Recombinant TgHSP70 Immunization Protects against Toxoplasma gondii Brain Cyst Formation by Enhancing Inducible Nitric Oxide Expression

Toxoplasma gondii is known to cause congenital infection in humans and animals and severe disease in immunocompromised individuals; consequently development of vaccines against the parasite is highly necessary. Under stress conditions, T. gondii expresses the highly immunogenic heat shock protein 70...

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Main Authors: Neide M. Silva, Paulo Czarnewski, Ester C. B. Araújo, Mário C. Oliveira, Tiago W. P. Mineo
Format: Article
Language:English
Published: Frontiers Media S.A. 2017-04-01
Series:Frontiers in Cellular and Infection Microbiology
Subjects:
Online Access:http://journal.frontiersin.org/article/10.3389/fcimb.2017.00142/full
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spelling doaj-056f631755c042448da5a65186caa36f2020-11-24T23:45:10ZengFrontiers Media S.A.Frontiers in Cellular and Infection Microbiology2235-29882017-04-01710.3389/fcimb.2017.00142257698Recombinant TgHSP70 Immunization Protects against Toxoplasma gondii Brain Cyst Formation by Enhancing Inducible Nitric Oxide ExpressionNeide M. Silva0Paulo Czarnewski1Ester C. B. Araújo2Mário C. Oliveira3Tiago W. P. Mineo4Laboratory of Immunopathology, Institute of Biomedical Sciences, Federal University of UberlândiaUberlândia, BrazilLaboratory of Immunopathology, Institute of Biomedical Sciences, Federal University of UberlândiaUberlândia, BrazilLaboratory of Immunopathology, Institute of Biomedical Sciences, Federal University of UberlândiaUberlândia, BrazilLaboratory of Immunopathology, Institute of Biomedical Sciences, Federal University of UberlândiaUberlândia, BrazilLaboratory of Immunoparasitology, Institute of Biomedical Sciences, Federal University of UberlândiaUberlândia, BrazilToxoplasma gondii is known to cause congenital infection in humans and animals and severe disease in immunocompromised individuals; consequently development of vaccines against the parasite is highly necessary. Under stress conditions, T. gondii expresses the highly immunogenic heat shock protein 70 (TgHSP70). Here, we assessed the protective efficacy of rTgHSP70 immunization combined with Alum in oral ME-49 T. gondii infection and the mechanisms involved on it. It was observed that immunized mice with rTgHSP70 or rTgHSP70 adsorbed in Alum presented a significantly reduced number of cysts in the brain that was associated with increased iNOS+ cell numbers in the organ, irrespective the use of the adjuvant. Indeed, ex vivo experiments showed that peritoneal macrophages pre-stimulated with rTgHSP70 presented increased NO production and enhanced parasite killing, and the protein was able to directly stimulate B cells toward antibody producing profile. In addition, rTgHSP70 immunization leads to high specific antibody titters systemically and a mixed IgG1/IgG2a response, with predominance of IgG1 production. Nonetheless, it was observed that the pretreatment of the parasite with rTgHSP70 immune sera was not able to control T. gondii internalization and replication by NIH fibroblast neither peritoneal murine macrophages, nor anti-rTgHSP70 antibodies were able to kill T. gondii by complement-mediated lysis, suggesting that these mechanisms are not crucial to resistance. Interestingly, when in combination with Alum, rTgHSP70 immunization was able to reduce inflammation in the brain of infected mice and in parallel anti-rTgHSP70 immune complexes in the serum. In conclusion, immunization with rTgHSP70 induces massive amounts of iNOS expression and reduced brain parasitism, suggesting that iNOS expression and consequently NO production in the brain is a protective mechanism induced by TgHSP70 immunization, therefore rTgHSP70 can be a good candidate for vaccine development against toxoplasmosis.http://journal.frontiersin.org/article/10.3389/fcimb.2017.00142/fullimmunizationrTgHSP70alumToxoplasma gondiitoxoplasmosis
