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Biomedical subjects

V A Naumov

Publications and source records attributed to V A Naumov.

At least 19 recordsLinked to original sources

[Comparative analysis of methods of diagnosis of chlamydia infection].

In case of a correct sampling, the diagnostic value of optic and electron microscopy for detecting Chlamydia infection is not inferior to that of direct microimmunofluorescence (DMIF) and higher than that of enzyme immunoassay (EIA). Optic microscopy showed that basal vaginal epithelium and buccal mucosa can be infected with Chlamydia. Provazek bodies were detected in the buccal mucosa of the overwhelming majority of patients with genital chlamydiasis. These results were confirmed by DMIF and EIA. Since none of the diagnostic methods is 100% reliable, we recommend using two methods: inexpensive optic microscopy and polymerase chain reaction or DMIF.

Chlamydia↗

Methorchiasis in the residents of Novosibirsk area, Russia.

Infection with Methorchis bilis was recognized for the first time in the residents of Novosibirsk area (Russia). During a serological survey (37 patients in toto), it was possible to demonstrate that 48.5% of the serum samples tested possessed antibodies to Opisthorchis felineus antigens, 37.8% to both Opisthorchis felineus and Methorchis bilis antigens, and 13.5% to Methorchis bilis antigens only.

Animals↗

Polyclonal antibodies from blood and cerebrospinal fluid of patients with multiple sclerosis effectively hydrolyze DNA and RNA.

It is known that in the blood of patients with some autoimmune diseases catalytically active antibodies hydrolyzing proteins, DNA, and RNA may be detected. In the present work homogeneous preparations of IgG antibodies (Ab) possessing high affinity for nucleic acids (NA) were obtained for the first time from blood and cerebrospinal fluid of patients with multiple sclerosis (MS). The fraction of IgG Ab as well as its Fab fragments and isolated light chains of both kappa- and lambda-types were shown to catalyze effectively the hydrolysis of DNA and RNA. It is shown by different methods that the capability for nucleic acid hydrolysis is an intrinsic property of the polyclonal Ab. NA-hydrolyzing Ab were detected in the blood of 69 of 72 and in the cerebrospinal fluid of 5 of 5 examined MS patients, while they were not detected in the blood of any of 50 healthy donors examined. Comparison of relative rates of RNA hydrolysis and of the substrate specificity in hydrolysis of various model RNAs--cCMP, poly(U), poly(A), and poly(C)--revealed pronounced differences of MS antibodies from ribonucleases of human blood, ribonuclease A, and all earlier described abzymes. The abzymes are usually characterized by relatively low specific activities in comparison with that of normal enzymes catalyzing analogous reactions. Ab from the blood of MS patients are the first example of autoabzymes whose specific activity in RNA hydrolysis is comparable or even higher than that of pancreatic ribonuclease A--one of the most active RNA-hydrolyzing enzymes.

Antibodies, Catalytic↗

RNA-hydrolyzing antibodies from peripheral blood of patients with lupus erythematosus.

Experiments and hydrolysis of substrates with known spatial structures (such as yeast tRNAPhe, as well as normal and mutant tRNALys from human mitochondria produced by transcription of the appropriate DNA species, that is, RNA genes) were performed to study the ribonuclease activity of antibodies isolated from blood sera of patients with systemic lupus erythematosus (SLE). The antibody preparations contained two types of ribonuclease activities: the first corresponded to the specificity of ribonuclease A and was found during hydrolysis at low salt concentrations, whereas the second was stimulated by Mg2+ and displayed unique specificity toward double-stranded regions of the substrate. The possible use of the antibody preparations as tools for structural studies of conformational differences between RNA molecules was examined. In experiments with unmodified and mutant tRNALys species differing in one base found in the T-loop, we found that hydrolysis with SLE antibodies can detect small local structural changes in RNA under physiological conditions.

Antibodies, Catalytic↗

DNA- and RNA-hydrolyzing antibodies from the blood of patients with various forms of viral hepatitis.

Antibodies (Abs) hydrolyzing proteins, DNA, and RNA are detected in the blood of patients with various autoimmune diseases. In the present work, homogeneous preparations of IgG Abs from the blood of the healthy donors as well as patients with A, B, C, and delta types of viral hepatitis, influenza, pneumonia, tuberculosis, tonsillitis, duodenal ulcer, and some types of cancer were purified. For the first time, the fraction of IgG and its Fab fragments of patients with viral hepatitis were shown to have high DNA- and RNA-hydrolyzing activity. In case of Abs from the healthy donors and patients with other diseases, high activity of Abs was not detected. The data obtained by various methods indicate that the activity of hepatitis Abs is an intrinsic property of the immunoglobulins. The relative rates of hydrolysis of cCMP, poly(U), poly(A), poly(C), and tRNA(Phe) by hepatitis Abs were compared with those of RNase A and other RNases from human blood. Significant differences in activities of Abs and nucleases in hydrolysis of model substrates were demonstrated. Thus, catalytically active Abs can appear in the blood of patients not only with autoimmune disorders, but with viral diseases as well.

Antibodies, Antinuclear↗

[Construction of probes for hybridization with hepatitis A virus RNA based on phage M13].

Three fragments of a DNA copy complementary to tre hepatitis A virus RNA have been isolated from the pHAV-VPI-22 plasmid and cloned in M 13 mp 8 vector. The 140, 250 and 390 b. p. fragments corresponded to the viral genome fragment coding for VP1 protein. Single-stranded DNAs of the hybrid phages with 250 b. p. and 390 b. p. inserts have been used for radioactive probe synthesis. The specificity of the probes for viral RNA was confirmed in hybridization with hepatitis A virus RNA purified from the virus-infected cell culture. The hybridization was shown to detect up to 10(-12)-10(-13) g of the virus. A principal possibility to use the probes in diagnostic purposes was demonstrated by the virus detection in blood samples obtained from patients with hepatitis A infection.

Coliphages↗