4.7 Article

A formal analysis of cytokine networks in Chronic Fatigue Syndrome

期刊

BRAIN BEHAVIOR AND IMMUNITY
卷 24, 期 7, 页码 1209-1217

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbi.2010.04.012

关键词

Cytokines; Network theory; Immune signaling; Chronic fatigue; Inflammation; Latent viral infection

资金

  1. US National Institute of Health [R21AA016635, R01AI065723]
  2. CFIDS Association of America
  3. US Department of Veterans Affairs
  4. Patient Alliance for Neuroendocrine-immune Disorders Organization for Research and Advocacy (PANDORA)

向作者/读者索取更多资源

Chronic Fatigue Syndrome (CFS) is a complex illness affecting 4 million Americans for which no characteristic lesion has been identified. Instead of searching for a deficiency in any single marker, we propose that CFS is associated with a profound imbalance in the regulation of immune function forcing a departure from standard pre-programmed responses. To identify these imbalances we apply network analysis to the co-expression of 16 cytokines in CFS subjects and healthy controls. Concentrations of IL-1a, 1b, 2, 4, 5, 6, 8, 10, 12, 13, 15, 17 and 23, IFN-gamma, lymphotoxin-alpha (LT-alpha) and TNF-alpha were measured in the plasma of 40 female CFS and 59 case-matched controls. Cytokine co-expression networks were constructed from the pair-wise mutual information (MI) patterns found within each subject group. These networks differed in topology significantly more than expected by chance with the CFS network being more hub-like in design. Analysis of local modularity isolated statistically distinct cytokine communities recognizable as pre-programmed immune functional components. These showed highly attenuated Th1 and Th17 immune responses in CFS. High Th2 marker expression but weak interaction patterns pointed to an established Th2 inflammatory milieu. Similarly, altered associations in CFS provided indirect evidence of diminished NK cell responsiveness to IL-12 and LT-alpha stimulus. These observations are consistent with several processes active in latent viral infection and would not have been uncovered by assessing marker expression alone. Furthermore this analysis identifies key sub-networks such as IL-2:IFN-gamma:TNF-alpha that might be targeted in restoring normal immune function. (C) 2010 Elsevier Inc. All rights reserved.

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