scholarly journals Induction of Boosted Immune Response in Mice by Leptospiral Surface Proteins Expressed in Fusion with DnaK

2014 ◽  
Vol 2014 ◽  
pp. 1-11 ◽  
Author(s):  
Marina V. Atzingen ◽  
Dunia Rodriguez ◽  
Gabriela Hase Siqueira ◽  
Luciana C. C. Leite ◽  
Ana L. T. O. Nascimento

Leptospirosis is an important global disease of human and veterinary concern. Caused by pathogenicLeptospira, the illness was recently classified as an emerging infectious disease. Currently available veterinarian vaccines do not induce long-term protection against infection and do not provide cross-protective immunity. Several studies have suggested the use of DnaK as an antigen in vaccine formulation, due to an exceptional degree of immunogenicity. We focused on four surface proteins: rLIC10368 (Lsa21), rLIC10494, rLIC12690 (Lp95), and rLIC12730, previously shown to be involved in host-pathogen interactions. Our goal was to evaluate the immunogenicity of the proteins genetically fused with DnaK in animal model. The chosen genes were amplified by PCR methodology and cloned into pAE, anE. colivector. The recombinant proteins were expressed alone or in fusion with DnaK at the N-terminus. Our results demonstrate that leptospiral proteins fused with DnaK have elicited an enhanced immune response in mice when compared to the effect promoted by the individual proteins. The boosted immune effect was demonstrated by the production of total IgG, lymphocyte proliferation, and significant amounts of IL-10 in supernatant of splenocyte cell cultures. We believe that this approach could be employed in vaccines to enhance presentation of antigens ofLeptospirato professional immune cells.

Biology ◽  
2021 ◽  
Vol 10 (2) ◽  
pp. 70
Author(s):  
Malgorzata Kloc ◽  
Ahmed Uosef ◽  
Martha Villagran ◽  
Robert Zdanowski ◽  
Jacek Z. Kubiak ◽  
...  

The small GTPase RhoA, and its down-stream effector ROCK kinase, and the interacting Rac1 and mTORC2 pathways, are the principal regulators of the actin cytoskeleton and actin-related functions in all eukaryotic cells, including the immune cells. As such, they also regulate the phenotypes and functions of macrophages in the immune response and beyond. Here, we review the results of our and other’s studies on the role of the actin and RhoA pathway in shaping the macrophage functions in general and macrophage immune response during the development of chronic (long term) rejection of allografts in the rodent cardiac transplantation model. We focus on the importance of timing of the macrophage functions in chronic rejection and how the circadian rhythm may affect the anti-chronic rejection therapies.


Acta Naturae ◽  
2017 ◽  
Vol 9 (3) ◽  
pp. 4-11 ◽  
Author(s):  
I. V. Dolzhikova ◽  
E. A. Tokarskaya ◽  
A. S. Dzharullaeva ◽  
A. I. Tukhvatulin ◽  
D. V. Shcheblyakov ◽  
...  

The Ebola virus disease (EVD) is one of the most dangerous infections affecting humans and animals. The first EVD outbreaks occurred in 1976 in Sudan and Zaire. Since then, more than 20 outbreaks have occurred; the largest of which (2014-2016) evolved into an epidemic in West Africa and claimed the lives of more than 11,000 people. Although vaccination is the most effective way to prevent epidemics, there was no licensed vaccine for EVD at the beginning of the latest outbreak. The development of the first vaccines for EVD started in 1980 and has come a long technological way, from inactivated to genetically engineered vaccines based on recombinant viral vectors. This review focuses on virus-vectored Ebola vaccines that have demonstrated the greatest efficacy in preclinical trials and are currently under different phases of clinical trial. Particular attention is paid to the mechanisms of immune response development, which are important for protection from EVD, and the key vaccine parameters necessary for inducing long-term protective immunity against EVD.


