Cargando…

Systems Biology Analysis of the Radiation-Attenuated Schistosome Vaccine Reveals a Role for Growth Factors in Protection and Hemostasis Inhibition in Parasite Survival

In spite of several decades of research, an effective vaccine against schistosomiasis remains elusive. The radiation-attenuated (RA) cercarial vaccine is still the best model eliciting high protection levels, although the immune mechanisms have not yet been fully characterized. In order to identify...

Descripción completa

Detalles Bibliográficos
Autores principales: Farias, Leonardo Paiva, Vitoriano-Souza, Juliana, Cardozo, Lucas Esteves, Gama, Leonardo Dos Reis, Singh, Youvika, Miyasato, Patrícia Aoki, Almeida, Giulliana Tessarin, Rodriguez, Dunia, Barbosa, Mayra Mara Ferrari, Fernandes, Rafaela Sachetto, Barbosa, Tereza Cristina, Neto, Almiro Pires da Silva, Nakano, Eliana, Ho, Paulo Lee, Verjovski-Almeida, Sergio, Nakaya, Helder Imoto, Wilson, Robert Alan, Leite, Luciana Cezar de Cerqueira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7996093/
https://www.ncbi.nlm.nih.gov/pubmed/33777004
http://dx.doi.org/10.3389/fimmu.2021.624191
_version_ 1783670041141575680
author Farias, Leonardo Paiva
Vitoriano-Souza, Juliana
Cardozo, Lucas Esteves
Gama, Leonardo Dos Reis
Singh, Youvika
Miyasato, Patrícia Aoki
Almeida, Giulliana Tessarin
Rodriguez, Dunia
Barbosa, Mayra Mara Ferrari
Fernandes, Rafaela Sachetto
Barbosa, Tereza Cristina
Neto, Almiro Pires da Silva
Nakano, Eliana
Ho, Paulo Lee
Verjovski-Almeida, Sergio
Nakaya, Helder Imoto
Wilson, Robert Alan
Leite, Luciana Cezar de Cerqueira
author_facet Farias, Leonardo Paiva
Vitoriano-Souza, Juliana
Cardozo, Lucas Esteves
Gama, Leonardo Dos Reis
Singh, Youvika
Miyasato, Patrícia Aoki
Almeida, Giulliana Tessarin
Rodriguez, Dunia
Barbosa, Mayra Mara Ferrari
Fernandes, Rafaela Sachetto
Barbosa, Tereza Cristina
Neto, Almiro Pires da Silva
Nakano, Eliana
Ho, Paulo Lee
Verjovski-Almeida, Sergio
Nakaya, Helder Imoto
Wilson, Robert Alan
Leite, Luciana Cezar de Cerqueira
author_sort Farias, Leonardo Paiva
collection PubMed
description In spite of several decades of research, an effective vaccine against schistosomiasis remains elusive. The radiation-attenuated (RA) cercarial vaccine is still the best model eliciting high protection levels, although the immune mechanisms have not yet been fully characterized. In order to identify genes and pathways underlying protection we investigated patterns of gene expression in PBMC and skin draining Lymph Nodes (LN) from mice using two exposure comparisons: vaccination with 500 attenuated cercariae versus infection with 500 normal cercariae; one versus three doses. Vaccinated mice were challenged with 120 normal parasites. Integration of PBMC and LN data from the infected group revealed early up-regulation of pathways associated with Th2 skewing and polarization of IgG antibody profiles. Additionally, hemostasis pathways were downregulated in infected mice, correlating with platelet reduction, potentially a mechanism to assist parasite migration through capillary beds. Conversely, up regulation of such mechanisms after vaccination may explain parasite blockade in the lungs. In contrast, a single exposure to attenuated parasites revealed early establishment of a Th1 bias (signaling of IL-1, IFN-γ; and Leishmania infection). Genes encoding chemokines and their receptors were more prominent in vaccinated mice, indicating an enhanced capacity for inflammation, potentially augmenting the inhibition of intravascular migration. Increasing the vaccinations from one to three did not dramatically elevate protection, but there was a clear shift towards antibody-mediated effectors. However, elements of the Th1 bias were still evident. Notable features after three vaccinations were markers of cytotoxicity (including IL-6 and NK cells) together with growth factors and their receptors (FGFR/VEGF/EGF) and the apoptosis pathway. Indeed, there is evidence for the development of anergy after three vaccinations, borne out by the limited responses detected in samples after challenge. We infer that persistence of a Th1 response puts a limit on expression of antibody-mediated mechanisms. This feature may explain the failure of multiple doses to drive protection towards sterile immunity. We suggest that the secretions of lung stage parasites would make a novel cohort of antigens for testing in protection experiments.
format Online
Article
Text
id pubmed-7996093
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-79960932021-03-27 Systems Biology Analysis of the Radiation-Attenuated Schistosome Vaccine Reveals a Role for Growth Factors in Protection and Hemostasis Inhibition in Parasite Survival Farias, Leonardo Paiva Vitoriano-Souza, Juliana Cardozo, Lucas Esteves Gama, Leonardo Dos Reis Singh, Youvika Miyasato, Patrícia Aoki Almeida, Giulliana Tessarin Rodriguez, Dunia Barbosa, Mayra Mara Ferrari Fernandes, Rafaela Sachetto Barbosa, Tereza Cristina Neto, Almiro Pires da Silva Nakano, Eliana Ho, Paulo Lee Verjovski-Almeida, Sergio Nakaya, Helder Imoto Wilson, Robert Alan Leite, Luciana Cezar de Cerqueira Front Immunol Immunology In spite of several decades of research, an effective vaccine against schistosomiasis remains elusive. The radiation-attenuated (RA) cercarial vaccine is still the best model eliciting high protection levels, although the immune mechanisms have not yet been fully characterized. In order to identify genes and pathways underlying protection we investigated patterns of gene expression in PBMC and skin draining Lymph Nodes (LN) from mice using two exposure