collection DOAJ
language English
format Article
sources DOAJ
author Neide M. Silva
Paulo Czarnewski
Ester C. B. Araújo
Mário C. Oliveira
Tiago W. P. Mineo
spellingShingle Neide M. Silva
Paulo Czarnewski
Ester C. B. Araújo
Mário C. Oliveira
Tiago W. P. Mineo
Recombinant TgHSP70 Immunization Protects against Toxoplasma gondii Brain Cyst Formation by Enhancing Inducible Nitric Oxide Expression
Frontiers in Cellular and Infection Microbiology
immunization
rTgHSP70
alum
Toxoplasma gondii
toxoplasmosis
author_facet Neide M. Silva
Paulo Czarnewski
Ester C. B. Araújo
Mário C. Oliveira
Tiago W. P. Mineo
author_sort Neide M. Silva
title Recombinant TgHSP70 Immunization Protects against Toxoplasma gondii Brain Cyst Formation by Enhancing Inducible Nitric Oxide Expression
title_short Recombinant TgHSP70 Immunization Protects against Toxoplasma gondii Brain Cyst Formation by Enhancing Inducible Nitric Oxide Expression
title_full Recombinant TgHSP70 Immunization Protects against Toxoplasma gondii Brain Cyst Formation by Enhancing Inducible Nitric Oxide Expression
title_fullStr Recombinant TgHSP70 Immunization Protects against Toxoplasma gondii Brain Cyst Formation by Enhancing Inducible Nitric Oxide Expression
title_full_unstemmed Recombinant TgHSP70 Immunization Protects against Toxoplasma gondii Brain Cyst Formation by Enhancing Inducible Nitric Oxide Expression
title_sort recombinant tghsp70 immunization protects against toxoplasma gondii brain cyst formation by enhancing inducible nitric oxide expression
publisher Frontiers Media S.A.
series Frontiers in Cellular and Infection Microbiology
issn 2235-2988
publishDate 2017-04-01
description Toxoplasma gondii is known to cause congenital infection in humans and animals and severe disease in immunocompromised individuals; consequently development of vaccines against the parasite is highly necessary. Under stress conditions, T. gondii expresses the highly immunogenic heat shock protein 70 (TgHSP70). Here, we assessed the protective efficacy of rTgHSP70 immunization combined with Alum in oral ME-49 T. gondii infection and the mechanisms involved on it. It was observed that immunized mice with rTgHSP70 or rTgHSP70 adsorbed in Alum presented a significantly reduced number of cysts in the brain that was associated with increased iNOS+ cell numbers in the organ, irrespective the use of the adjuvant. Indeed, ex vivo experiments showed that peritoneal macrophages pre-stimulated with rTgHSP70 presented increased NO production and enhanced parasite killing, and the protein was able to directly stimulate B cells toward antibody producing profile. In addition, rTgHSP70 immunization leads to high specific antibody titters systemically and a mixed IgG1/IgG2a response, with predominance of IgG1 production. Nonetheless, it was observed that the pretreatment of the parasite with rTgHSP70 immune sera was not able to control T. gondii internalization and replication by NIH fibroblast neither peritoneal murine macrophages, nor anti-rTgHSP70 antibodies were able to kill T. gondii by complement-mediated lysis, suggesting that these mechanisms are not crucial to resistance. Interestingly, when in combination with Alum, rTgHSP70 immunization was able to reduce inflammation in the brain of infected mice and in parallel anti-rTgHSP70 immune complexes in the serum. In conclusion, immunization with rTgHSP70 induces massive amounts of iNOS expression and reduced brain parasitism, suggesting that iNOS expression and consequently NO production in the brain is a protective mechanism induced by TgHSP70 immunization, therefore rTgHSP70 can be a good candidate for vaccine development against toxoplasmosis.
topic immunization
rTgHSP70
alum
Toxoplasma gondii
toxoplasmosis
url http://journal.frontiersin.org/article/10.3389/fcimb.2017.00142/full
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