2019 ◽  
Vol 2019 ◽  
pp. 1-12 ◽  
Author(s):  
Yingyu Chen ◽  
Lia Danelishvili ◽  
Sasha J. Rose ◽  
Luiz E. Bermudez

Bovine tuberculosis (bTB) is a highly transmissible infection and remains of great concern as a zoonosis. The worldwide incidence of bTB is in rise, creating potential reservoir and increased infection risk for humans and animals. In attempts to identify novel surface antigens of Mycobacterium bovis as a proof-of-concept for potential inducers of protective immunity, we investigated surface proteome of M. bovis BCG strain that was cultured under the granuloma-like condition. We also demonstrated that the pathogen exposed to the biologically relevant environment has greater binding and invasion abilities to host cells than those of bacteria incubated under regular laboratory conditions. A total of 957 surface-exposed proteins were identified for BCG cultured under laboratory condition, whereas 1,097 proteins were expressed under the granuloma-like condition. The overexpression of Mb1524, Mb01_03198, Mb1595_p3681 (PhoU1 same as phoY1_1), and Mb1595_p0530 (HbhA) surface proteins in Mycobacterium smegmatis leads to increased binding and invasion to mucosal cells. We also examined the immunogenicity of purified recombinant proteins and tested M. smegmatis overexpressing these surface antigens for the induction of protective immunity in mice. Significantly high levels of specific IgA and IgG antibodies were observed in recombinant protein immunized groups by both inhalation and intraperitoneal (IP) routes, but only IP delivery induced high total IgA and IgG levels. We did not detect major differences in antibody levels in the M. smegmatis group that overexpressed surface antigens. In addition, the bacterial load was significantly reduced in the lungs of mice immunized with the combination of inhaled recombinant proteins. Our findings suggest that the activation of the mucosal immunity can lead to increased ability to confer protection upon M. bovis BCG infection.


2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Monica C. Gestal ◽  
Laura K. Howard ◽  
Kalyan Dewan ◽  
Hannah M. Johnson ◽  
Mariette Barbier ◽  
...  

AbstractWell-adapted pathogens must evade clearance by the host immune system and the study of how they do this has revealed myriad complex strategies and mechanisms. Classical bordetellae are very closely related subspecies that are known to modulate adaptive immunity in a variety of ways, permitting them to either persist for life or repeatedly infect the same host. Exploring the hypothesis that exposure to immune cells would cause bordetellae to induce expression of important immunomodulatory mechanisms, we identified a putative regulator of an immunomodulatory pathway. The deletion of btrS in B. bronchiseptica did not affect colonization or initial growth in the respiratory tract of mice, its natural host, but did increase activation of the inflammasome pathway, and recruitment of inflammatory cells. The mutant lacking btrS recruited many more B and T cells into the lungs, where they rapidly formed highly organized and distinctive Bronchial Associated Lymphoid Tissue (BALT) not induced by any wild type Bordetella species, and a much more rapid and strong antibody response than observed with any of these species. Immunity induced by the mutant was measurably more robust in all respiratory organs, providing completely sterilizing immunity that protected against challenge infections for many months. Moreover, the mutant induced sterilizing immunity against infection with other classical bordetellae, including B. pertussis and B. parapertussis, something the current vaccines do not provide. These findings reveal profound immunomodulation by bordetellae and demonstrate that by disrupting it much more robust protective immunity can be generated, providing a pathway to greatly improve vaccines and preventive treatments against these important pathogens.


2021 ◽  
Vol 37 (4) ◽  
pp. 65-77
Author(s):  
G.M. Titareva ◽  
A.N. Mokrievich ◽  
T.I. Kombarova ◽  
G.M. Vakhrameeva ◽  
R.I. Mironova ◽  
...  

