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Biomedical subjects

N F Avrova

Publications and source records attributed to N F Avrova.

At least 37 records · Page 2Linked to original sources

[The effect of gangliosides on the adhesive interaction of Neisseria meningitidis with human cells].

The influence of a number of gangliosides and sialic acid on the adhesive interaction of meningococci and human cells have been studied. Sialic acid has been found to produce no influence on adhesion, and the preliminary treatment of meningococci with gangliosides or their preparations suppresses the capacity of meningococci for attachment to epithelial cells and erythrocytes. At the same time the degree of the inhibition of adhesion depends on the kind and concentration of gangliosides. On the contrary, after the treatment of target cells with gangliosides (1.25 micrograms/ml) the adhesion indices of meningococci with respect to these cells increase 5- to 8-fold. These data are indicative of the participation of gangliosides in the adhesive interaction of meningococci and human cells.

Animals↗

[Ganglioside-dependent factor inhibiting lipid peroxidation in synaptosomal membranes].

The inhibitory effect of exogenous monosialoganglioside GM1 on lipid peroxidation was studied in synaptosomal membranes from rat brain. When this effect was studied over a wide GM1 concentration range, the biphasic kinetics was observed, the highest per cent of inhibition (70%) was found at GM1 concentration of 10(-9)- 10(-8) M. In liposomes made from lipids isolated from rat synaptosomal membranes the inhibition of lipid peroxidation by exogenous GM1 was much less pronounced (25% at maximum) it reached the saturation at ganglioside concentration of 10(-8)-10(-6) M. The thermal denaturation (90 degrees C), storage at 0 degrees C, addition of polymyxin B result in considerable decrease of inhibitory effect of GM1 on lipid peroxidation in synaptosomal membranes. On the contrary phorbol-12-myristate-13-acetate (10(-6)M) or Ca2+ (2.10(-3)M) inhibit lipid peroxidation in synaptosomal membranes, the presence of exogenous GM1 in incubation medium having additional inhibitory effect. Possible mechanisms of ganglioside participation in regulation of functional activity of excitatory membranes are discussed.

Animals↗

[Protection of the monoamine oxidase in brain synaptosomes by fat- and water-soluble antioxidants during lipid peroxidation].

The protective effects of alpha-tocopherol, carnosine and their mixtures on monoamine oxidase activity, accumulation of lipid peroxidation products, lipid fatty acid composition, hydrophobicity and microviscosity of synaptic membranes during lipid peroxidation were studied. It was shown that the protective efficiency is more higher when the mixture of water and liposoluble antioxidants was used.

Animals↗

[Changes in the content and composition of phospholipids in various portions of the spinal cord in patients with tuberculosis of the spine].

Content and composition of phospholipids in various sections of the spinal marrow were investigated in patients with spinal tuberculosis. In the patients with tuberculous spondylitis, changes in the content of phospholipids in the spinal marrow were observed which were especially pronounced in the injured areas. The changes varied in different patients: in some patients, the content of the lipids was changed insignificantly while in the others it was markedly lowered (5-6-fold). Investigation of the phospholipid composition revealed in some patients decreased relative contents of the phosphatidyl ethanolamine plasmogenic form characteristic of myelin. It was suggested that the spinal marrow cells had undergone destruction in the injured areas.

Humans↗

Biochemical and immunochemical analysis of gangliosides of human small cell lung carcinoma: production of monoclonal antibodies against a unique marker of small cell lung carcinoma, ganglioside Fuc GM1.

Immunization of mice with a pure preparation of the ganglioside adsorbed on Salmonella typhimurium and hybridization of splenocytes with myeloma P3-X63-Ag 8.653 have resulted in hybridomas producing monoclonal antibodies against ganglioside Fuc GM1, a marker of human small cell lung carcinoma. Characterization of four hybridomal clones and data on the antigenic specificity of the monoclonal antibodies are given. All four monoclonal antibodies reacted only with Fuc GM1 in an enzyme-linked immunosorbent assay. In radioimmunodetection of the antigen on thin-layer plates, two of the four monoclonal antibodies gave cross-reactions with Fuc GD1b. The obtained monoclonal antibodies have revealed the presence of Fuc GM1 in all seven cases of small cell lung carcinoma we have studied and the absence of Fuc GM1 in the normal human lung tissue and in lung adenocarcinomas.

