Lightfoot, AP, Sakellariou, GK, Nye, GA, McArdle, F, Jackson, MJ, Griffiths, RD and McArdle, A (2015) SS-31 attenuates TNF-α induced cytokine release from C2C12 myotubes. Redox Biology, 6. pp. 253-259. ISSN 2213-2317
|
Available under License Creative Commons Attribution Non-commercial No Derivatives. Download (2MB) | Preview |
Abstract
© 2015 Published by Elsevier B.V. TNF-α is a key inflammatory mediator and is proposed to induce transcriptional responses via the mitochondrial generation of Reactive Oxygen Species (ROS). The aim of this study was to determine the effect of TNF-α on the production of myokines by skeletal muscle. Significant increases were seen in the release of IL-6, MCP-1/CCL2, RANTES/CCL5 and KC/CXCL1 and this release was inhibited by treatment with Brefeldin A, suggesting a golgi-mediated release of cytokines by muscle cells. An increase was also seen in superoxide in response to treatment with TNF-α, which was localised to the mitochondria and this was also associated with activation of NF-κB. The changes in superoxide, activation of NF-kB and release of myokines were attenuated following pre-treatment with SS-31 peptide indicating that the ability of TNF-α to induce myokine release may be mediated through mitochondrial superoxide, which is, at least in part, associated with activation of the redox sensitive transcription factor NF-kB.
Impact and Reach
Statistics
Additional statistics for this dataset are available via IRStats2.