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Biomedical subjects

N M Balaeva

Publications and source records attributed to N M Balaeva.

At least 19 recordsLinked to original sources

[Serological demonstration of the detection of tick-borne rickettsial disease in Astrakhan Province].

Starting from 1978, noncontagious febrile diseases of unclear etiology, accompanied by pronounced headache, roseolous-papular eruptions, prolonged convalescence period, are registered in May-September in Astrakhan Province. These diseases can be effectively treated with chrolamphenicol. In 11 out of 12 sera obtained from such patients the complement fixation test with the antigens of rickettsiae causing tick-borne spotted fever, epidemic typhus, as well as Coxiella burnetii antigen, revealed the presence of antibodies (in 8 sera) only to the antigens of rickettsiae causing tick-borne spotted fever (R. akari, R. conorii, R. sibirica), or the titers of antibodies to these antigens were greater (1 serum), equal and lower (2 sera) in comparison with those of the antigens of rickettsiae causing epidemic typhus. The dynamics and values of antibody titers in 7 patients with the antigens of three rickettsial species of the tick-transmitted biotype indicated that the disease was related to tick-borne spotted fever.

Antibodies, Bacterial

Properties in culture and persistence in cotton rats of the Rickettsia prowazekii vaccine strain E and its mutants.

Cultural properties and the capacity for persistence were studied in spontaneous erythromycin-resistant (E errSM), in induced erythromycin-resistant (E errI) mutants and in a virulent revertant (E Vir) of the vaccine strain E, as compared with parent vaccine strain E and standard virulent strain Breinl of Rickettsia prowazekii. Cultural properties of the strains were found to differ in passages in chick embryos (CE) and cultures of FL cells. Multiplication indices in CE of mutant E errI were significantly lower than those of other strains (E, E errSM, E Vir, Breinl). The multiplication rate in FL cells was found to be high in strains E errSM, Breinl, E Vir, being much lower in strains E errI and E. The capacity of the virulent revertant E Vir to persist in cotton rat (CR) was higher as compared with that of standard strain Breinl and significantly higher than that of the parent strain E. Low level carrier state of rickettsia was registered in CR infected with the mutant E errI.

Animals

[Methods of isolation and polypeptide composition of membrane fractions of Rickettsia prowazekii].

The methods of cell lysis by lysozyme in tris-EDTA-sucrose with the consequent disruption of spheroplasts by the osmotic shock were used to obtain the total membranes from the intact or temperature-inactivated Rickettsia prowazekii. Detergents solubilization methods were used for analysis of outer membrane proteins. Sarcosyl insoluble material is shown to contain the main 134, 31, 29.5 and 25 Kd proteins, the minor 78, 60, 42, 17 Kd proteins, while the mixture of both membranes possess a more complex composition. Treatment of total membranes by the 2% octylglycoside results in elimination of the 31 Kd polypeptide. Inactivated Rickettsia can be used for isolation of the outer layer proteins diminishing the risk of working with this pathogenic microorganism.

Bacterial Outer Membrane Proteins

[The rickettsial genome studied by DNA restriction analysis].

The restriction analysis of 6 Rickettsia prowazekii strains with the use of 8 restrictases (Cfr13I, EcoRI, HindIII, MSpI, MvaI, PstI, XhoI, BamHI) has been carried out. In the presence of considerable homology in the restriction pictures of DNA in these strains some differences in 1-2 fragments within the range of 8,000-20,000 nucleotide pairs have been established. The strains under study have been divided into two groups according to the character of differences in their restrictograms: the group of virulent typing strain Breinl (Breinl, G. Anan'ev) and the group of strain E with low pathogenicity (E, EVir, Katsinian). Differences in the restrictograms of DNA do not correlate with the virulence of R. prowazekii strains and the areas of their isolation.

DNA Restriction Enzymes

[Electrophoretic and immunochemical characteristics of proteins of Rickettsia prowazekii strains of various virulence].

