Cargando…

One Dose of Staphylococcus aureus 4C-Staph Vaccine Formulated with a Novel TLR7-Dependent Adjuvant Rapidly Protects Mice through Antibodies, Effector CD4(+) T Cells, and IL-17A

A rapidly acting, single dose vaccine against Staphylococcus aureus would be highly beneficial for patients scheduled for major surgeries or in intensive care units. Here we show that one immunization with a multicomponent S. aureus candidate vaccine, 4C-Staph, formulated with a novel TLR7-dependent...

Descripción completa

Detalles Bibliográficos
Autores principales: Mancini, Francesca, Monaci, Elisabetta, Lofano, Giuseppe, Torre, Antonina, Bacconi, Marta, Tavarini, Simona, Sammicheli, Chiara, Arcidiacono, Letizia, Galletti, Bruno, Laera, Donatello, Pallaoro, Michele, Tuscano, Giovanna, Fontana, Maria Rita, Bensi, Giuliano, Grandi, Guido, Rossi-Paccani, Silvia, Nuti, Sandra, Rappuoli, Rino, De Gregorio, Ennio, Bagnoli, Fabio, Soldaini, Elisabetta, Bertholet, Sylvie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4727907/
https://www.ncbi.nlm.nih.gov/pubmed/26812180
http://dx.doi.org/10.1371/journal.pone.0147767
_version_ 1782412036548853760
author Mancini, Francesca
Monaci, Elisabetta
Lofano, Giuseppe
Torre, Antonina
Bacconi, Marta
Tavarini, Simona
Sammicheli, Chiara
Arcidiacono, Letizia
Galletti, Bruno
Laera, Donatello
Pallaoro, Michele
Tuscano, Giovanna
Fontana, Maria Rita
Bensi, Giuliano
Grandi, Guido
Rossi-Paccani, Silvia
Nuti, Sandra
Rappuoli, Rino
De Gregorio, Ennio
Bagnoli, Fabio
Soldaini, Elisabetta
Bertholet, Sylvie
author_facet Mancini, Francesca
Monaci, Elisabetta
Lofano, Giuseppe
Torre, Antonina
Bacconi, Marta
Tavarini, Simona
Sammicheli, Chiara
Arcidiacono, Letizia
Galletti, Bruno
Laera, Donatello
Pallaoro, Michele
Tuscano, Giovanna
Fontana, Maria Rita
Bensi, Giuliano
Grandi, Guido
Rossi-Paccani, Silvia
Nuti, Sandra
Rappuoli, Rino
De Gregorio, Ennio
Bagnoli, Fabio
Soldaini, Elisabetta
Bertholet, Sylvie
author_sort Mancini, Francesca
collection PubMed
description A rapidly acting, single dose vaccine against Staphylococcus aureus would be highly beneficial for patients scheduled for major surgeries or in intensive care units. Here we show that one immunization with a multicomponent S. aureus candidate vaccine, 4C-Staph, formulated with a novel TLR7-dependent adjuvant, T7-alum, readily protected mice from death and from bacterial dissemination, both in kidney abscess and peritonitis models, outperforming alum-formulated vaccine. This increased efficacy was paralleled by higher vaccine-specific and α-hemolysin-neutralizing antibody titers and Th1/Th17 cell responses. Antibodies played a crucial protective role, as shown by the lack of protection of 4C-Staph/T7-alum vaccine in B-cell-deficient mice and by serum transfer experiments. Depletion of effector CD4(+) T cells not only reduced survival but also increased S. aureus load in kidneys of mice immunized with 4C-Staph/T7-alum. The role of IL-17A in the control of bacterial dissemination in 4C-Staph/T7-alum vaccinated mice was indicated by in vivo neutralization experiments. We conclude that single dose 4C-Staph/T7-alum vaccine promptly and efficiently protected mice against S. aureus through the combined actions of antibodies, CD4(+) effector T cells, and IL-17A. These data suggest that inclusion of an adjuvant that induces not only fast antibody responses but also IL-17-producing cell-mediated effector responses could efficaciously protect patients scheduled for major surgeries or in intensive care units.
format Online
Article
Text
id pubmed-4727907
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-47279072016-02-03 One Dose of Staphylococcus aureus 4C-Staph Vaccine Formulated with a Novel TLR7-Dependent Adjuvant Rapidly Protects Mice through Antibodies, Effector CD4(+) T Cells, and IL-17A Mancini, Francesca Monaci, Elisabetta Lofano, Giuseppe Torre, Antonina Bacconi, Marta Tavarini, Simona Sammicheli, Chiara Arcidiacono, Letizia Galletti, Bruno Laera, Donatello Pallaoro, Michele Tuscano, Giovanna Fontana, Maria Rita Bensi, Giuliano Grandi, Guido Rossi-Paccani, Silvia Nuti, Sandra Rappuoli, Rino De Gregorio, Ennio Bagnoli, Fabio Soldaini, Elisabetta Bertholet, Sylvie PLoS One Research Article A rapidly acting, single dose vaccine against Staphylococcus aureus would be highly beneficial for patients scheduled for major surgeries or in intensive care units. Here we show that one immunization with a multicomponent S. aureus candidate vaccine, 4C-Staph, formulated with a novel TLR7-dependent adjuvant, T7-alum, readily protected mice from death and from bacterial dissemination, both in kidney abscess and peritonitis models, outperforming alum-formulated vaccine. This increased efficacy was paralleled by higher