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Publication : Mice lacking Kcns1 in peripheral neurons show increased basal and neuropathic pain sensitivity.

First Author  Tsantoulas C Year  2018
Journal  Pain Volume  159
Issue  8 Pages  1641-1651
PubMed ID  29697531 Mgi Jnum  J:276188
Mgi Id  MGI:6296353 Doi  10.1097/j.pain.0000000000001255
Citation  Tsantoulas C, et al. (2018) Mice lacking Kcns1 in peripheral neurons show increased basal and neuropathic pain sensitivity. Pain 159(8):1641-1651
abstractText  Voltage-gated potassium (Kv) channels are increasingly recognised as key regulators of nociceptive excitability. Kcns1 is one of the first potassium channels to be associated with neuronal hyperexcitability and mechanical sensitivity in the rat, as well as pain intensity and risk of developing chronic pain in humans. Here, we show that in mice, Kcns1 is predominantly expressed in the cell body and axons of myelinated sensory neurons positive for neurofilament-200, including Adelta-fiber nociceptors and low-threshold Abeta mechanoreceptors. In the spinal cord, Kcns1 was detected in laminae III to V of the dorsal horn where most sensory A fibers terminate, as well as large motoneurons of the ventral horn. To investigate Kcns1 function specifically in the periphery, we generated transgenic mice in which the gene is deleted in all sensory neurons but retained in the central nervous system. Kcns1 ablation resulted in a modest increase in basal mechanical pain, with no change in thermal pain processing. After neuropathic injury, Kcns1 KO mice exhibited exaggerated mechanical pain responses and hypersensitivity to both noxious and innocuous cold, consistent with increased A-fiber activity. Interestingly, Kcns1 deletion also improved locomotor performance in the rotarod test, indicative of augmented proprioceptive signalling. Our results suggest that restoring Kcns1 function in the periphery may be of some use in ameliorating mechanical and cold pain in chronic states.
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