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Modeling the NF-?B mediated inflammatory response predicts cytokine waves in tissue.


ABSTRACT:

Background

Waves propagating in "excitable media" is a reliable way to transmit signals in space. A fascinating example where living cells comprise such a medium is Dictyostelium D. which propagates waves of chemoattractant to attract distant cells. While neutrophils chemotax in a similar fashion as Dictyostelium D., it is unclear if chemoattractant waves exist in mammalian tissues and what mechanisms could propagate them.

Results

We propose that chemoattractant cytokine waves may naturally develop as a result of NF-?B response. Using a heuristic mathematical model of NF-?B-like circuits coupled in space we show that the known characteristics of NF-?B response favor cytokine waves.

Conclusions

While the propagating wave of cytokines is generally beneficial for inflammation resolution, our model predicts that there exist special conditions that can cause chronic inflammation and re-occurrence of acute inflammatory response.

SUBMITTER: Yde P 

PROVIDER: S-EPMC3152534 | biostudies-literature | 2011 Jul

REPOSITORIES: biostudies-literature

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Publications

Modeling the NF-κB mediated inflammatory response predicts cytokine waves in tissue.

Yde Pernille P   Mengel Benedicte B   Jensen Mogens H MH   Krishna Sandeep S   Trusina Ala A  

BMC systems biology 20110719


<h4>Background</h4>Waves propagating in "excitable media" is a reliable way to transmit signals in space. A fascinating example where living cells comprise such a medium is Dictyostelium D. which propagates waves of chemoattractant to attract distant cells. While neutrophils chemotax in a similar fashion as Dictyostelium D., it is unclear if chemoattractant waves exist in mammalian tissues and what mechanisms could propagate them.<h4>Results</h4>We propose that chemoattractant cytokine waves may  ...[more]

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