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Differential Host Immune Responses after Infection with Wild-Type or Lab-Attenuated Rabies Viruses in Dogs

Rabies virus (RABV) induces encephalomyelitis in humans and animals. One of the major problems with rabies is that the infected individuals most often do not develop virus neutralizing antibodies (VNA). In this study we have investigated the host immune response to RABV infection in dogs, using a li...

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Autores principales: Gnanadurai, Clement W., Yang, Yang, Huang, Ying, Li, Zhenguang, Leyson, Christina M., Cooper, Tanya L., Platt, Simon R., Harvey, Stephen B., Hooper, Douglas C., Faber, Milosz, Fu, Zhen F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4546273/
https://www.ncbi.nlm.nih.gov/pubmed/26292099
http://dx.doi.org/10.1371/journal.pntd.0004023
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author Gnanadurai, Clement W.
Yang, Yang
Huang, Ying
Li, Zhenguang
Leyson, Christina M.
Cooper, Tanya L.
Platt, Simon R.
Harvey, Stephen B.
Hooper, Douglas C.
Faber, Milosz
Fu, Zhen F.
author_facet Gnanadurai, Clement W.
Yang, Yang
Huang, Ying
Li, Zhenguang
Leyson, Christina M.
Cooper, Tanya L.
Platt, Simon R.
Harvey, Stephen B.
Hooper, Douglas C.
Faber, Milosz
Fu, Zhen F.
author_sort Gnanadurai, Clement W.
collection PubMed
description Rabies virus (RABV) induces encephalomyelitis in humans and animals. One of the major problems with rabies is that the infected individuals most often do not develop virus neutralizing antibodies (VNA). In this study we have investigated the host immune response to RABV infection in dogs, using a live-attenuated (TriGAS) or a wild-type (wt) (DRV-NG11) RABV isolated from a rabid dog. METHODOLOGY/PRINCIPAL FINDINGS: The experimental infection of dogs with TriGAS induced high levels of VNA in the serum, whereas wt RABV infection did not. Dogs infected with TriGAS developed antibodies against the virus including its glycoprotein, whereas dogs infected with DRV-NG11 only developed rabies antibodies that are presumably specific for the nucleoprotein, (N) and not the glycoprotein (G). We show that infection with TriGAS induces early activation of B cells in the draining lymph nodes and persistent activation of DCs and B cells in the blood. On the other hand, infection with DRV-NG11 fails to induce the activation of DCs and B cells and further reduces CD4 T cell production. Further, we show that intrathecal (IT) immunization of TriGAS not only induced high levels of VNA in the serum but also in the CSF while intramuscular (IM) immunization of TriGAS induced VNA only in the serum. In addition, high levels of total protein and WBC were detected in the CSF of IT immunized dogs, indicating the transient enhancement of blood-brain barrier (BBB) permeability, which is relevant to the passage of immune effectors from periphery into the CNS. CONCLUSIONS/SIGNIFICANCE: IM infection of dogs with TriGAS induced the production of serum VNA whereas, IT immunization of TriGAS in dogs induces high levels of VNA in the periphery as well as in the CSF and transiently enhances BBB permeability. In contrast, infection with wt DRV-NG11 resulted in the production of RABV-reactive antibodies but VNA and antibodies specific for G were absent. As a consequence, all of the dogs infected with wt DRV-NG11 succumbed to rabies. Thus the failure to activate protective immunity is one of the important features of RABV pathogenesis in dogs.
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spelling pubmed-45462732015-08-26 Differential Host Immune Responses after Infection with Wild-Type or Lab-Attenuated Rabies Viruses in Dogs Gnanadurai, Clement W. Yang, Yang Huang, Ying Li, Zhenguang Leyson, Christina M. Cooper, Tanya L. Platt, Simon R. Harvey, Stephen B. Hooper, Douglas C. Faber, Milosz Fu, Zhen F. PLoS Negl Trop Dis Research Article Rabies virus (RABV) induces encephalomyelitis in humans and animals. One of the major problems with rabies is that the infected individuals most often do not develop virus neutralizing antibodies (VNA). In this study we have investigated the host immune response to RABV infection in dogs, using a live-attenuated (TriGAS) or a wild-type (wt) (DRV-NG11) RABV isolated from a rabid dog. METHODOLOGY/PRINCIPAL FINDINGS: The experimental infection of dogs with TriGAS induced high levels of VNA in the serum, whereas wt RABV infection did not. Dogs infected with TriGAS developed antibodies against the virus including its glycoprotein, whereas dogs infected with DRV-NG11 only developed rabies antibodies that are presumably specific for the nucleoprotein, (N) and not the glycoprotein (G). We show that infection with TriGAS induces early activation of B cells in the draining lymph nodes and persistent activation of DCs and B cells in the blood. On the other hand, infection with DRV-NG11 fails to induce the activation of DCs and B cells and further reduces CD4 T cell production. Further, we show that intrathecal (IT) immunization of TriGAS not only induced high levels of VNA in the serum but also in the CSF while intramuscular (IM) immunization of TriGAS induced VNA only in the serum. In addition, high levels of total protein and WBC were detected in the CSF of IT immunized dogs, indicating the transient enhancement of blood-brain barrier (BBB) permeability, which is relevant to the passage of immune effectors from periphery into the CNS. CONCLUSIONS/SIGNIFICANCE: IM infection of dogs with TriGAS induced the production of serum VNA whereas, IT immunization of TriGAS in dogs induces high levels of VNA in the periphery as well as in the CSF and transiently enhances BBB permeability. In contrast, infection with wt DRV-NG11 resulted in the production of RABV-reactive antibodies but VNA and antibodies specific for G were absent. As a consequence, all of the dogs infected with wt DRV-NG11 succumbed to rabies. Thus the failure to activate protective immunity is one of the important features of RABV pathogenesis in dogs. Public Library of Science 2015-08-20 /pmc/articles/PMC4546273/ /pubmed/26292099 http://dx.doi.org/10.1371/journal.pntd.0004023 Text en © 2015 Gnanadurai 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
Gnanadurai, Clement W.
Yang, Yang
Huang, Ying
Li, Zhenguang
Leyson, Christina M.
Cooper, Tanya L.
Platt, Simon R.
Harvey, Stephen B.
Hooper, Douglas C.
Faber, Milosz
Fu, Zhen F.
Differential Host Immune Responses after Infection with Wild-Type or Lab-Attenuated Rabies Viruses in Dogs
title Differential Host Immune Responses after Infection with Wild-Type or Lab-Attenuated Rabies Viruses in Dogs
title_full Differential Host Immune Responses after Infection with Wild-Type or Lab-Attenuated Rabies Viruses in Dogs
title_fullStr Differential Host Immune Responses after Infection with Wild-Type or Lab-Attenuated Rabies Viruses in Dogs
title_full_unstemmed Differential Host Immune Responses after Infection with Wild-Type or Lab-Attenuated Rabies Viruses in Dogs
title_short Differential Host Immune Responses after Infection with Wild-Type or Lab-Attenuated Rabies Viruses in Dogs
title_sort differential host immune responses after infection with wild-type or lab-attenuated rabies viruses in dogs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4546273/
https://www.ncbi.nlm.nih.gov/pubmed/26292099
http://dx.doi.org/10.1371/journal.pntd.0004023
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