Cargando…

ESAT-6 Targeting to DEC205+ Antigen Presenting Cells Induces Specific-T Cell Responses against ESAT-6 and Reduces Pulmonary Infection with Virulent Mycobacterium tuberculosis

Airways infection with Mycobacterium tuberculosis (Mtb) is contained mostly by T cell responses, however, Mtb has developed evasion mechanisms which affect antigen presenting cell (APC) maturation/recruitment delaying the onset of Ag-specific T cell responses. Hypothetically, bypassing the natural i...

Descripción completa

Detalles Bibliográficos
Autores principales: Silva-Sánchez, Aarón, Meza-Pérez, Selene, Flores-Langarica, Adriana, Donis-Maturano, Luis, Estrada-García, Iris, Calderón-Amador, Juana, Hernández-Pando, Rogelio, Idoyaga, Juliana, Steinman, Ralph M., Flores-Romo, Leopoldo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4411092/
https://www.ncbi.nlm.nih.gov/pubmed/25915045
http://dx.doi.org/10.1371/journal.pone.0124828
_version_ 1782368417277280256
author Silva-Sánchez, Aarón
Meza-Pérez, Selene
Flores-Langarica, Adriana
Donis-Maturano, Luis
Estrada-García, Iris
Calderón-Amador, Juana
Hernández-Pando, Rogelio
Idoyaga, Juliana
Steinman, Ralph M.
Flores-Romo, Leopoldo
author_facet Silva-Sánchez, Aarón
Meza-Pérez, Selene
Flores-Langarica, Adriana
Donis-Maturano, Luis
Estrada-García, Iris
Calderón-Amador, Juana
Hernández-Pando, Rogelio
Idoyaga, Juliana
Steinman, Ralph M.
Flores-Romo, Leopoldo
author_sort Silva-Sánchez, Aarón
collection PubMed
description Airways infection with Mycobacterium tuberculosis (Mtb) is contained mostly by T cell responses, however, Mtb has developed evasion mechanisms which affect antigen presenting cell (APC) maturation/recruitment delaying the onset of Ag-specific T cell responses. Hypothetically, bypassing the natural infection routes by delivering antigens directly to APCs may overcome the pathogen’s naturally evolved evasion mechanisms, thus facilitating the induction of protective immune responses. We generated a murine monoclonal fusion antibody (α-DEC-ESAT) to deliver Early Secretory Antigen Target (ESAT)-6 directly to DEC205(+) APCs and to assess its in vivo effects on protection associated responses (IFN-γ production, in vivo CTL killing, and pulmonary mycobacterial load). Treatment with α-DEC-ESAT alone induced ESAT-6-specific IFN-γ producing CD4(+) T cells and prime-boost immunization prior to Mtb infection resulted in early influx (d14 post-infection) and increased IFN-γ(+) production by specific T cells in the lungs, compared to scarce IFN-γ production in control mice. In vivo CTL killing was quantified in relevant tissues upon transferring target cells loaded with mycobacterial antigens. During infection, α-DEC-ESAT-treated mice showed increased target cell killing in the lungs, where histology revealed cellular infiltrate and considerably reduced bacterial burden. Targeting the mycobacterial antigen ESAT-6 to DEC205(+) APCs before infection expands specific T cell clones responsible for early T cell responses (IFN-γ production and CTL activity) and substantially reduces lung bacterial burden. Delivering mycobacterial antigens directly to APCs provides a unique approach to study in vivo the role of APCs and specific T cell responses to assess their potential anti-mycobacterial functions.
format Online
Article
Text
id pubmed-4411092
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-44110922015-05-07 ESAT-6 Targeting to DEC205+ Antigen Presenting Cells Induces Specific-T Cell Responses against ESAT-6 and Reduces Pulmonary Infection with Virulent Mycobacterium tuberculosis Silva-Sánchez, Aarón Meza-Pérez, Selene Flores-Langarica, Adriana Donis-Maturano, Luis Estrada-García, Iris Calderón-Amador, Juana Hernández-Pando, Rogelio Idoyaga, Juliana Steinman, Ralph M. Flores-Romo, Leopoldo PLoS One Research Article Airways infection with Mycobacterium tuberculosis (Mtb) is contained mostly by T cell responses, however, Mtb has developed evasion mechanisms which affect antigen presenting cell (APC) maturation/recruitment delaying the onset of Ag-specific T cell responses. Hypothetically, bypassing the natural infection routes by delivering antigens directly to APCs may overcome