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Biomedical subjects

L A Sibel'dina

Publications and source records attributed to L A Sibel'dina.

At least 19 recordsLinked to original sources

[Effect of surface-active substances on the dynamics of intracellular pH in Fusidium coccineum].

Correlation between the dynamics of intracellular pH and antibiotic synthesis in Fusidium coccineum strains with different biosynthetic capacity was studied. At the beginning of the intensive antibiotic synthesis the intracellular pH in the low-active and highly-active strains was minimum and maximum respectively. In the highly active strain an increase in the intracellular pH of the cytoplasm after the addition of Tween-80 and Factor-d2 analogs to the growth medium was observed.

Anti-Bacterial Agents↗

[Stability of a new product of oxidative stress in bacterial cells].

Data on 32P-label incorporation with subsequent addition of non-radiolabelled o-phosphate suggest that the new phosphorus compound, 2-C-methyl-D-erythritol-2,4-cyclopyrophosphate (MEC), accumulated in the cells of some bacterial species in response to oxidative stress does not rapidly exchange phosphorus with external o-phosphate 3 hours after the introduction of its synthesis inducers into the Corynebacterium ammoniagenes culture. The accumulated MEC is retained in the cells despite the action of the cell wall synthesis inhibitor, chloramphenicol, or the energetic poisons, KCN and iodoacetate and also under anaerobic conditions. It has been shown that incubation of the cell-free lysate of a non-induced culture, Micrococcus luteus, with MEC does not result in MEC hydrolysis; therefore, MEC accumulation after the redox-mediator addition is hardly due to the hydrolase inactivation but, rather, is due to the activation of the MEC-synthesizing enzyme. The cells of C. ammoniagenes incorporate 32P from [32P]MEC but not 14C from [14C]MEC. This points to MEC hydrolysis prior to the uptake of its phosphoryl fragment by the cells. In this case 32P is found in the fractions differing by their position from MEC fractions. Experiments with sheep erythrocytes and mouse splenocytes revealed that MEC (10-100 micrograms per 1,000,000 splenocytes) does not influence the antibody production by these cells, whereas used at concentrations of 200-550 micrograms per 1,000,000 cells, MEC enhances the antibody production. However, while doing so, MEC causes the destruction of a considerable portion of splenocytes and sheep erythrocytes.

Animals↗

[Free radical oxidation and tubular dysfunctions in patients with chronic kidney failure].

Sixty patients with chronic renal failure (CRF) were studied for the rates of lipid peroxidation (LPO), the state of the antioxidative system (AOS) as well as for the morphofunctional state of biomembranes in renal tubules measured by excretion of low-molecular compounds tested in urine x by means of proton nuclear magnetic resonance spectroscopy. The control group numbered 35 patients with glomerulonephritis free of functional disturbances in the kidneys. The increased values of malonic dialdehyde levels in red blood cells and blood serum and those of diene conjugates in red blood cell membranes provide evidence for a significant increase of the LPO levels. Furthermore, depression of the AOS was revealed, manifested by the decreased levels of blood serum alpha-tocopherol as well as by unstable levels of superoxide dismutase in red blood cells. In the presence of the high LPO levels significant tubular dysfunctions were progressing, parallel with aggravation of renal function. Disturbances detected in excretion and reabsorption of amino acids (leucine, alanine, glycine, valine, histidine), thin organic acids and ketone bodies in CRF patients point to the existence of disturbances in tubular membranes. Tubular dysfunction appears to be caused by the disturbances of the biomembrane morphofunctional states induced by the high levels of free radical oxidation as well as by the AOS function failure.

Adolescent↗

[Evaluation of maximal Na K ATPase activity in the erythrocytes of patients with various types of arterial hypertension using the Na-23-NMR method].

The paper provides measurements of maximal Na+, K(+)-ATPase activity in 20 patients with hypertensive disease, 20 patients with secondary hypertension and 20 healthy donors. The investigation was made by high-resolution nuclear magnetic resonance using sodium nuclei. A significant decrease was found in Na+, K(+)-ATPase activity in the patients with hypertensive disease (9.0 +/- 0.3 mg-equiv. per lites cells an hour) as compared with those with secondary hypertension (10.3 +/- 0.3 mg-equiv. per liter cells an hour) and the controls (10.5 +/- 0.3 mg-equiv. per liter cells an hour), which supports the findings of impaired membrane morphology in hypertensive disease.