PAAG-electrophoresis of the isogenic pair of Rickettsia prowazekii strains E and Evir lysates demonstrate the similarity in polypeptide tracks. The different electrophoretic mobility of the Mr 30 Kd protein from these strains as compared with the mobility of analogous protein from the standard virulent Breinl strain is registered. In immunoblot experiments the specific rabbit antiserums obtained on the 30th day of infection with the Breinl, E or Evir strains demonstrate the presence of the different main antigens 60 Kd or 70 Kd. The difference evidently reflects the specificity of development of two forms of infection by the strains having different virulence. The surface tris-soluble antigens of Rickettsia prowazekii have the similar polypeptide contents and immunochemical properties. The main component of tris-soluble antigens Mr 130 Kd protein is not strain specific having the common thermolabile epitope.

Bacterial Proteins

[Inactivation of concentrated biomasses of Rickettsia prowazekii].

The methods used for the sparing inactivation of highly concentrated R. prowazekii biomass and for the decrease of its infectious activity are described. These methods are recommended for use in experiments in the field of molecular biology, as well as for disinfection of different materials contaminated with rickettsiae. As conditions for complete inactivation, incubation at 50 degrees C for 1 hour without chemical disinfectants, treatment with 0.5% phenol solution at 30 degrees C for 12 hours and with 0.1% formaldehyde solution at 4 degrees C for 24 hours have been selected. Treatment with 0.5% phenol solution at 36 degrees C for 1 hour or incubation at 45 degrees C without the use of disinfectants ensures an essential decrease in the infectivity of the material if the work with viable infective agents is necessary. Ultraviolet irradiation for 1.5 hours and exposure to the action of 0.1-0.5% sodium azide are less effective.

Azides

Methods for purification of Rickettsia prowazekii separated from the host tissue: a step-by-step comparison.

Two methods for purification of Rickettsia prowazekii strains E, E Vir, and Breinl grown in chick embryo yolk sacs are described. These methods combine either differential centrifugation or sucrose mix, centrifugation through sucrose cushion, 10 mmol/l MgCl2 treatment, filtration through a glass filter AP-20 and 2 cycles of verografin discontinuous density gradient centrifugation. The purification procedure including sucrose mix allowed to recover about 38-42% biologically active rickettsiae, a yield which was by 10% higher than that obtained by the method beginning at differential centrifugation. The rickettsiae free of host cell components preserved their infectious activity. The obtained biomass was suitable for immunological and biological characterization of Rickettsia prowazekii and for isolation of its total DNA.

Animals

Restriction endonuclease analysis of the DNA of Rickettsia prowazekii vaccine strain E and its revertant.

The DNA of Rickettsia prowazekii vaccine strain E was analysed by restriction analysis with 17 endonucleases in comparison with its virulent revertant - Evir and the virulent reference strain Breinl. The DNA of cloned and uncloned strains showed identical restriction endonuclease patterns. In spite of stable differences in virulence, strains E and Evir displayed a totally identical DNA cleavage pattern indicating the absence of marked structural differences between their genomes. On the other hand 9 endonucleases showed differences in the restrictograms of the DNA strain Breinl as compared with strains E and Evir.

DNA Restriction Enzymes

[Infectivity and sensitivity to antibiotics of Rickettsia prowazekii mutants of the low-pathogenic strain E cultured in chick embryos].

Selection of mutants of a low pathogenic strain E of R. prowazekii is a trend in genetic investigation of this Rickettsia species and one of the approaches to stabilizing the strain avirulent properties with a purpose of using in vaccine prophylaxis of typhus. The mutants of R. prowazekii, strain E selected by the authors earlier were characterized with respect to their infective capacity for chick embryos (CE) and antibiotic sensitivity. It was found that the infective capacity for CE of the erythromycin resistant mutant induced by nitroso guanidine (EErrI) was by ID50 2-3 logarithms lower than that of the initial strain E. The infective capacity for CE of the rifampicin resistant mutant induced by nitroso guanidine (ERifrI) and the spontaneous erythromycin resistant mutant was similar to that of strain E. The ERifrI strain differed from the initial strain E by higher sensitivity to tetracycline and erythromycin and the EErrI strain differed from the initial strain E by higher sensitivity to tetracycline and rifampicin. It was shown that the biological properties of the nitroso guanidine-induced mutants resistant to rifampicin and erythromycin differed from those of the initial strain E and the properties of the spontaneous erythromycin resistant mutant were similar to those of the initial strain E.

