high-density lipoprotein (HDL) demonstrated greater propensity for oxidation than the corresponding normocholesterolemic lipoproteins. The oxidation was determined by the concentration of thiobarbituric acid-reactive substances (TBARS), which was 44%, 71%, and 54% greater in the patients' VLDL, LDL, and HDL in comparison to the normocholesterolemic lipoproteins, respectively. An associated reduction in trinitrobenzensulfonic acid (TNBS) reactivity in the patients' lipoproteins was noted. These changes were consistent whether expressed per lipoprotein protein or per concentration. Macrophage cholesterol esterification induced by oxidized LDL was substantially increased (up to 59%) when patients' lipoproteins were used, in comparison to control lipoproteins. A positive correlation was present between the LDL cholesterol to protein ratio, the extent of lipoprotein oxidation, and macrophage uptake of the oxidized lipoproteins. The lipoprotein content of pro-oxidant and antioxidant constituents was also analyzed. No measurable ferric or copper ions could be found in association with any of the lipoproteins. However, arachidonic acid content of the patients' LDL was 10.1% +/- 1.0% in comparison to 6.2% +/- 0.8% of total lipoprotein fatty acids in the control group (n = 5). Antioxidants such as vitamin E and carotenoids were significantly reduced in all patients' lipoproteins compared with those of controls. Thus, we suggest that increased cholesterol and arachidonic acid content and reduced concentration of antioxidants in lipoproteins of hypercholesterolemic patients may be responsible for the enhanced propensity for oxidation observed in these lipoproteins.

Dose-Response Relationship, Drug↗

Secretory products from human monocyte-derived macrophages enhance platelet aggregation.

Both macrophages and platelets play an important role in atherogenesis. We studied the effect of conditioned medium obtained from human monocyte-derived macrophages on in vitro platelet aggregation. Incubation of macrophage-conditioned medium (MCM) with platelets resulted in enhanced platelet aggregation (up to 35% difference between basal and MCM-stimulated activity), which was time dependent. This MCM effect on platelet function was increased both with time of mononuclear cell culturing (up to 10 days) and with the time of macrophage incubation in serum-free medium (up to 24 hours) prior to MCM collection. MCM from either cholesterol-loaded macrophages or from macrophages obtained from patients with familial hypercholesterolemia demonstrated a 37% and 20% increased effect, respectively, in comparison to MCM derived from normal subjects. Macrophage activation with lipopolysaccharide resulted in the harvesting of a MCM that enhanced platelet activity 60% more than MCM obtained from nonactivated cells. The active component of MCM was inhibited fivefold following heating at 100 degrees C for 10 minutes or after treatment with trypsin or protease, but was not affected by antioxidants. MCM activation of blood platelets may be of importance in atherogenesis. Understanding the mechanisms involved may contribute to an improved appreciation of the role of both platelets and macrophages in atherosclerosis.

Animals↗

Dual effect of lovastatin and simvastatin on LDL-macrophage interaction.

Lovastatin and simvastatin which are very potent cellular cholesterol biosynthesis inhibitors, significantly affect the plasma lipoprotein concentration. After incubation of plasma with 14C-labelled compounds, radioactivity was found in all lipoprotein fractions but mainly (40%) in high density lipoprotein (HDL), and in the lipoprotein-deficient plasma fraction (20-30%). Drug-treated lipoproteins showed reduced electrophoretic mobility on cellulose acetate in comparison with control lipoproteins. The lovastatin-treated low density lipoprotein (LDL) displayed 28% increased fluidity in comparison with control LDL. The immunoreactivity of drug-treated LDL with monoclonal antibody directed towards the LDL receptor binding domains (B1B6) was significantly less than that of control LDL, suggesting reduced binding to the LDL receptor. When drug-treated LDL was incubated with J-774 A.1 macrophage-like cell line, its binding (at 4 degrees C) was 28% less than that of control LDL, whereas a substantial increase in the cellular cholesterol esterification rate (by 83% with lovastatin and by 67% with simvastatin) was noted. Similarly, the degradation of lovastatin and simvastatin-treated LDL by macrophages was 87-89% greater than that of control LDL. The "apparent Vmax" for the macrophage degradation of lovastatin-treated LDL was 70% greater than that for control LDL. Thus, both drugs may have a dual effect on the macrophage uptake of LDL; they may increase the number of LDL receptors on the cell surface, but they may also reduce the affinity of LDL for its receptor, the former being the major effect.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Oxidized low-density lipoprotein reduces plasma coagulation in vitro.