Adolescent↗

[Possibilities of using proton nuclear magnetic resonance spectroscopy in multicomponent analysis of the urine in glomerulonephritis].

Methodological approaches to investigation of low-molecular urine metabolites in health and glomerulonephritis (GN) by means of proton nuclear magnetic resonance spectroscopy (1H NMR) have been analysed. The ways to preserve and concentrate the urine samples by freezing and lyophilization for further storage and spectra quality improvement are substantiated. The method of the spectra treatment with calculation of relative levels of urine substances is detailed. The differences in the ratios of excreted low-molecular metabolites revealed in healthy subjects and GN patients in relation to the severity of chronic renal insufficiency confirm the feasibility of using the 1H NMR data of urine as diagnostic and predictive criteria in GN.

Adolescent↗

[Prognostically significant indices of the bioenergetic metabolism of the brain in experimental ischemia (a NMR spectroscopic study)].

Initial levels of phosphate brain metabolites were measured using 31P NMR spectroscopy in rats which subsequently died or survived under bilateral ligation of common carotid arteries. A multidimensional analysis was applied. In the rats which died after the brain ischemia: (1), NAD and NADH+ concentrations were much higher than those of creatine phosphate or ATP (i.e. baseline dysbalance existed between the systems of hydrogen acceptors and major macroergic substances); (2), the force of relationships between parameters of NMR spectra in each correlation matrix were 10 times higher and the variability of elements in each matrix was significantly lower than those of the surviving group. These regularities can be used in detection of special groups at high professional risk and in designing individual procedures of prevention and treatment of cerebral circulation disorders. The data are valuable in terms of development of drugs which would correct the dysbalance between hydrogen acceptors and macroergic systems thus providing a metabolic defense for the ischemic brain.

Animals↗

[Phosphorus-containing metabolites in the cells of anthracycline-resistant strains of leukemia P388].

The method of 31P nuclear magnetic resonance has been used to study in vivo the level of phosphorus-containing metabolites in cells of two strains of murine leukemia P388 with the phenotype of the multidrug resistance and in cells of the parent strain. Cells of both resistant strains showed a depressed level of phosphomonoesters in comparison with the parent one. The influence of rubomycin and emoksil on the level of phosphorus-containing metabolites of drug-resistant and -sensitive strains has been evaluated. The drugs were established not to affect practically the pool of these metabolites of the resistant strains. Both drugs significantly increased the pool of phosphomonoesters in the parent strain cells.

Animals↗

[Rat liver energetics according to data of 31P-NMR in extreme states of the processes of biosynthesis of proteins and nucleic acids].

The dynamics of phosphomonoesters, phosphodiesters, Pi, ATP, ADP, NAD(H+) and uridine diphosphoglucose (UDPG) levels in rat liver upon sharp oscillations in the rates of protein and nucleic acid biosynthesis induced by a sublethal++ dose of cycloheximide was studied, using the 31P-NMR method. The results obtained with preparations of native liver are unaffected by fractionation, homogenization and chemical extraction procedures. It was demonstrated that oscillations of Pi, ATP and UDPG levels in liver cells reflect the changes in the energy consumption and intracellular energy-linked processes (e.g., glycolysis, oxidative phosphorylation, glycogen synthesis and consumption) under conditions of variable macromolecular synthesis rates. The oscillations in phosphomonoesters and phosphodiesters levels are mainly due to cycloheximide-induced lipid metabolism disturbances.

Animals↗

[The structure of products of modification of nucleotides and DNA by ethyleneimine and thio-TEPA].

Previously undescribed products of dGMP, GMP, AMP, dCMP and TMP aminoethylation by ethylenimine and N,N',N"-triethylenethiophosphoamide (thio-TEPA) have been obtained and shown to be aminoethyl esters of nucleotides with the free or substituted amino group. In case of dGMP and GMP ethylenimine and tio-TEPA alkylate not only phosphate but also the base residue at the N7 position. The 7-aminoethyl derivatives of dGMP and GMP, which thio-TEPA afforded, were characterized whereas the corresponding ethylenimine derivatives are decomposed under alkaline conditions in the course of the isolation. Possible reasons of extreme instability of these compounds are given. For the first time the ability of thio-TEPA to alkylate DNA at position 7 of guanine residue is shown by means of the luninescence method.