It is known that the body's defense against infection by the intracellular bacterium Francisella tularensis is provided by the activation of the cellular and humoral immune response. However, their role in long-term protection (25 years and more) against virulent strains of F. tularensis is not well understood. The identification of clear criteria for assessing protective immunity to the tularemia causative agent at different times after vaccination will make it possible to more efficiently develop new genetically determined vaccine strains. The goal of our research was to select and assess immunological parameters reflecting the protective properties of the vaccine strain F. tularensis 15 NIIEG and its derivatives, F. tularensis 15/23-1∆recA and F. tularensis 15/ 23-1/sodB∆recA, in the long term after immunization. To assess the functional activity of T and B cells, flow cytometry was used.The assessment of the production of cytokines IFN-γ, IL-4, IL-10, IL-17A and titers of specific class G immunoglobulins to F. tularensis lipopolysaccharide (LPS)in blood serum was performed by ELISA on days 30, 60, 90 and 180 after immunization. Evaluation of the protective properties of vaccine preparations in the above-mentioned terms was carried out after subcutaneous infection with test-infecting virulent strains, Schu and 503 of tularensis and holarctica subspecies, respectively. It was shown that vaccination with the studied strains in 100% of cases protected from infection with the strain 503 of the holarctica subspecies, analogous to the vaccine strain. When infected with a virulent Schu strain of the hetrologous tularensis subspecies, a decrease in the effectiveness of protection was observed starting from 60 days after immunization. Evaluation of immunological parameters showed that at all studied periods after immunization, IgG antibodies to F. tularensis LPS were detected in the blood sera of immunized mice. In vitro experiments on stimulation of immune response in spleen lymphocytes of vaccinated mice to the F. tularensis antigen showed a significant increase in the level of secreted IFN-γ, a slight increase in secreted IL-10 and an enhanced expression of the CD69 molecule on the surface of T and B cells. Thus, the level of IFN-γ and the expression of the CD69 molecule on the surface of T and B cells in response to restimulation of lymphocytes of immune animals with tularemia antigen can serve as criteria for immune protection in experimental tularemia in a mouse model at different times after vaccination. Key words: vaccine strain, Fransicella tularensis, immunogenicity, protection, memory T cells, IgG, cellular immunity Funding - The work was supported by the Branch Program of the Russian Federal Service for Surveillance on Consumer Rights Protection and Human Wellbeing.


Author(s):  
Mikael Sundin

• Most cases of TBE in childhood will present similarly as in adults. However, a more diffuse clinical picture is seen especially in preschool children. • Laboratory evaluation may show elevated blood inflammatory indices, but cerebrospinal fluid analysis and anti-TBEV serology are needed for establishing the diagnosis. • There is no specific treatment for TBE; supportive care needs to be provided based on the individual clinical course. • Deaths occur seldom in pediatric TBE, but severe courses have been reported in a fraction of the children. • Long-term somatic residua exist, but are uncommon (2%) in childhood TBE. Yet, long-term symptoms and neurodevelopmental/cognitive deficits are seen in 10–40% of infected children. • Protective immunity can be elicited in children by TBE vaccines as of 1 year of age.


Most cases of TBE in childhood will present similarly as in adults. However, a more diffuse clinical picture is seen especially in preschool children. Laboratory evaluation may show elevated blood inflammatory indices, but cerebrospinal fluid analysis and anti-TBEV serology are needed for establishing the diagnosis. There is no specific treatment for TBE; supportive care needs to be provided based on the individual clinical course. The mortality in pediatric TBE is very low, but severe courses have been reported in a fraction of the children. Long-term somatic residua exist, but are uncommon (2%) in childhood TBE. Yet, long-term symptoms and neurodevelopmental/cognitive deficits are seen in 10–40% of infected children. Protective immunity can be elicited in children by TBE vaccines as of 1 year of age.


2020 ◽  
Vol 11 ◽  
Author(s):  
David S. Kim ◽  
Sarah Rowland-Jones ◽  
Ester Gea-Mallorquí

In December 2019, an outbreak of a novel coronavirus (SARS-CoV-2) in Wuhan, China resulted in the current COVID-19 global pandemic. The human immune system has not previously encountered this virus, raising the important question as to whether or not protective immunity is generated by infection. Growing evidence suggests that protective immunity can indeed be acquired post-infection—although a handful of reinfection cases have been reported. However, it is still unknown whether the immune response to SARS-CoV-2 leads to some degree of long-lasting protection against the disease or the infection. This review draws insights from previous knowledge regarding the nature and longevity of immunity to the related virus, SARS-CoV, to fill the gaps in our understanding of the immune response to SARS-CoV-2. Deciphering the immunological characteristics that give rise to protective immunity against SARS-CoV-2 is critical to guiding vaccine development and also predicting the course of the pandemic. Here we discuss the recent evidence that characterises the adaptive immune response against SARS-CoV-2 and its potential implications for the generation of memory responses and long-term protection.


1999 ◽  
Author(s):  
Terry F. McElwain ◽  
Eugene Pipano ◽  
Guy H. Palmer ◽  
Varda Shkap ◽  
Stephn A. Hines ◽  
...  

