Bayesian approach to model CD137 signaling in human M. tuberculosis in vitro responses.

Immune responses are qualitatively and quantitatively influenced by a complex network of receptor-ligand interactions. Among them, the CD137:CD137L pathway is known to modulate innate and adaptive human responses against Mycobacterium tuberculosis. However, the underlying mechanisms of this regulati...

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Main Authors: Darío A Fernández Do Porto, Jerónimo Auzmendi, Delfina Peña, Verónica E García, Luciano Moffatt
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3577821?pdf=render
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spelling doaj-73805ff0accb444e805c9f78ce7d938e2020-11-25T02:20:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0182e5598710.1371/journal.pone.0055987Bayesian approach to model CD137 signaling in human M. tuberculosis in vitro responses.Darío A Fernández Do PortoJerónimo AuzmendiDelfina PeñaVerónica E GarcíaLuciano MoffattImmune responses are qualitatively and quantitatively influenced by a complex network of receptor-ligand interactions. Among them, the CD137:CD137L pathway is known to modulate innate and adaptive human responses against Mycobacterium tuberculosis. However, the underlying mechanisms of this regulation remain unclear. In this work, we developed a Bayesian Computational Model (BCM) of in vitro CD137 signaling, devised to fit previously gathered experimental data. The BCM is fed with the data and the prior distribution of the model parameters and it returns their posterior distribution and the model evidence, which allows comparing alternative signaling mechanisms. The BCM uses a coupled system of non-linear differential equations to describe the dynamics of Antigen Presenting Cells, Natural Killer and T Cells together with the interpheron (IFN)-γ and tumor necrosis factor (TNF)-α levels in the media culture. Fast and complete mixing of the media is assumed. The prior distribution of the parameters that describe the dynamics of the immunological response was obtained from the literature and theoretical considerations Our BCM applies successively the Levenberg-Marquardt algorithm to find the maximum a posteriori likelihood (MAP); the Metropolis Markov Chain Monte Carlo method to approximate the posterior distribution of the parameters and Thermodynamic Integration to calculate the evidence of alternative hypothesis. Bayes factors provided decisive evidence favoring direct CD137 signaling on T cells. Moreover, the posterior distribution of the parameters that describe the CD137 signaling showed that the regulation of IFN-γ levels is based more on T cells survival than on direct induction. Furthermore, the mechanisms that account for the effect of CD137 signaling on TNF-α production were based on a decrease of TNF-α production by APC and, perhaps, on the increase in APC apoptosis. BCM proved to be a useful tool to gain insight on the mechanisms of CD137 signaling during human response against Mycobacterium tuberculosis.http://europepmc.org/articles/PMC3577821?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Darío A Fernández Do Porto
Jerónimo Auzmendi
Delfina Peña
Verónica E García
Luciano Moffatt
spellingShingle Darío A Fernández Do Porto
Jerónimo Auzmendi
Delfina Peña
Verónica E García
Luciano Moffatt
Bayesian approach to model CD137 signaling in human M. tuberculosis in vitro responses.
PLoS ONE
author_facet Darío A Fernández Do Porto
Jerónimo Auzmendi
Delfina Peña
Verónica E García
Luciano Moffatt
author_sort Darío A Fernández Do Porto
title Bayesian approach to model CD137 signaling in human M. tuberculosis in vitro responses.
title_short Bayesian approach to model CD137 signaling in human M. tuberculosis in vitro responses.
title_full Bayesian approach to model CD137 signaling in human M. tuberculosis in vitro responses.
title_fullStr Bayesian approach to model CD137 signaling in human M. tuberculosis in vitro responses.
title_full_unstemmed Bayesian approach to model CD137 signaling in human M. tuberculosis in vitro responses.
title_sort bayesian approach to model cd137 signaling in human m. tuberculosis in vitro responses.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Immune responses are qualitatively and quantitatively influenced by a complex network of receptor-ligand interactions. Among them, the CD137:CD137L pathway is known to modulate innate and adaptive human responses against Mycobacterium tuberculosis. However, the underlying mechanisms of this regulation remain unclear. In this work, we developed a Bayesian Computational Model (BCM) of in vitro CD137 signaling, devised to fit previously gathered experimental data. The BCM is fed with the data and the prior distribution of the model parameters and it returns their posterior distribution and the model evidence, which allows comparing alternative signaling mechanisms. The BCM uses a coupled system of non-linear differential equations to describe the dynamics of Antigen Presenting Cells, Natural Killer and T Cells together with the interpheron (IFN)-γ and tumor necrosis factor (TNF)-α levels in the media culture. Fast and complete mixing of the media is assumed. The prior distribution of the parameters that describe the dynamics of the immunological response was obtained from the literature and theoretical considerations Our BCM applies successively the Levenberg-Marquardt algorithm to find the maximum a posteriori likelihood (MAP); the Metropolis Markov Chain Monte Carlo method to approximate the posterior distribution of the parameters and Thermodynamic Integration to calculate the evidence of alternative hypothesis. Bayes factors provided decisive evidence favoring direct CD137 signaling on T cells. Moreover, the posterior distribution of the parameters that describe the CD137 signaling showed that the regulation of IFN-γ levels is based more on T cells survival than on direct induction. Furthermore, the mechanisms that account for the effect of CD137 signaling on TNF-α production were based on a decrease of TNF-α production by APC and, perhaps, on the increase in APC apoptosis. BCM proved to be a useful tool to gain insight on the mechanisms of CD137 signaling during human response against Mycobacterium tuberculosis.
url http://europepmc.org/articles/PMC3577821?pdf=render
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