Virus and CTL dynamics in the extrafollicular and follicular tissue compartments in SIV-infected macaques.

Data from SIV-infected macaques indicate that virus-specific cytotoxic T lymphocytes (CTL) are mostly present in the extrafollicular (EF) compartment of the lymphoid tissue, with reduced homing to the follicular (F) site. This contributes to the majority of the virus being present in the follicle an...

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Main Authors: Dominik Wodarz, Pamela J Skinner, David N Levy, Elizabeth Connick
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-10-01
Series:PLoS Computational Biology
Online Access:http://europepmc.org/articles/PMC6207320?pdf=render
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spelling doaj-d745412b90564b47b86a55f770781cf52020-11-24T22:04:01ZengPublic Library of Science (PLoS)PLoS Computational Biology1553-734X1553-73582018-10-011410e100646110.1371/journal.pcbi.1006461Virus and CTL dynamics in the extrafollicular and follicular tissue compartments in SIV-infected macaques.Dominik WodarzPamela J SkinnerDavid N LevyElizabeth ConnickData from SIV-infected macaques indicate that virus-specific cytotoxic T lymphocytes (CTL) are mostly present in the extrafollicular (EF) compartment of the lymphoid tissue, with reduced homing to the follicular (F) site. This contributes to the majority of the virus being present in the follicle and represents a barrier to virus control. Using mathematical models, we investigate these dynamics. Two models are analyzed. The first assumes that CTL can only become stimulated and expand in the extrafollicular compartment, with migration accounting for the presence of CTL in the follicle. In the second model, follicular CTL can also undergo antigen-induced expansion. Consistent with experimental data, both models predict increased virus compartmentalization in the presence of stronger CTL responses and lower virus loads, and a more pronounced rise of extrafollicular compared to follicular virus during CD8 cell depletion experiments. The models, however, differ in other aspects. The follicular expansion model results in dynamics that promote the clearance of productive infection in the extrafollicular site, with any productively infected cells found being the result of immigration from the follicle. This is not observed in the model without follicular CTL expansion. The models further predict different consequences of introducing engineered, follicular-homing CTL, which has been proposed as a therapeutic means to improve virus control. Without follicular CTL expansion, this is predicted to result in a reduction of virus load in both compartments. The follicular CTL expansion model, however, makes the counter-intuitive prediction that addition of F-homing CTL not only results in a reduction of follicular virus load, but also in an increase in extrafollicular virus replication. These predictions remain to be experimentally tested, which will be relevant for distinguishing between models and for understanding how therapeutic introduction of F-homing CTL might impact the overall dynamics of the infection.http://europepmc.org/articles/PMC6207320?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Dominik Wodarz
Pamela J Skinner
David N Levy
Elizabeth Connick
spellingShingle Dominik Wodarz
Pamela J Skinner
David N Levy
Elizabeth Connick
Virus and CTL dynamics in the extrafollicular and follicular tissue compartments in SIV-infected macaques.
PLoS Computational Biology
author_facet Dominik Wodarz
Pamela J Skinner
David N Levy
Elizabeth Connick
author_sort Dominik Wodarz
title Virus and CTL dynamics in the extrafollicular and follicular tissue compartments in SIV-infected macaques.
title_short Virus and CTL dynamics in the extrafollicular and follicular tissue compartments in SIV-infected macaques.
title_full Virus and CTL dynamics in the extrafollicular and follicular tissue compartments in SIV-infected macaques.
title_fullStr Virus and CTL dynamics in the extrafollicular and follicular tissue compartments in SIV-infected macaques.
title_full_unstemmed Virus and CTL dynamics in the extrafollicular and follicular tissue compartments in SIV-infected macaques.
title_sort virus and ctl dynamics in the extrafollicular and follicular tissue compartments in siv-infected macaques.
publisher Public Library of Science (PLoS)
series PLoS Computational Biology
issn 1553-734X
1553-7358
publishDate 2018-10-01
description Data from SIV-infected macaques indicate that virus-specific cytotoxic T lymphocytes (CTL) are mostly present in the extrafollicular (EF) compartment of the lymphoid tissue, with reduced homing to the follicular (F) site. This contributes to the majority of the virus being present in the follicle and represents a barrier to virus control. Using mathematical models, we investigate these dynamics. Two models are analyzed. The first assumes that CTL can only become stimulated and expand in the extrafollicular compartment, with migration accounting for the presence of CTL in the follicle. In the second model, follicular CTL can also undergo antigen-induced expansion. Consistent with experimental data, both models predict increased virus compartmentalization in the presence of stronger CTL responses and lower virus loads, and a more pronounced rise of extrafollicular compared to follicular virus during CD8 cell depletion experiments. The models, however, differ in other aspects. The follicular expansion model results in dynamics that promote the clearance of productive infection in the extrafollicular site, with any productively infected cells found being the result of immigration from the follicle. This is not observed in the model without follicular CTL expansion. The models further predict different consequences of introducing engineered, follicular-homing CTL, which has been proposed as a therapeutic means to improve virus control. Without follicular CTL expansion, this is predicted to result in a reduction of virus load in both compartments. The follicular CTL expansion model, however, makes the counter-intuitive prediction that addition of F-homing CTL not only results in a reduction of follicular virus load, but also in an increase in extrafollicular virus replication. These predictions remain to be experimentally tested, which will be relevant for distinguishing between models and for understanding how therapeutic introduction of F-homing CTL might impact the overall dynamics of the infection.
url http://europepmc.org/articles/PMC6207320?pdf=render
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