Muscle IL1β drives ischemic myalgia via ASIC3-mediated sensory neuron sensitization

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Abstract

Musculoskeletal pain is a significantly common clinical complaint. Although it is known that muscles are quite sensitive to alterations in blood flow/oxygenation and a number of muscle pain disorders are based in problems of peripheral perfusion, the mechanisms by which ischemic-like conditions generate myalgia remain unclear. We found, using a multidisciplinary experimental approach, that ischemia and reperfusion injury (I/R) in male Swiss Webster mice altered ongoing and evoked pain-related behaviors in addition to activity levels through enhanced muscle interleukin-1 beta (IL1β)/IL1 receptor signaling to group III/IV muscle afferents. Peripheral sensitization depended on acid-sensing ion channels (ASICs) because treatment of sensory afferents in vitro with IL1β-upregulated ASIC3 in single cells, and nerve-specific knock-down of ASIC3 recapitulated the results of inhibiting the enhanced IL1β/IL1r1 signaling after I/R, which was also found to regulate afferent sensitization and pain-related behaviors. This suggests that targeting muscle IL1β signaling may be a potential analgesic therapy for ischemic myalgia.

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Ross, J. L., Queme, L. F., Cohen, E. R., Green, K. J., Lu, P., Shank, A. T., … Jankowski, M. P. (2016). Muscle IL1β drives ischemic myalgia via ASIC3-mediated sensory neuron sensitization. Journal of Neuroscience, 36(26), 6857–6871. https://doi.org/10.1523/JNEUROSCI.4582-15.2016

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