comparisons: vaccination with 500 attenuated cercariae versus infection with 500 normal cercariae; one versus three doses. Vaccinated mice were challenged with 120 normal parasites. Integration of PBMC and LN data from the infected group revealed early up-regulation of pathways associated with Th2 skewing and polarization of IgG antibody profiles. Additionally, hemostasis pathways were downregulated in infected mice, correlating with platelet reduction, potentially a mechanism to assist parasite migration through capillary beds. Conversely, up regulation of such mechanisms after vaccination may explain parasite blockade in the lungs. In contrast, a single exposure to attenuated parasites revealed early establishment of a Th1 bias (signaling of IL-1, IFN-γ; and Leishmania infection). Genes encoding chemokines and their receptors were more prominent in vaccinated mice, indicating an enhanced capacity for inflammation, potentially augmenting the inhibition of intravascular migration. Increasing the vaccinations from one to three did not dramatically elevate protection, but there was a clear shift towards antibody-mediated effectors. However, elements of the Th1 bias were still evident. Notable features after three vaccinations were markers of cytotoxicity (including IL-6 and NK cells) together with growth factors and their receptors (FGFR/VEGF/EGF) and the apoptosis pathway. Indeed, there is evidence for the development of anergy after three vaccinations, borne out by the limited responses detected in samples after challenge. We infer that persistence of a Th1 response puts a limit on expression of antibody-mediated mechanisms. This feature may explain the failure of multiple doses to drive protection towards sterile immunity. We suggest that the secretions of lung stage parasites would make a novel cohort of antigens for testing in protection experiments. Frontiers Media S.A. 2021-03-11 /pmc/articles/PMC7996093/ /pubmed/33777004 http://dx.doi.org/10.3389/fimmu.2021.624191 Text en Copyright © 2021 Farias, Vitoriano-Souza, Cardozo, Gama, Singh, Miyasato, Almeida, Rodriguez, Barbosa, Fernandes, Barbosa, Neto, Nakano, Ho, Verjovski-Almeida, Nakaya, Wilson and Leite http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Farias, Leonardo Paiva
Vitoriano-Souza, Juliana
Cardozo, Lucas Esteves
Gama, Leonardo Dos Reis
Singh, Youvika
Miyasato, Patrícia Aoki
Almeida, Giulliana Tessarin
Rodriguez, Dunia
Barbosa, Mayra Mara Ferrari
Fernandes, Rafaela Sachetto
Barbosa, Tereza Cristina
Neto, Almiro Pires da Silva
Nakano, Eliana
Ho, Paulo Lee
Verjovski-Almeida, Sergio
Nakaya, Helder Imoto
Wilson, Robert Alan
Leite, Luciana Cezar de Cerqueira
Systems Biology Analysis of the Radiation-Attenuated Schistosome Vaccine Reveals a Role for Growth Factors in Protection and Hemostasis Inhibition in Parasite Survival
title Systems Biology Analysis of the Radiation-Attenuated Schistosome Vaccine Reveals a Role for Growth Factors in Protection and Hemostasis Inhibition in Parasite Survival
title_full Systems Biology Analysis of the Radiation-Attenuated Schistosome Vaccine Reveals a Role for Growth Factors in Protection and Hemostasis Inhibition in Parasite Survival
title_fullStr Systems Biology Analysis of the Radiation-Attenuated Schistosome Vaccine Reveals a Role for Growth Factors in Protection and Hemostasis Inhibition in Parasite Survival
title_full_unstemmed Systems Biology Analysis of the Radiation-Attenuated Schistosome Vaccine Reveals a Role for Growth Factors in Protection and Hemostasis Inhibition in Parasite Survival
title_short Systems Biology Analysis of the Radiation-Attenuated Schistosome Vaccine Reveals a Role for Growth Factors in Protection and Hemostasis Inhibition in Parasite Survival
title_sort systems biology analysis of the radiation-attenuated schistosome vaccine reveals a role for growth factors in protection and hemostasis inhibition in parasite survival
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7996093/
https://www.ncbi.nlm.nih.gov/pubmed/33777004
http://dx.doi.org/10.3389/fimmu.2021.624191
work_keys_str_mv AT fariasleonardopaiva systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT vitorianosouzajuliana systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT cardozolucasesteves systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT gamaleonardodosreis systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT singhyouvika systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT miyasatopatriciaaoki systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT almeidagiullianatessarin systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT rodriguezdunia systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT barbosamayramaraferrari systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT fernandesrafaelasachetto systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT barbosaterezacristina systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT netoalmiropiresdasilva systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT nakanoeliana systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT hopaulolee systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT verjovskialmeidasergio systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT nakayahelderimoto systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT wilsonrobertalan systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival
AT leitelucianacezardecerqueira systemsbiologyanalysisoftheradiationattenuatedschistosomevaccinerevealsaroleforgrowthfactorsinprotectionandhemostasisinhibitioninparasitesurvival