Literature DB >> 15038983

The human immune response to Mycobacterium tuberculosis in lung and lymph node.

Simeone Marino1, Denise E Kirschner.   

Abstract

A key issue for the study of tuberculosis is to understand why individuals infected with Mycobacterium tuberculosis (Mtb) experience different clinical outcomes. To better understand the dynamics of Mtb infection and immunity, we have previously developed a temporal mathematical model that qualitatively and quantitatively characterizes the cellular and cytokine control network during infection. In this work we extend that model to a two compartmental model to capture the important processes of cellular activation and priming that occur between the lung and the nearest draining lymph node. We are able to reproduce typical disease progression scenarios including primary infection, latency or clearance. Then we use the model to predict key processes determining these different disease trajectories (i.e. identify bifurcation parameters), suggesting directions for further basic science study and potential new treatment strategies.

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Year:  2004        PMID: 15038983     DOI: 10.1016/j.jtbi.2003.11.023

Source DB:  PubMed          Journal:  J Theor Biol        ISSN: 0022-5193            Impact factor:   2.691


  48 in total

Review 1.  New insights into mathematical modeling of the immune system.

Authors:  Penelope A Morel; Shlomo Ta'asan; Benoit F Morel; Denise E Kirschner; Joanne L Flynn
Journal:  Immunol Res       Date:  2006       Impact factor: 2.829

2.  A comparison of random vs. chemotaxis-driven contacts of T cells with dendritic cells during repertoire scanning.

Authors:  Thomas Riggs; Adrienne Walts; Nicolas Perry; Laura Bickle; Jennifer N Lynch; Amy Myers; Joanne Flynn; Jennifer J Linderman; Mark J Miller; Denise E Kirschner
Journal:  J Theor Biol       Date:  2007-10-18       Impact factor: 2.691

3.  Circulating dendritic cells and interferon-alpha production in patients with tuberculosis: correlation with clinical outcome and treatment response.

Authors:  M Lichtner; R Rossi; F Mengoni; S Vignoli; B Colacchia; A P Massetti; I Kamga; A Hosmalin; V Vullo; C M Mastroianni
Journal:  Clin Exp Immunol       Date:  2006-02       Impact factor: 4.330

4.  Modeling the immune rheostat of macrophages in the lung in response to infection.

Authors:  Judy Day; Avner Friedman; Larry S Schlesinger
Journal:  Proc Natl Acad Sci U S A       Date:  2009-06-22       Impact factor: 11.205

Review 5.  A methodology for performing global uncertainty and sensitivity analysis in systems biology.

Authors:  Simeone Marino; Ian B Hogue; Christian J Ray; Denise E Kirschner
Journal:  J Theor Biol       Date:  2008-04-20       Impact factor: 2.691

Review 6.  A review of quantitative modeling of B cell responses to antigenic challenge.

Authors:  Timothy P Hickling; Xiaoying Chen; Paolo Vicini; Satyaprakash Nayak
Journal:  J Pharmacokinet Pharmacodyn       Date:  2014-10-19       Impact factor: 2.745

7.  A review of computational and mathematical modeling contributions to our understanding of Mycobacterium tuberculosis within-host infection and treatment.

Authors:  Denise Kirschner; Elsje Pienaar; Simeone Marino; Jennifer J Linderman
Journal:  Curr Opin Syst Biol       Date:  2017-05-22

8.  Modelling the interaction between the host immune response, bacterial dynamics and inflammatory damage in comparison with immunomodulation and vaccination experiments.

Authors:  Angela M Jarrett; N G Cogan; M E Shirtliff
Journal:  Math Med Biol       Date:  2014-05-08       Impact factor: 1.854

9.  A mathematical model of pulmonary gas exchange under inflammatory stress.

Authors:  Angela Reynolds; G Bard Ermentrout; Gilles Clermont
Journal:  J Theor Biol       Date:  2010-01-18       Impact factor: 2.691

10.  Dynamic models of immune responses: what is the ideal level of detail?

Authors:  Juilee Thakar; Mary Poss; Réka Albert; Gráinne H Long; Ranran Zhang
Journal:  Theor Biol Med Model       Date:  2010-08-20       Impact factor: 2.432

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