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Intranasal Infection with Chlamydia abortus Induces Dose-Dependent Latency and Abortion in Sheep

BACKGROUND: Latency is a key feature of the animal pathogen Chlamydia abortus, where infection remains inapparent in the non-pregnant animal and only becomes evident during a subsequent pregnancy. Often the first sign that an animal is infected is abortion occurring late in gestation. Despite this,...

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Autores principales: Longbottom, David, Livingstone, Morag, Maley, Stephen, van der Zon, Arjan, Rocchi, Mara, Wilson, Kim, Wheelhouse, Nicholas, Dagleish, Mark, Aitchison, Kevin, Wattegedera, Sean, Nath, Mintu, Entrican, Gary, Buxton, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3585262/
https://www.ncbi.nlm.nih.gov/pubmed/23469113
http://dx.doi.org/10.1371/journal.pone.0057950
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author Longbottom, David
Livingstone, Morag
Maley, Stephen
van der Zon, Arjan
Rocchi, Mara
Wilson, Kim
Wheelhouse, Nicholas
Dagleish, Mark
Aitchison, Kevin
Wattegedera, Sean
Nath, Mintu
Entrican, Gary
Buxton, David
author_facet Longbottom, David
Livingstone, Morag
Maley, Stephen
van der Zon, Arjan
Rocchi, Mara
Wilson, Kim
Wheelhouse, Nicholas
Dagleish, Mark
Aitchison, Kevin
Wattegedera, Sean
Nath, Mintu
Entrican, Gary
Buxton, David
author_sort Longbottom, David
collection PubMed
description BACKGROUND: Latency is a key feature of the animal pathogen Chlamydia abortus, where infection remains inapparent in the non-pregnant animal and only becomes evident during a subsequent pregnancy. Often the first sign that an animal is infected is abortion occurring late in gestation. Despite this, little is understood of the underlying mechanisms that control latency or the recrudescence of infection that occurs during subsequent pregnancy. The aim of this study was to develop an experimental model of latency by mimicking the natural route of infection through the intranasal inoculation of non-pregnant sheep with C. abortus. METHODOLOGY/PRINCIPAL FINDINGS: Three groups of sheep (groups 1, 2 and 3) were experimentally infected with different doses of C. abortus (5×10(3), 5×10(5) and 5×10(7) inclusion forming units (IFU), respectively) prior to mating and monitored over 2 breeding cycles for clinical, microbiological, pathological, immunological and serological outcomes. Two further groups received either negative control inoculum (group 4a,b) or were inoculated subcutaneously on day 70 of gestation with 2×10(6) IFU C. abortus (group 5). Animals in groups 1, 2 and 5 experienced an abortion rate of 50–67%, while only one animal aborted in group 3 and none in group 4a,b. Pathological, microbiological, immunological and serological analyses support the view that the maternal protective immune response is influenced by initial exposure to the bacterium. CONCLUSIONS/SIGNIFICANCE: The results show that intranasal administration of non-pregnant sheep with a low/medium dose of C. abortus results in a latent infection that leads in a subsequent pregnancy to infection of the placenta and abortion. In contrast a high dose stimulates protective immunity, resulting in a much lower abortion rate. This model will be useful in understanding the mechanisms of infection underlying latency and onset of disease, as well as in the development of novel therapeutics and vaccines for controlling infection.
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spelling pubmed-35852622013-03-06 Intranasal Infection with Chlamydia abortus Induces Dose-Dependent Latency and Abortion in Sheep Longbottom, David Livingstone, Morag Maley, Stephen van der Zon, Arjan Rocchi, Mara Wilson, Kim Wheelhouse, Nicholas Dagleish, Mark Aitchison, Kevin Wattegedera, Sean Nath, Mintu Entrican, Gary Buxton, David PLoS One Research Article BACKGROUND: Latency is a key feature of the animal pathogen Chlamydia abortus, where infection remains inapparent in the non-pregnant animal and only becomes evident during a subsequent pregnancy. Often the first sign that an animal is infected is abortion occurring late in gestation. Despite this, little is understood of the underlying mechanisms that control latency or the recrudescence of infection that occurs during subsequent pregnancy. The aim of this study was to develop an experimental model of latency by mimicking the natural route of infection through the intranasal inoculation of non-pregnant sheep with C. abortus. METHODOLOGY/PRINCIPAL FINDINGS: Three groups of sheep (groups 1, 2 and 3) were experimentally infected with different doses of C. abortus (5×10(3), 5×10(5) and 5×10(7) inclusion forming units (IFU), respectively) prior to mating and monitored over 2 breeding cycles for clinical, microbiological, pathological, immunological and serological outcomes. Two further groups received either negative control inoculum (group 4a,b) or were inoculated subcutaneously on day 70 of gestation with 2×10(6) IFU C. abortus (group 5). Animals in groups 1, 2 and 5 experienced an abortion rate of 50–67%, while only one animal aborted in group 3 and none in group 4a,b. Pathological, microbiological, immunological and serological analyses support the view that the maternal protective immune response is influenced by initial exposure to the bacterium. CONCLUSIONS/SIGNIFICANCE: The results show that intranasal administration of non-pregnant sheep with a low/medium dose of C. abortus results in a latent infection that leads in a subsequent pregnancy to infection of the placenta and abortion. In contrast a high dose stimulates protective immunity, resulting in a much lower abortion rate. This model will be useful in understanding the mechanisms of infection underlying latency and onset of disease, as well as in the development of novel therapeutics and vaccines for controlling infection. Public Library of Science 2013-02-28 /pmc/articles/PMC3585262/ /pubmed/23469113 http://dx.doi.org/10.1371/journal.pone.0057950 Text en © 2013 Longbottom 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
Longbottom, David
Livingstone, Morag
Maley, Stephen
van der Zon, Arjan
Rocchi, Mara
Wilson, Kim
Wheelhouse, Nicholas
Dagleish, Mark
Aitchison, Kevin
Wattegedera, Sean
Nath, Mintu
Entrican, Gary
Buxton, David
Intranasal Infection with Chlamydia abortus Induces Dose-Dependent Latency and Abortion in Sheep
title Intranasal Infection with Chlamydia abortus Induces Dose-Dependent Latency and Abortion in Sheep
title_full Intranasal Infection with Chlamydia abortus Induces Dose-Dependent Latency and Abortion in Sheep
title_fullStr Intranasal Infection with Chlamydia abortus Induces Dose-Dependent Latency and Abortion in Sheep
title_full_unstemmed Intranasal Infection with Chlamydia abortus Induces Dose-Dependent Latency and Abortion in Sheep
title_short Intranasal Infection with Chlamydia abortus Induces Dose-Dependent Latency and Abortion in Sheep
title_sort intranasal infection with chlamydia abortus induces dose-dependent latency and abortion in sheep
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3585262/
https://www.ncbi.nlm.nih.gov/pubmed/23469113
http://dx.doi.org/10.1371/journal.pone.0057950
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