Previous research and current efforts at control of babesiosis fall short of meeting the needs of countries where the disease is endemic, such as Israel, as well as the needs of exporting countries and countries bordering on endemic areas, such as the U.S. Our long-term goal is to develop improved methods of immunization against bovine babesiosis based on an understanding of the molecular mechanisms of immune protection and parasite targets of a protective immune response. In our previous BARD project, we established the basis for focusing on rhoptry antigens as components of a subunit vaccine against bovine babesiosis, and for additional research to better characterize rhoptry associated protein-1 (RAP-1) as a target of protective immunity. In this continuation BARD project, our objectives were to [1] optimize the immune response against RAP-1, and [2] identify additional rhoptry candidate vaccine antigens. The entire locus encoding B. bovis RAP-1 was sequenced, and the rap-1 open reading frame compared among several strains. Unlike B. bigemina, in which multiple gene copies with variant domains encode RAP-1, the B. bovis RAP-1 locus contains only two identical genes which are conserved among strains. Through testing of multiple truncated constructs of rRAP-1, one or more immunodominant T cell epitopes were mapped to the amino terminal half of RAP-1. At least one linear and one conformational B cell epitope have been demonstrated in the same amino terminal construct, which in B. bigemina RAP-1 also contains an epitope recognized by neutralizing antibody. The amine terminal half of the molecule represents the most highly conserved part of the gene family and contains motifs conserved broadly among the apicomplexa. In contrast, the carboxy terminal half of B. bovis RAP-1 is less well conserved and contains multiple repeats encoding a linear B cell epitope potentially capable of inducing an ineffective, T cell independent, type 2 immune response. Therefore, we are testing an amino terminal fragment of RAP-1 (RAP-1N) in an immunization trial in cattle. Cattle have beer immunized with RAP-1N or control antigen, and IL-12 with Ribi adjuvant. Evaluation of the immune response is ongoing, and challenge with virulent B. bovis will occur in the near future. While no new rhoptry antigens were identified, our studies did identify and characterize a new spherical body antigen (SBP3), and several heat shock proteins (HSP's). The SBP3 and HSP21 antigens stimulate T cells from immune cattle and are considered new vaccine candidates worthy of further testing. Overall, we conclude that a single RAP-1 vaccine construct representing the conserved amino terminal region of the molecule should be sufficient for immunization against all strains of B. bovis. While results of the ongoing immunization trial will direct our next research steps, results at this time are consistent with our long term goal of designing a subunit vaccine which contains only the epitopes relevant to induction of protective immunity. Parallel studies are defining the mechanisms of protective immunity. Apicomplexan protozoa, including babesiosis and malaria, cause persistent diseases for which control is inadequate. The apical organelles are defining features of these complex protozoa, and have been conserved through the evolutionary process, Past and current BARD projects on babesiosis have established the validity and potential of exploiting these conserved organelles in developing improved control methods applicable to all apicomplexan diseases.


COVID ◽  
2021 ◽  
Vol 1 (3) ◽  
pp. 608-621
Author(s):  
Arthur W. Currier ◽  
Madeline C. Jeshurin ◽  
Valerie B. Sampson

Coronavirus disease-2019 (COVID-19) vaccines are being used across the globe to reduce the risk of developing COVID-19, stop the transmission of severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), and end the pandemic. To address this, a massive global effort is underway for development of COVID-19 vaccines. As of September 2021, the World Health Organization (WHO) has documented 331 COVID-19 vaccine candidates, and 107 are in clinical evaluation, with 8 in Phase IV and 30 in Phase III clinical trials (WHO; COVID-19 vaccine tracker). At least 13 different vaccines are being issued for emergency use authorization. Specifically, the goal is to produce protective immunity to SARS-CoV-2 infection by stimulating an immune response to either the whole virus, viral protein, or nucleic acid products. The spike (S) proteins of SARS-CoV-2 that give the characteristic “corona” appearance of this family of viruses has emerged as an effective target for vaccines. Other viral candidates that are being developed also aim to produce immunity for COVID-19. In this review, we describe the different vaccine platforms, target candidates for vaccines, and their progress in COVID-19 vaccine development. This is critical since newly discovered SARS-CoV-2 variants of interest require understanding of how vaccines may provide the most effective long-term protection against infection.


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