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Biomedical subjects

B Cestaro

Publications and source records attributed to B Cestaro.

At least 55 records · Page 3Linked to original sources

Studies on peroxidation of arachidonic acid in different liposomes below and above phase transition temperature.

The mechanism of Fe-induced peroxidation of arachidonic acid (AA) in small unilamellar vesicles (SUV) of dipalmitoylphosphatidylcholine (DPPC) and dipalmitoylphosphatidylethanolamine (DPPE) was studied below and above gel to liquid-crystalline phase transition temperature (Tm). In both liposomes the AA peroxidation resulted higher in the temperature range below Tm, but the extent of malonyldialdehyde (MDA) formation was dramatically lower in DPPE vesicles when compared with corresponding DPPC liposomes. A possible explanation for this is discussed.

Arachidonic Acids↗

N-pyrene dodecanoyl sulfatide as membrane probe: a study of glycolipid dynamic behavior in model membranes.

An N-linked pyrene-dodecanoyl sulfatide was employed to measure the ratio of excimer fluorescence to monomer fluorescence intensities (E/M). The E/M values provided information about both the dynamic behavior and the structural distribution of the labelled glycolipid in note dispersion of micellar sulfatides and multilamellar vesicles of different phospholipids. Most of the labelled sulfatide seems to be located in domains sequestered from the surrounding phospholipids still above the phase transition temperature of the vesicles. The glycolipids sequestered in these domain environments are less sensitive to the structural changes that the addition of cholesterol or Ca2+ can induce in the phospholipid regions during the phase transition.

Fluorescent Dyes↗

Erythrocyte D-glucose transport activity in reconstituted model membranes of different lipid composition.

The stereospecific influx of D-glucose into liposomes formed on sonication of different glyco- and phospholipids with transport proteins from human erythrocyte ghosts solubilized with Triton x-100 was measured as an index of their total D-glucose transport activity. Specific D-glucose transport increased when acidic phospho- and glycolipids (especially sulfatide) were added to the phosphatidylcholine bilayers of the model membranes while cholesterol strongly inhibited the process. The modulation of D-glucose transport activity and its possible correlation with the lipid composition and the chemico-physical state of the erythrocytes is discussed.

Cerebrosides↗

Interactions of insulin with sulfatide-containing vesicles of phosphatidylcholine at different pHs.

Positively charged insulin is described to induce aggregation of phosphatidylcholine vesicles containing 10 mol% sulfatide at acidic pH. Techniques including light-scattering, Sepharose chromatography, centrifugation, trapped volume determination, circular dichroism and fluorescence polarization, demonstrate that large amounts of negatively charged insulin remain firmly associated to the vesicles upon raising the pH to 7. This is surprising, since only trace amounts of insulin associate to the sulfatide-containing vesicles upon direct incubation at pH 7. The possible molecular explanation of the phenomenon and the relevance of these findings to the actions of insulin in vivo are discussed.

Circular Dichroism↗

Chromosomal aberrations induced in human cultured cells by liposome-encapsulated deoxyribonuclease I.

Experiments of incorporation of a nucleolytic enzyme into human cells cultured in vitro have been carried out with the aim of inducing structural chromosome variations. Human heteroploid cells, either as asynchronous populations or enriched in mitoses, and PHA-stimulated lymphocytes were used as recipients. We found that all these cells when exposed to pancreatic DNAase I encapsulated in liposomes, either of multilamellar (MLV) or of small unilamellar (SUV) type, show an incidence of chromosome damage higher than that induced by the enzyme free in the incubation buffer. Our results indicate that liposomes are suitable vehicles for the transfer of an exogenous nuclease into human cultured cells. The enzyme remains functionally active and interacts with nuclear DNA, giving rise to chromosome lesions.

Aneuploidy↗

Preparation of spin-labelled sulfatides for EPR studies on model membranes.

Using the N-hydroxysuccinimide ester of the fatty acids, galactosylceramide I3-sulfate containing a 5-or 16-doxyl-stearoyl residue was prepared in good yield by acylation of the galactosylsphingosine I3-sulfate (lysosulfatide) obtained from the saponification of the bovine brain sulfatide. The EPR behavior of the two semisynthetic sulfatides was analyzed in natural sulfatide micelles and in multilamellar vesicles of egg phosphatidylcholine. The evaluated parameters demonstrate that these spin-labelled sulfatides can be used for the study of sulfatide behavior in lipid structures.

Animals↗

Fluorospectroscopic studies of mixtures of distearoylphosphatidylcholine and sulfatides with defined fatty acid compositions.

Simple study models characteristic for lamellar organization of distearoylphosphatidylcholine and sulfatide have been prepared for fluorospectroscopic investigations on the influence of these glycolipids on the chemico-physical properties of lecithin bilayers. The motion of 1,6-diphenyl-1,3,5-hexatriene in mixed lecithin-sulfatide bilayers changed with temperature, with the compositional ratio of the two lipids, with the presence of divalent cations such as Ca2+ and with the fatty acid composition of sulfatide moiety. Steady-state fluorescence measurements of the average motion of the fluorophore permit evaluation of the gel to liquid-crystalline phase transition in all these membrane models containing different sulfatides.

