Related Experiment Video
Updated: Apr 18, 2026

Modified Spared Nerve Injury Surgery Model of Neuropathic Pain in Mice
Published on: January 25, 2022
Slack channels expressed in sensory neurons control neuropathic pain in mice
Ruirui Lu1, Anne E Bausch2, Wiebke Kallenborn-Gerhardt3
1Institut für Pharmakologie und Toxikologie, Universität Witten/Herdecke, Zentrum für Biomedizinische Ausbildung und Forschung, 58453 Witten, Germany, Pharmazentrum Frankfurt/Zentrum für Arzneimittelforschung, Entwicklung und Sicherheit, Institut für Klinische Pharmakologie, Universitätsklinikum Frankfurt, 60590 Frankfurt am Main, Germany.
Abstract:
Slack (Slo2.2) is a sodium-activated potassium channel that regulates neuronal firing activities and patterns. Previous studies identified Slack in sensory neurons, but its contribution to acute and chronic pain in vivo remains elusive. Here we generated global and sensory neuron-specific Slack mutant mice and analyzed their behavior in various animal models of pain. Global ablation of Slack led to increased hypersensitivity in models of neuropathic pain, whereas the behavior in models of inflammatory and acute nociceptive pain was normal. Neuropathic pain behaviors were also exaggerated after ablation of Slack selectively in sensory neurons. Notably, the Slack opener loxapine ameliorated persisting neuropathic pain behaviors. In conclusion, Slack selectively controls the sensory input in neuropathic pain states, suggesting that modulating its activity might represent a novel strategy for management of neuropathic pain.