Alkylation↗

[Contrast and quantitative characteristics of biological tissues in experimental neoplastic processes based on biexponential relaxation analysis of NMR tomograms].

A method of contrast enhancement and quantification of experimental tumors in vivo by estimation of tissue proton transverse magnetic relaxation nonexponentiality is proposed. Relaxation time and percentage of a rapidly descending magnetization component due to intracellular water protons are followed for tumor and uninvolved tissues in a course of subcutaneously transplanted solid mouse melanoma B16 development. The exponential approximation of a relaxation curve within the 6-90 ms time range is shown to fit melanoma B16 tissue characterization. Contrast-enhanced calculated MR-images are presented.

Animals↗

[Directions of alkylation of deoxyguanosine and deoxyguanylic acid by thio-TEPA].

As exemplified with the reaction of well-known anticancer agent thio-TEPA with dGMP, the ability of ethylenimine derivatives to modify this DNA component under the conditions approaching the biological ones was demonstrated for the first time. Modification involves mainly the phosphate group alkylation. In addition, thio-TEPA alkylates the base in dGMP at position 7. The formation of dGMP 7-alkyl derivatives was confirmed by detecting the luminescent products generated in the course of this reaction.

Alkylation↗

[The 31P-NMR study of the metabolism of phosphate-containing compounds in the rat liver during inhibition of protein synthesis].

Using the 31P-NMR method, the composition of the pool of phosphate-containing metabolites in intact rat liver 72 hours following the blocking of protein biosynthesis by cycloheximide was studied. It was shown that during maximal inhibition, i.e., 2-3 hours after cycloheximide injection, the ATP concentration decreases approximately 5-fold, that of ADP and sugar phosphates--4- and 2-fold, respectively. The intracellular pH in hepatocytes was followed by measuring the chemical shift of the Pi signal. The reconstitution of intracellular pH after 2-3 hours is consistent with changes in the Pi level in hepatocytes. The experimental results were compared with the data of biochemical analysis. NMR seems to be a promising tool in the study of metabolism of various animal organs and tissues under physiological and pathological conditions.

Animals↗

[Localization of gramicidin S on the cytoplasmic membrane of Bacillus brevis and its effect on the activity of membrane enzymes].

It was shown that malate dehydrogenase of isolated membranes of the gramicidin S producer Bacillus brevis var. G.-B. (R.-form) is completely inhibited by the antibiotic (approximately 200 mkg/mg of protein). Succinate and NADH dehydrogenases at concentration up to 1 mg per mg of protein are insensitive to it, while corresponding oxidases are inhibited by the antibiotic not more than by 65 -- 75% apparently due to partial damage of the terminal parts of the respiratory chain. The respiration of the producer intact cells is inhibited by exogenous gramicidin S by not more than 55 -- 60%, while the respiration of antibiotic-sensitive cells of M.lysodeikticus is inhibited completely. It was shown that phosphatidyl ethanolamine (50%), phosphatidyl glycerol (15% and diphosphatidyl glycerol (25%) are the major phospholipid components of the membranes of the given strain of Bac. brevis. It was assumed that the resistance of Bac. brevis cells to gramicidin S is partly due to the constant ratio of the charged and amphoteric phospholipids. Using 31P-NMR spectroscopy, the kinetics of free phosphoric compounds in the cells and cell extracts of Bac. brevis during culture growth and gramicidin S synthesis were studied. The content of carbohydrate monophosphate, remained unaffected, while that of nucleoside di- and triphosphates and dinucleotides was low and at definite density and gramicidin S content (above 100 mkg/ml) fell down below the resolution capacity of the method employed. Evidence for gramicidin S localization of the Bac. brevis membrane and possible causes for the manifestation of the NADH dehydrogenase activity at a certain stage of culture growth are discussed.

Bacillus↗

[Structure of carminomycins II and III].

Carminomycins II and III, the main components of the carminomycin complex were isolated in pure state. Their crystalline exalates and acetate of cardminomycin II were prepared. The PMR spectra of both carminomycins and the 13C-NMR spectra of the oxalates were obtained. The molecular weights of the antibiotics were determined by mass-spectrometry. On the basis of the PMR spectra it was shown that carminomycins II and III had similar structures and differed in the stereoisomerism of the nitrogen-free fragment linked to the amino sugar. This was confirmed by the 13C-NMR spectra. The above fragment (C7H15O3) is analogous to the fragment of baumycins A1 and A2 described earlier.

Acetates↗