the pathogen’s naturally evolved evasion mechanisms, thus facilitating the induction of protective immune responses. We generated a murine monoclonal fusion antibody (α-DEC-ESAT) to deliver Early Secretory Antigen Target (ESAT)-6 directly to DEC205(+) APCs and to assess its in vivo effects on protection associated responses (IFN-γ production, in vivo CTL killing, and pulmonary mycobacterial load). Treatment with α-DEC-ESAT alone induced ESAT-6-specific IFN-γ producing CD4(+) T cells and prime-boost immunization prior to Mtb infection resulted in early influx (d14 post-infection) and increased IFN-γ(+) production by specific T cells in the lungs, compared to scarce IFN-γ production in control mice. In vivo CTL killing was quantified in relevant tissues upon transferring target cells loaded with mycobacterial antigens. During infection, α-DEC-ESAT-treated mice showed increased target cell killing in the lungs, where histology revealed cellular infiltrate and considerably reduced bacterial burden. Targeting the mycobacterial antigen ESAT-6 to DEC205(+) APCs before infection expands specific T cell clones responsible for early T cell responses (IFN-γ production and CTL activity) and substantially reduces lung bacterial burden. Delivering mycobacterial antigens directly to APCs provides a unique approach to study in vivo the role of APCs and specific T cell responses to assess their potential anti-mycobacterial functions. Public Library of Science 2015-04-27 /pmc/articles/PMC4411092/ /pubmed/25915045 http://dx.doi.org/10.1371/journal.pone.0124828 Text en © 2015 Silva-Sánchez 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Silva-Sánchez, Aarón
Meza-Pérez, Selene
Flores-Langarica, Adriana
Donis-Maturano, Luis
Estrada-García, Iris
Calderón-Amador, Juana
Hernández-Pando, Rogelio
Idoyaga, Juliana
Steinman, Ralph M.
Flores-Romo, Leopoldo
ESAT-6 Targeting to DEC205+ Antigen Presenting Cells Induces Specific-T Cell Responses against ESAT-6 and Reduces Pulmonary Infection with Virulent Mycobacterium tuberculosis
title ESAT-6 Targeting to DEC205+ Antigen Presenting Cells Induces Specific-T Cell Responses against ESAT-6 and Reduces Pulmonary Infection with Virulent Mycobacterium tuberculosis
title_full ESAT-6 Targeting to DEC205+ Antigen Presenting Cells Induces Specific-T Cell Responses against ESAT-6 and Reduces Pulmonary Infection with Virulent Mycobacterium tuberculosis
title_fullStr ESAT-6 Targeting to DEC205+ Antigen Presenting Cells Induces Specific-T Cell Responses against ESAT-6 and Reduces Pulmonary Infection with Virulent Mycobacterium tuberculosis
title_full_unstemmed ESAT-6 Targeting to DEC205+ Antigen Presenting Cells Induces Specific-T Cell Responses against ESAT-6 and Reduces Pulmonary Infection with Virulent Mycobacterium tuberculosis
title_short ESAT-6 Targeting to DEC205+ Antigen Presenting Cells Induces Specific-T Cell Responses against ESAT-6 and Reduces Pulmonary Infection with Virulent Mycobacterium tuberculosis
title_sort esat-6 targeting to dec205+ antigen presenting cells induces specific-t cell responses against esat-6 and reduces pulmonary infection with virulent mycobacterium tuberculosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4411092/
https://www.ncbi.nlm.nih.gov/pubmed/25915045
http://dx.doi.org/10.1371/journal.pone.0124828
work_keys_str_mv AT silvasanchezaaron esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT mezaperezselene esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT floreslangaricaadriana esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT donismaturanoluis esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT estradagarciairis esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT calderonamadorjuana esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT hernandezpandorogelio esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT idoyagajuliana esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT steinmanralphm esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis
AT floresromoleopoldo esat6targetingtodec205antigenpresentingcellsinducesspecifictcellresponsesagainstesat6andreducespulmonaryinfectionwithvirulentmycobacteriumtuberculosis