Stochastic Petri Net Modeling of Hypoxia Pathway Predicts a Novel Incoherent Feed-Forward Loop Controlling SDF-1 Expression in Acute Kidney Injury

(2016) Stochastic Petri Net Modeling of Hypoxia Pathway Predicts a Novel Incoherent Feed-Forward Loop Controlling SDF-1 Expression in Acute Kidney Injury. Ieee Transactions on Nanobioscience. pp. 19-26. ISSN 1536-1241

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Abstract

Homing of stem cells to the sites of injury is crucial for tissue regeneration. Stromal derived factor 1 (SDF-1) is among the most important chemokines recruiting these cells. Unexpectedly, our previous experimental data on mouse models of acute kidney injury showed that SDF-1 has a declining trend following ischemic kidney insult. To describe this unforeseen observation, a stochastic Petri net model of SDF-1 regulation in the hypoxia pathway was constructed based on main related components extracted from literature. Using this strategy, predictions regarding the underlying mechanisms of SDF-1 kinetics are generated and a novel incoherent feed forward loop regulating SDF-1 expression is proposed. The computational approach suggested here can be exploited to propose novel therapies for debilitating disorders such as kidney injury.

Item Type: Article
Keywords: acute kidney injury chemokine cxcl12 hypoxia-inducible factor 1 incoherent feed-forward control stochastic petri net systems biology transcription factor inducible factor-1 protein hif-1 cells gene vhl hydroxylation degradation hif-1-alpha
Page Range: pp. 19-26
Journal or Publication Title: Ieee Transactions on Nanobioscience
Journal Index: ISI
Volume: 15
Number: 1
Identification Number: https://doi.org/10.1109/Tnb.2015.2509475
ISSN: 1536-1241
Depositing User: مهندس مهدی شریفی
URI: http://eprints.mui.ac.ir/id/eprint/3155

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