Antibodies, Monoclonal↗

[Lipid asymmetry and alpha-tocopherol distribution in outer and inner monolayers of bilayer lipid membranes].

Using chemical modification of aminophospholipids (phosphatidylethanolamine, PEA; phosphatidylserin, PS), the location of these phospholipids and their fatty acids has been studied in the inner and outer monolayers of unilayer liposomes. It has been shown that both PEA and PS were located predominantly in the inner monolayer and contained most of the polyenoic fatty acid residues. alpha-tocopherol incorporated into these liposomes was also located predominantly in the inner monolayers. In the liposomes, prepared from a single phospholipid (dioleoylphosphatidylcholine) no asymmetrical distribution of incorporated alpha-tocopherol was observed.

Animals↗

Systematic position of fish species and ganglioside composition and content.

The ganglioside content in brain of cartilaginous and bony fishes studied varies from 110 to 581 and from 104 to 595 micrograms sialic acid per g of wet weight respectively. A high degree of alkali lability and the predominance of C18-sphingosine and N-acetylneuraminic acid are typical of fish brain gangliosides. A high content of oligosialogangliosides with four and more residues of sialic acid and the predominance of gangliosides with gangliotetraosyl carbohydrate chain are characteristic for teleost brain. No pronounced difference was revealed in ganglioside composition and content of clupeomorphs and percomorphs. Gangliosides with short (lactosyl and gangliotriaosyl) carbohydrate chain predominate in brain of all cartilaginous fishes studied. A statistically significant difference was found in ganglioside content, relative oligosialoganglioside content and ganglioside fatty acid composition of squalomorphs and rajiformes, on one hand, and dasyatiformes and galeomorphs, on the other hand.

Animals↗

[Isolation and analysis of monoclonal antibodies against various gangliosides].

Female BALB/c mice were immunized with human melanoma (Mewo) cells containing ganglioside GD3 as a surface antigen. Immune splenocytes were fused with syngeneic P3-X63.Ag 8 myeloma cells. Antibodies produced by hybrid clones were analyzed by solid phase immunoassay. B, C, D and Q clones producing antibodies against Raja clavata brain gangliosides were obtained. Monoclonal B and C antibodies bound monosialogangliosides. Monoclonal D antibody bound a number of gangliosides but reacted predominantly with GD1a. Monoclonal Q antibody reacted selectively with GQ1c. It is assumed that ganglioside GQ1c is expressed on the melanoma cell surface and may be found only in the early stage of ontogenesis of high vertebrates.

Animals↗

The use of antioxidants to prevent glutamate-induced derangement of calcium ion metabolism in rat cerebral cortex synaptosomes.

Glutamate is shown to induce increases in intracellular Ca2+ concentrations ([Ca2+]i), increases in 45Ca2+ influx, decreases in the activity of Na+,K+-ATPase activity, and activation of the Na+/Ca2+ exchanger in rat cerebral cortex synaptosomes. NMDA receptor antagonists virtually prevented these effects. Preincubation of synaptosomes with alpha-tocopherol, superoxide dismutase, and ganglioside GM1 normalized [Ca2+]i, 45Ca2+ influx, and Na+,K+-ATPase activity in rat cerebral cortex synaptosomes exposed to glutamate. Glutamate and GM1 activated the Na+/K+ exchanger, and their effects were additive. Calcium ions entering cerebral cortex nerve cells via NMDA receptors during exposure to high glutamate concentrations appeared to be only the trigger for the processes activating free-radical reactions. Activation of these reactions led to increases in Ca2+ influx into cells, decreases in Na+,K+-ATPase activity, and significant increases in [Ca2+]i, though this could be prevented by antioxidants and gangliosides.

Animals↗