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Biomedical subjects

E V Kriukova

Publications and source records attributed to E V Kriukova.

7 recordsLinked to original sources

[Gangliosides modulate lipoxygenase oxidation in human lymphocytes].

Using reverse phase high performance chromatography with UV-detection, the arachidonic acid cascade in human peripheral blood lymphocytes (PBL) was studied. It was found that PBL oxidized arachidonic acid via the lipoxygenase pathway, 12-hydroxyeicosatetraenoic acid (12-HETE) being the major metabolite of endogenous arachidonic acid. Exogenous arachidonic acid added to human PBL suspensions increased 12-HETE synthesis 5-7 times. In another experimental series the effects of gangliosides (GD3, GM1 and GM3) on lipoxygenase-catalyzed oxidation of arachidonic acid in human lymphocytes were investigated. All the gangliosides tested stimulated PBL to secrete 12-HETE both from endogenous and exogenous arachidonic acid. In most cases the stimulating effect of GD3 was much more apparent that those of GM1 and GM3.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid↗

[Composition of fatty acids and sphingosine bases of placental gangliosides].

The fatty acids and sphingosine bases from major placenta gangliosides (NeuAcLacCer, IV3NeuAc-nLc4Cer, VI3NeuAc-nLc6Cer, (NeuAc)2LacCer, II3IV3(NeuAc)2Gg4Cer and VI3NeuAc, IV6(II3NeuAc-nLcNAc)-nLc6Cer) were studied. The C18-sphingenine was shown to be present in all ganglioside fractions; fraction GD1a contained, in addition, C20-sphingenine. Saturated fatty acids were identified as major fatty acid fragments. The content of long-chain acids (22-25 C-atoms) in the monosialogangliosides was much higher than that in disialogangliosides.

Chromatography, Gas↗

[Gangliosides from human placenta].

Gangliosides of human placenta were studied, using biochemical methods and specific antibodies. The placenta was found to contain three types of gangliosides with oligosaccharide chains Lac, GgOse4 and nLcOse4.

Chromatography, Gas↗

[Sensitive nonradioactive screening method for compounds interacting with alpha7-cholinoreceptor].

A sensitive nonradioactive method for detection of substances interacting with the neuronal nicotinic acetylcholine alpha 7-type receptor (AChR) was proposed. The method uses biotinylated alpha-cobratoxin (Bt-CTX) and is based on the ability of the N-terminal ligand-binding extracellular domain (LBED) of AChR to interact with alpha-cobratoxin (CTX) as does the whole receptor. LBED was produced by heterologic expression of a gene fragment of the alpha 7 subunit of AChR from the rat brain in Escherichia coli cells sorbed on wells of a 96-well plate and incubated with Bt-CTX. The specifically bound Bt-CTX was determined by staining with streptavidin-peroxidase complex. The ability of other compounds to interact with alpha 7-AChR was checked according to the degree with which they inhibit Bt-CTX binding to LBED. Nicotine, carbamylcholine, d-tubocurarin, anabaseine, conotoxin ImI, and neurotoxin II were used as model compounds. The sensitivity of this method was comparable with that of the radioligand method (up to 10 pmol).

Anabasine↗

[The activity of NAD(P)-dependent dehydrogenases in blood lymphocytes in children and adolescents with different duration of insulin-dependent diabetes mellitus].

The levels of blood lymphocyte NAD(P)-dependent dehydrogenases were investigated in children and teenagers with different duration of insulin-dependent diabetes mellitus (IDDM). The level of some NAD(P)-dependent dehydrogenases changed proportionally in dependence of IDDM duration and insulin therapy did not restore their activities to the normal level. It is suggested that these changes may reflect decrease of energy metabolism and plastic processes in blood lymphocytes from diabetic children and teenagers reflecting. These changes correspond to altered functional reactivity of immunocompetent cells and represent metabolic basis of immunopathogenic complications of IDDM.

Adolescent↗

[5-fluoro-tryptophan-containing N-terminal domain of the alpha-subunit of the Torpedo californica acetylcholine receptor: preparation in E. coli and 19F NMR study].

A protein corresponding to the extracellular 1-209 domain of the alpha-subunit of the nicotine acetylcholine receptor from the electric organ of Torpedo californica was prepared using the corresponding cDNA domain by culturing Escherichia coli cells on a synthetic medium supplemented with 5-fluoro-L-tryptophan. The presence of a (His)6 fragment preceding the 1-209 sequence allowed purification of the protein isolated from inclusion bodies by affinity chromatography on Ni-NTA Agarose. The incorporation of 5-fluorotryptophan residues was found by 19F NMR to be approximately 50%. The spectrum of the protein reduced under denaturing conditions and subsequently reoxidized in a dilute solution under denaturing conditions in the presence of 0.05% SDS was sufficiently resolved, which allowed partial assignment of 19F resonances using the Trp60Phe mutant protein. The ability of the prepared domains to specifically bind snake alpha-neurotoxins was demonstrated with the use of radioiodinated alpha-bungarotoxin and trifluoroacetylated alpha-cobratoxin.

Animals↗