Oxidation of low-density lipoprotein (LDL) was shown to occur in vivo and involved lipid peroxidation and apolipoprotein modification. We studied the effect of oxidized-LDL (Ox-LDL) on plasma coagulation by measuring prothrombin time (PT) and partial thromboplastin time (PTT) following the addition of Ox-LDL to normal plasma. Ox-LDL, but not native LDL, caused prolongation of PT and PTT by 30% in a dose- and time-dependent pattern. This effect was also shown to be present following lipoprotein delipidation, suggesting that it was the apolipoprotein fraction of Ox-LDL, but not its lipid fraction, that was responsible for the prolongation of PT and PTT. This was further substantiated since similar effect could be obtained by adding LDL treated with trinitrobenzenesulphonic acid to block the lysine groups, as occurs in oxidized LDL. Ox-LDL, unlike LDL, was found to reduce plasma ionized calcium by 33%. Moreover, adding calcium ions to Ox-LDL negated its effect on PT and PTT, suggesting that Ox-LDL apolipoprotein may influence coagulation by binding calcium ions.

Blood Coagulation↗

Activated platelets secrete a protein-like factor that stimulates oxidized-LDL receptor activity in macrophages.

Platelet secretory products were shown to modulate the interaction between lipoproteins and their receptors on macrophages. Preincubation of macrophages for 2 h at 37 degrees C with platelet conditioned medium (PCM), followed by its removal and a further 5-h incubation in the presence of oxidized-LDL (Ox-LDL), resulted in increased cellular degradation of Ox-LDL (34%), stimulation of cellular cholesterol esterification (31%), and mass accumulation of esterified and nonesterified cholesterol (25% and 41%, respectively). These effects were found to be the result of a PCM-mediated increase in the number of Ox-LDL receptors on macrophages. PCM was shown to interact with the macrophage scavenger receptor. Enhanced Ox-LDL uptake by macrophages preincubated with PCM could not be reproduced when PCM remained in the incubation medium. Maintenance of PCM in the incubation medium reduced Ox-LDL uptake by macrophages (40%) and was shown to be PCM dose-dependent. Whereas incubation at 37 degrees C demonstrated enhanced uptake of Ox-LDL, preincubation of macrophages with PCM at 4 degrees C exhibited a 64% reduction in Ox-LDL-mediated cellular cholesterol esterification. Thus, PCM internalization by macrophages after its binding to the scavenger receptor is required to promote the enhancing effect of PCM on Ox-LDL uptake by macrophages. PCM activity was associated with platelet degranulation, and was recovered in the protein fraction of PCM. It was found to be heat- and trypsin-labile with a molecular weight greater than 25,000. PCM obtained from platelets derived from a patient with alpha granules deficiency failed to enhance the uptake of Ox-LDL by macrophages, suggesting that the active protein-like factor in PCM originated from platelet alpha granules. These results indicate that a platelet-secreted protein-like factor can modulate macrophage uptake of Ox-LDL with subsequent effect on foam cell formation.

Animals↗

Decreased very low density lipoprotein fluidity in familial hypercholesterolemia.

The fluidity of lipoproteins from normolipidemic subjects and from familial hypercholesterolemic patients was investigated by fluorescence polarization. The fluorescent probe DPH (1,6-diphenyl-1,3,5-hexatriene) was incorporated into the lipoprotein fractions, and assessment of the fluidity pattern of each particle was determined by fluorescence anisotropy measurements over a temperature range of 10 to 40 degrees C. The very low density lipoprotein (VLDL) of the hypercholesterolemic patients was found to be considerably more rigid than the respective VLDL of normolipidemic subjects. Analysis of the constituents of the various lipoproteins suggested that the large difference in the fluidity between hypercholesterolemic and normal VLDL patients might be due to increased VLDL cholesterol/triglyceride, cholesterol/protein and cholesterol/phospholipid ratios, which were 10, 2 and 1.4 fold higher, respectively, in the hypercholesterolemic VLDL patients. Decreased VLDL fluidity in familial hypercholesterolemic patients may be of importance in the pathogenesis of their accelerated atherosclerosis.

Adolescent↗

Intralipid infusion in patients with familial hypercholesterolemia. Effect of serum and plasma lipoproteins on platelet aggregation and on macrophage cholesterol metabolism.

Intralipid infusion into normal volunteers was recently shown to possess anti-atherogenic properties. We studied the effect of intralipid infusion in patients with severe Familial Hypercholesterolemia (FH) refractory to conventional therapy. FH patients and normal subjects, who served as controls, were given an intravenous infusion of intralipid for 6 h. Serum samples taken from both groups before, during and after intralipid infusion were studied for their ability to inhibit cellular cholesterol accumulation by macrophages. A significantly lower rate of cellular cholesterol esterification (of 46%, P less than 0.005 and 44%, P less than 0.005 in patients and normals, respectively) was demonstrated in macrophages incubated with serum obtained during intralipid infusion compared to those incubated with preinfusion serum. The maximal effect was demonstrated with serum samples taken at the end of the infusion, but the inhibitory effect persisted even at 24 h post-infusion. It was found that chylomicron like particles could induce the above-mentioned effects on macrophage cholesterol esterification. A significant decrement of 50% (P less than 0.005) in aggregation of platelets isolated from plasma samples taken during and after intralipid infusion from both groups was demonstrated, when compared to platelets isolated in the preinfusion state. This effect persisted 18 h subsequent to infusion. We conclude that intralipid infusion abolishes serum ability to stimulate cholesterol esterification in cultured macrophages, and exhibits inhibitory effects upon platelet aggregation. If similar events occur in the arterial wall, intralipid might inhibit foam cell formation.