Fatty Acids↗

Calorimetric properties of mixtures of distearoylphosphatidylcholine and sulfatides with definite fatty acid composition.

The thermotropic behavior of multilamellar liposomes prepared from mixtures of distearoyllecithin and sulfatide of definite fatty acid composition, has been studied by DTA calorimetry. The saturated stearoyl- and lignoceroyl-sulfatides do not modify significatively both the delta H and the Tm of the phase transition of the lecithins. These parameters, on the contrary, are decreased by all the sulfatides containing unsaturated fatty acids. A contrasting effect is at last exhibited by alpha-OH-stearoylsulfatide which promotes a decrease in delta H but not in Tm of the phase transition. The possibility that these sulfatide properties can influence the dynamic interactions and the sovramolecular organization of the phospholipid bilayers has been discussed.

Calorimetry↗

Liposomes induce chromosome aberrations in human cultured cells.

The genotoxic effect of multilamellar lipid vesicles (MLV) was analysed on cultured heteroploid and diploid human cells. Dose-dependent reduction of cell survival and mitotic rate as well as induction of chromosome aberrations were observed. Chromatid and chromosome breaks and chromatid exchanges were found in 24-h culture after liposome treatment, whereas chromosome rearrangements were prevalent at 48 h. Neutral (PC/Chol) and positive (PC/SA) MLV showed a greater damage than negative (PS/PC; PS) MLV. Fibroblasts were the most sensitive cell type. In the case of PC/Chol MLV vesicles, control experiments with PC and Chol of controlled purity ruled out the possibility that the observed chromosome aberrations were caused by toxic oxidation products present in commercial preparations.

Cell Line↗

ESR studies of the dynamics of dipalmitoylglycerophosphocholine-sulfatide model membranes.

The effects of sulfatide on the fluidity and surface dynamics of bilayered and micellar model membranes of dipalmitoylglycerophosphocholine containing sulfatide were studied as a function of gel-to-liquid-crystalline state of the lipids by electron spin resonance. 5- and 15-nitroxystearic acid were employed as spinlabel probes for the region close to the surface and that close to the nonpolar core of lipid structures. The sulfatide effect is completely different above and below the gel-to-liquid-crystalline phase transition point, the glycolipid promoting a more disordered state below it and having a condensing effect above the phase transition temperature.

Colloids↗

Human blood cells sialidases.

The conditions of a linear assay for 4-methylumbelliferyl-alpha-D-N-acetyl-neuraminic acid (4-MU-NeuAc) sialidase activity in human lymphocytes, granulocytes, platelets and red cells plasma membranes have been determined. Lymphocytes and granulocytes have the same pH curve with two maximums at pH 4.0 and 4.8; however lymphocytes show a higher specific activity and a higher Km value. Sialidase activity detected in red cells plasma membranes has again a double-peak pH curve with maximums at pH 4.2 and pH 4.6, and specific activity levels less than one/30 compared to the other blood cells preparations. Platelets have a sialidase activity of the same magnitude as granulocytes, with an optimum pH at 4.2.

Blood Platelets↗

Fusion of sulfatide-containing vesicles of phosphatidylcholine.

Positively charged albumin is described as a 'useful tool' to induce both aggregation and fusion of phosphatidylcholine vesicles containing sulfatide. Techniques that include light-scattering, Sepharose chromatography, centrifugation, electron microscopy, trapped volume determination and scanning calorimetry demonstrate that extensive fusion occurs during aggregation when sulfatide concentrations are above 4-5 mol%. The rate of fusion increases with time for 1-2 h, then reaches a plateau. Fusion occurs extensively above the transition temperature of the phospholipid and is strongly inhibited by increasing concentration of vesicle cholesterol. The significance of both membrane fluidity and sulfatide-phospholipid organization in the fusion mechanism are discussed.

Chemical Phenomena↗

Electron spin resonance studies on the dynamics of phosphatidylcholine-sulfatide model membranes.

The effects of sulfatide on the fluidity and surface dynamics of bilayered and micellar model membranes of egg phosphatidylcholine containing sulfatide were studied by electron spin resonance (ESR). 5-Nitroxystearic acid and 15-nitroxystearic acid were employed as spin-label probes for the region close to the surface and that close to the hydrophobic core of lipid structures. In the vesicular structures, the signals generated by 5-nitroxystearic acid showed that the presence of sulfatide reduced the mobility of the hydrocarbon chains around the probe. The effect increased with increasing glycolipid concentration. The decrease in membrane fluidity was also monitored with the 15-nitroxystearic acid probe, although to a lesser extent. We think that sulfatide causes strong side-to-side head-group interactions on the bilayer surface, causing the lipid chains to assemble in a more rigid fashion, though this effect may be balanced in part by the disordered mechanical coupling of glycolipid acyl chains in the apposite faces of the hydrophobic core of the bilayer. Reduction of this mechanical coupling between apposite lipids when there was transition from a bilayered to a micellar structure resulted in a further increase in the order of the system.