vaccine-specific and α-hemolysin-neutralizing antibody titers and Th1/Th17 cell responses. Antibodies played a crucial protective role, as shown by the lack of protection of 4C-Staph/T7-alum vaccine in B-cell-deficient mice and by serum transfer experiments. Depletion of effector CD4(+) T cells not only reduced survival but also increased S. aureus load in kidneys of mice immunized with 4C-Staph/T7-alum. The role of IL-17A in the control of bacterial dissemination in 4C-Staph/T7-alum vaccinated mice was indicated by in vivo neutralization experiments. We conclude that single dose 4C-Staph/T7-alum vaccine promptly and efficiently protected mice against S. aureus through the combined actions of antibodies, CD4(+) effector T cells, and IL-17A. These data suggest that inclusion of an adjuvant that induces not only fast antibody responses but also IL-17-producing cell-mediated effector responses could efficaciously protect patients scheduled for major surgeries or in intensive care units. Public Library of Science 2016-01-26 /pmc/articles/PMC4727907/ /pubmed/26812180 http://dx.doi.org/10.1371/journal.pone.0147767 Text en © 2016 Mancini et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Mancini, Francesca
Monaci, Elisabetta
Lofano, Giuseppe
Torre, Antonina
Bacconi, Marta
Tavarini, Simona
Sammicheli, Chiara
Arcidiacono, Letizia
Galletti, Bruno
Laera, Donatello
Pallaoro, Michele
Tuscano, Giovanna
Fontana, Maria Rita
Bensi, Giuliano
Grandi, Guido
Rossi-Paccani, Silvia
Nuti, Sandra
Rappuoli, Rino
De Gregorio, Ennio
Bagnoli, Fabio
Soldaini, Elisabetta
Bertholet, Sylvie
One Dose of Staphylococcus aureus 4C-Staph Vaccine Formulated with a Novel TLR7-Dependent Adjuvant Rapidly Protects Mice through Antibodies, Effector CD4(+) T Cells, and IL-17A
title One Dose of Staphylococcus aureus 4C-Staph Vaccine Formulated with a Novel TLR7-Dependent Adjuvant Rapidly Protects Mice through Antibodies, Effector CD4(+) T Cells, and IL-17A
title_full One Dose of Staphylococcus aureus 4C-Staph Vaccine Formulated with a Novel TLR7-Dependent Adjuvant Rapidly Protects Mice through Antibodies, Effector CD4(+) T Cells, and IL-17A
title_fullStr One Dose of Staphylococcus aureus 4C-Staph Vaccine Formulated with a Novel TLR7-Dependent Adjuvant Rapidly Protects Mice through Antibodies, Effector CD4(+) T Cells, and IL-17A
title_full_unstemmed One Dose of Staphylococcus aureus 4C-Staph Vaccine Formulated with a Novel TLR7-Dependent Adjuvant Rapidly Protects Mice through Antibodies, Effector CD4(+) T Cells, and IL-17A
title_short One Dose of Staphylococcus aureus 4C-Staph Vaccine Formulated with a Novel TLR7-Dependent Adjuvant Rapidly Protects Mice through Antibodies, Effector CD4(+) T Cells, and IL-17A
title_sort one dose of staphylococcus aureus 4c-staph vaccine formulated with a novel tlr7-dependent adjuvant rapidly protects mice through antibodies, effector cd4(+) t cells, and il-17a
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4727907/
https://www.ncbi.nlm.nih.gov/pubmed/26812180
http://dx.doi.org/10.1371/journal.pone.0147767
work_keys_str_mv AT mancinifrancesca onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT monacielisabetta onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT lofanogiuseppe onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT torreantonina onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT bacconimarta onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT tavarinisimona onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT sammichelichiara onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT arcidiaconoletizia onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT gallettibruno onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT laeradonatello onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT pallaoromichele onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT tuscanogiovanna onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT fontanamariarita onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT bensigiuliano onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT grandiguido onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT rossipaccanisilvia onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT nutisandra onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT rappuolirino onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT degregorioennio onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT bagnolifabio onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT soldainielisabetta onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a
AT bertholetsylvie onedoseofstaphylococcusaureus4cstaphvaccineformulatedwithanoveltlr7dependentadjuvantrapidlyprotectsmicethroughantibodieseffectorcd4tcellsandil17a