Adolescent↗

Malondialdehyde affects the physico-chemical and biological characteristics of oxidized low density lipoprotein.

Oxidized LDL (Ox-LDL) was found in the atherosclerotic lesion and was associated with the formation of foam cells. Ox-LDL (30 micrograms protein/ml) reduced collagen induced platelet aggregation by 18% but following dialysis, this lipoprotein enhanced platelet aggregation by 21% in platelet-rich plasma. The addition of malondialdehyde to the dialyzed Ox-LDL prevented its stimulatory activity. Enhanced macrophage uptake of Ox-LDL however, was not affected by dialysis. Thus it is important to use similar preparations of Ox-LDL when comparing results with these lipoproteins.

Cholesterol↗

Serum lipoprotein profile in children with celiac disease.

Jejunal mucosa is responsible for the absorption of triglycerides and the production of lipoproteins [chylomicrons, very-low-density lipoprotein (VLDL), high-density lipoprotein (HDL)] and apolipoproteins (B-48, A-I, A-II, A-IV, C-II). Mucosal damage is known to cause fat malabsorption and probably also affects the serum lipid profile. To determine lipoprotein production in states of enterocyte dysfunction, we compared the serum lipid profiles in a group of 12 children with untreated celiac disease (flat jejunal mucosa) with the profiles in a control group of 10 children suffering from other intestinal diseases. Statistically significant differences were found in the following parameters (celiac versus control): plasma levels of triglycerides (70 versus 119 mg/dl), cholesterol content in LDL (107 versus 67.7 mg/dl), protein content in VLDL (6 versus 10 mg/dl), and level of apoprotein A-I (112 versus 140 mg/dl). No significant differences were found between the two groups in the serum levels of total cholesterol, the cholesterol content in VLDL and HDL, the protein content in LDL and HDL, and the level of apoprotein B. Following institution of a gluten-free diet, the lipoprotein profile reverted to normal. These data suggest that the changes in the serum lipoprotein profile in celiac disease are secondary to alterations in enterocyte function and not only a reflection of fat malabsorption.

Celiac Disease↗

Adult xanthogranulomatosis associated with abnormal plasma apolipoprotein levels.

A case of adult xanthogranulomatosis was investigated in depth for lipid abnormalities. The xanthogranulomatous lesion was shown to be composed primarily of cholesterol esters and triglycerides. Fasting plasma lipid levels and lipoprotein concentrations were within normal limits. Plasma lipoprotein electrophoresis and immunoelectrophoresis demonstrated normal high-density lipoprotein (HDL) and low-density lipoprotein mobilities. Polyacrylamide-gel isoelectric-focusing electrophoresis revealed increased levels of very-low-density apolipoprotein (apo) E, especially apo E-III. In the HDL fraction, apo-C-III and apo-E levels were both found to be slightly elevated. These findings might imply a causal relationship between the abnormal plasma apolipoprotein levels and the xanthogranulomatous disease.

Adult↗

Compound heterozygosity for abetalipoproteinaemia and familial hypobetalipoproteinaemia.

A 10 year old boy with abetalipoproteinaemia is reported. His mother and grandfather suffered from familial hypobetalipoproteinaemia, but his father had a normal lipoprotein profile. This is the first report of abetalipoproteinaemia resulting from compound heterozygosity for abetalipoproteinaemia and familial hypobetalipoproteinaemia.

Abetalipoproteinemia↗

Dietary tryptophan enhances platelet aggregation in rats.

The effect of diets enriched with tryptophan (4 and 10 g/kg) on ADP induced platelet aggregation and on plasma lipids was studied with growing rats, following feeding periods of up to 3 weeks. Dietary tryptophan was found to enhance markedly ADP induced platelet aggregation. It appears that this effect was not related to plasma lipid levels. In vitro studies aimed to clarify the mechanism by which tryptophan exerts its action showed that the latter, at concentrations up to 100 micrograms/ml, had no effect on ADP induced platelet aggregation. On the other hand, serotonin, the metabolic product of tryptophan, increased the ADP induced platelet aggregation in a dose dependent pattern. The possible involvement of serotonin in the observed enhancement of platelet aggregation was further substantiated by the observed high levels of 5-hydroxyindole acetic acid, which is a catabolite of serotonin, in the urine of the experimental animals. It is conceivable that tryptophan enhances platelet aggregation in rats via its metabolite, serotonin, and this may in turn contribute to increased atheroslerotic risk.

Adenosine Diphosphate↗