Animals

[The sensitivity of a number of cell cultures to different strains of Rickettsia prowazekii].

The sensitivity of some cell cultures to different R. prowazekii strains (strain E with low pathogenicity, virulent strain Breinl, strains ERifRI and EVir) has been studied with a view to the selection of an adequate culture for growing these strains and the study of their biological properties. Experiments on titration in cells have revealed that 6- to 7-day primary and secondary irradiated quail fibroblasts and human amnion cells FL show the maximum sensitivity to all strains under study, comparable to that of chick embryos. The sensitivity of 6- to 7-day primary and secondary irradiated chick fibroblasts is faintly pronounced, and 24-hour chick and quail fibroblasts are still less sensitive. Cells FL have shown high sensitivity to strain E and mutant ERifRI in prolonged subculturing for 140 and 63 days (the term of observation) respectively after a single inoculation.

Animals

[The library of Rickettsia prowazekii genes].

The DNA of Rickettsia provazekii strain E was cleaved by PstI restriction endonuclease under the conditions of partial restriction. The fragments were inserted into the PstI site of pBR325 and cloned in this plasmid. E. coli strain HB101 was used as a recipient for cloning. 880 clones sensitive to ampicillin and resistant to tetracycline were selected from 5120 transformants. The cloning of rickettsial DNA has been confirmed by the blot hybridization technique. Analysis of individual and net probes of the hybrid DNA by gel electrophoresis makes it possible to conclude that 90% of the selected clones harbour hybrid plasmids, the size of the cloned fragments rangers from 0.9 to 10.4 Kb, the obtained library of clones contains 70% of the whole genome of Rickettsia provazekii.

Cloning, Molecular

[Biological properties of antibiotic-resistant mutants of the mildly pathogenic Rickettsia prowazekii E strain].

The use of R. prowazekii strain E with low pathogenicity as live vaccine against exanthematous typhus is limited by its high specific reactogenicity, which is probably due to the reversion of the virulence of the strain. One of the approaches to the stabilization of the avirulent properties of strain E is obtaining its mutants with stable decreased pathogenic properties. The article presents the data on the infectious properties of R. prowazekii antibiotic-resistant strain E mutants obtained in earlier experiments, in respect of chick embryos and laboratory animals, as well as the capacity of this strain for producing immunity to challenge with R. prowazekii virulent strain in guinea pigs. The study has revealed that the erythromycin-resistant mutant of R. prowazekii strain E, induced by nitrosoguanidine (NG), has lower infective capacity for chick embryos, guinea pigs, cotton rats and white mice. The infective capacity of the NG-induced rifampicin-resistant and spontaneous erythromycin-resistant mutants of R. prowazekii strain E is similar to the infective capacity of the initial strain. The rifampicin-resistant and spontaneous erythromycin-resistant mutants of R. prowazekii strain E possess immunogenicity similar to that of the initial strain E, and the NG-induced erythromycin-resistant mutant possesses lower, but sufficiently pronounced immunogenicity despite its decreased infective capacity for guinea pigs.

Animals

[Biochemical and genetical study of Rickettsia].

The review deals with the phenomenology in the studies on characteristics of surface antigenic and immunogenic structures of Rickettsia, their cellular membranes, the processes of metabolic cooperation and interaction with the host cells, and the structure of Rickettsia genome. The data on active antigenic and immunogenic proteins distribution in inner and outer membranes and on osmotically active functioning cellular membrane, including the specific substrate carriers, are discussed. The materials, are presented on the specific ADP-ATP transport system, slightly different from the mitochondrial one, in evidence that Rickettsia utilize ATP in two pathways: endogenous and exogenous. The metabolic regulatory processes, controlled by adenine nucleotides are discussed that could be used as a means of fitting to constantly changing conditions of Rickettsia ecological niche. The Rickettsia deficiency in AMP catabolism enzyme could be used for allosteric-regulation of citrate synthase, the key enzyme in the Krebs cycle. The data on the mol mass of Rickettsia DNA (1 x 10(9)) and the characteristics of plasmids are presented. In conclusion new data on molecular cloning of Rickettsia genes in vector plasmids and the restriction analysis of specific DNA sequences are discussed.

Rickettsia