Electron Spin Resonance Spectroscopy↗

Kinetics of Vibrio cholerae sialidase action on gangliosidic substrates at different supramolecular-organizational levels.

G(d1a), G(d1b) and G(t1b) gangliosides were dispersed in the following membrane-mimicking systems: (a) homogeneous micelles; (b) mixed micelles with G(m1) ganglioside (which is resistant to the enzyme action), Triton X-100 or bovine serum albumin; (c) small unilamellar vesicles of egg phosphatidylcholine. The effect of dispersion on sialic acid release by Vibrio cholerae sialidase was studied. As reference substrates freely interacting with the enzyme the lipid-free carbohydrates of G(d1a) and 3'-sialosyl-lactose were employed. The apparent V(max.) of the enzyme was, with all the gangliosides, dependent on the type of ganglioside dispersion. It was lowest for homogeneous micelles and mixed micelles with ganglioside G(m1), and increased about 6-fold for ganglioside/bovine serum albumin lipoprotein micelles, 15-fold for mixed-ganglioside/Triton X-100 micelles (optimal molar ratio 1:7.5) and 30-fold for phosphatidylcholine vesicles containing 2.5 mol% ganglioside (this proportion was optimal for enzyme activity on the vesicles). For ganglioside G(d1a), the activity on Triton X-100 mixed micelles and on mixed vesicles was even greater (3- and 6-fold respectively) than that displayed on G(d1a) lipid-free carbohydrate. With each of the used gangliosides the apparent K(m) values were very similar values for homogeneous micelles and vesicular dispersions, but showed marked increases for Triton X-100 mixed micelles, approaching the values exhibited by reference oligosaccharides. Triton X-100 micelles and phosphatidylcholine vesicles did not appreciably alter the kinetics of sialidase action on 3'-sialosyl-lactose and on G(d1a) lipid-free carbohydrate, indicating that the above effects are dependent on the intrinsic characteristics of the membrane-like systems containing gangliosides.

Cell Membrane↗

Preparation of asymmetric, cerebroside sulfate-containing phospholipid vesicles.

A procedure is described which inserts asymmetrically cerebroside sulfate ('sulfatide') into the outer leaflet of bilayered phospholipid vesicles. Cerebroside sulfate is adsorbed onto a cellulose, filter-paper support and, when incubated with phosphatidylcholine vesicles is transferred to and inserted into the outer leaflet of these vesicles. This transfer occurs at, or above the transition temperature of the phospholipid and follows a similar pattern with small or larger ('fused') unilamellar vesicles. The transfer is linear with time for 1-2 h and is maximal after about 6 h, when the sulfatide content reaches about 6 mol% of the total quantity of phospholipid, corresponding to about 10 mol% of the phospholipids present in the outer layer. Initial rates of sulfatide transfer were somewhat increased when the vesicles contained a positively charged lipid (e.g. stearylamine) and decreased when this lipid was negatively charged (e.g. dicetyl phosphate) or hydrophobic (e.g. cholesterol). Divalent ions markedly inhibited sulfatide transfer and monovalent ions did so to a lesser degree. Once incorporated into the outer leaflet of the vesicle, the sulfatide could not be removed by washing with buffer, 1 M NaCl or 1 M urea.

Dimyristoylphosphatidylcholine↗

Electron paramagnetic resonance studies on the fluidity and surface dynamics of egg phosphatidylcholine vesicles containing gangliosides.

The influence of different gangliosides (GM1, GD1a, GT1b) on the fluidity and surface dynamics of phosphatidylcholine small unilamellar vesicles was studied by electron paramagnetic resonance. 5- and 16-nitroxystearic acid, sounding respectively the region close to the surface and that close to the hydrophobic core of the vesicle, were employed as spin-label probes. The signals released by 5-nitroxystearic acid showed that the presence of gangliosides reduced the mobility of the hydrocarbon chains around the probe. The effect increased by increasing ganglioside concentration, and diminished from GM1 to GD1a and GT1b. The decrease of membrane fluidity was also monitored by the 16-nitroxystearic acid probe. On addition of Ca2+ the fluidity of ganglioside-containing vesicles (as signalled by the 5-nitroxystearic acid probe) promptly decreased, therefore returning slowly to the original value. It is suggested that gangliosides cause strong side-side head group interactions on the bilayer surface--between ganglioside oligosaccharide chains and between ganglioside and phosphatidylcholine polar portions--which lead the lipid chains to assembly in a more rigid fashion. The influence of Ca2+ is interpreted as due to lateral phase separation in the vesicle membrane. This phenomenon can be related to the formation or stabilization of ganglioside clusters on the vesicle surface.

Animals↗