Javascript must be enabled to continue!
Experimental Evaluation of Application of the Vaccine Strain <i>Yersinia pestis</i> EV NIIEG in Combination with Immune-Modulators
View through CrossRef
Abstract. Objective of the work was to conduct a comparative assessment of the immune-modulating effect of the combined use of Yersinia pestis EV NIIEG vaccine strain with Polyoxidonium and Ingaron preparations on a BALB/c mouse model.Materials and methods. Mice of the BALB/c line were immunized subcutaneously with Yersinia pestis EV NIIEG culture at a dose of 2.5 104 m.c. (1st group), in combination with Ingaron at a dose of 150 IU (2nd group) or with Polyoxidonium at a dose of 4 мg (3rd group), the 4th group is intact mice. On days 3, 7, 21 and 90 after immunization, the subpopulation composition of lymphocytes, the production of mediators of the cellular response (INF-ɣ and IL-10), the titers of specific antibodies to the capsular antigen of plague microbe (F1), the nuclear apparatus of lymphocytes, and the nature of histological changes in the organs of mice were determined. Characterization of immunogenic (protective) activity of the combined use of Y. pestis EV NIIEG with immune-modulators against Y. pestis 231 in experiments on BALB/c mice was performed on the 21st day after immunization through determining the number of dead animals and their average life expectancy.Results and discussion. The combined administration of Y. pestis EV NIIEG vaccine strain with Polyoxidonium or Ingaron to experimental animals allowed us to establish differences in the response of the immune system of biomodels, due to the mechanism of action of a specific immune-modulator. It has been established that both Polyoxidonium and Ingaron combined with Y. pestis EV NIIEG enhance the response of immune-competent cells in experimental animals, contribute to the activation of the humoral response and the production of mediators of the cellular response, do not have a damaging effect on the tissue of the macroorganism. At the same time, the efficacy of using combined vaccination of Y. pestis EV NIIEG with immune-modulators in the inoculation test is confirmed for Polyoxidonium only.
Russian Research Anti-Plague Institute Microbe
Title: Experimental Evaluation of Application of the Vaccine Strain <i>Yersinia pestis</i> EV NIIEG in Combination with Immune-Modulators
Description:
Abstract.
Objective of the work was to conduct a comparative assessment of the immune-modulating effect of the combined use of Yersinia pestis EV NIIEG vaccine strain with Polyoxidonium and Ingaron preparations on a BALB/c mouse model.
Materials and methods.
Mice of the BALB/c line were immunized subcutaneously with Yersinia pestis EV NIIEG culture at a dose of 2.
5 104 m.
c.
(1st group), in combination with Ingaron at a dose of 150 IU (2nd group) or with Polyoxidonium at a dose of 4 мg (3rd group), the 4th group is intact mice.
On days 3, 7, 21 and 90 after immunization, the subpopulation composition of lymphocytes, the production of mediators of the cellular response (INF-ɣ and IL-10), the titers of specific antibodies to the capsular antigen of plague microbe (F1), the nuclear apparatus of lymphocytes, and the nature of histological changes in the organs of mice were determined.
Characterization of immunogenic (protective) activity of the combined use of Y.
pestis EV NIIEG with immune-modulators against Y.
pestis 231 in experiments on BALB/c mice was performed on the 21st day after immunization through determining the number of dead animals and their average life expectancy.
Results and discussion.
The combined administration of Y.
pestis EV NIIEG vaccine strain with Polyoxidonium or Ingaron to experimental animals allowed us to establish differences in the response of the immune system of biomodels, due to the mechanism of action of a specific immune-modulator.
It has been established that both Polyoxidonium and Ingaron combined with Y.
pestis EV NIIEG enhance the response of immune-competent cells in experimental animals, contribute to the activation of the humoral response and the production of mediators of the cellular response, do not have a damaging effect on the tissue of the macroorganism.
At the same time, the efficacy of using combined vaccination of Y.
pestis EV NIIEG with immune-modulators in the inoculation test is confirmed for Polyoxidonium only.
Related Results
Role of the
Yersinia pestis
phospholipase D (Ymt) in the initial aggregation step of biofilm formation in the flea
Role of the
Yersinia pestis
phospholipase D (Ymt) in the initial aggregation step of biofilm formation in the flea
ABSTRACT
Transmission of
Yersinia pestis
by fleas depends on the formation of condensed bacterial agg...
High Homogeneity of the
Yersinia pestis
Fatty Acid Composition
High Homogeneity of the
Yersinia pestis
Fatty Acid Composition
ABSTRACT
The cellular fatty acid compositions of 29 strains of
Yersinia pestis
representing the global diversity of this species have...
Modulation of Yersinia pestis virulence involving the flagellin locus and phase variation
Modulation of Yersinia pestis virulence involving the flagellin locus and phase variation
Modulation de la virulence de Yersinia pestis impliquant le locus de la flagelline et un processus de variation de phase
En tant que source de pandémies mondiales, ...
Burden of the Beast
Burden of the Beast
Introduction
Throughout the COVID-19 pandemic, and its fluctuating waves of infections and the emergence of new variants, Indigenous populations in Australia and worldwide have re...
Pembrolizumab and Sarcoma: A meta-analysis
Pembrolizumab and Sarcoma: A meta-analysis
Abstract
Introduction: Pembrolizumab is a monoclonal antibody that promotes antitumor immunity. This study presents a systematic review and meta-analysis of the efficacy and safety...
The high‐pathogenicity island of Yersinia pseudotuberculosis can be inserted into any of the three chromosomal asn tRNA genes
The high‐pathogenicity island of Yersinia pseudotuberculosis can be inserted into any of the three chromosomal asn tRNA genes
Pathogenicity islands (PAIs) have been identified in several bacterial species. A PAI called high‐pathogenicity island (HPI) and carrying genes involved in iron acquisition (yersin...
Genetic Diversity and Spatial Distribution of Yersinia pestis by Core Genome-Based Multilocus Sequence Typing Analysis
Genetic Diversity and Spatial Distribution of Yersinia pestis by Core Genome-Based Multilocus Sequence Typing Analysis
Yersinia pestis is the etiological agent of plague, a severe and often fatal disease in humans when left untreated. Because of the high genetic clonality of Y. pestis, high-resolut...
Possibilities and prospects of using biofluorescent proteins at the stage of preclinical evaluation of live vaccines, using the example of the <i>Yersinia pestis</i> vaccine strain EV NIIEG pTURBOGFP-B
Possibilities and prospects of using biofluorescent proteins at the stage of preclinical evaluation of live vaccines, using the example of the <i>Yersinia pestis</i> vaccine strain EV NIIEG pTURBOGFP-B
Introduction. Currently, studies aimed at finding the most informative and optimized method for assessing the survival rate of the plague microbe vaccine strain in the body of anim...

