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Publication : Switch of serotonergic descending inhibition into facilitation by a spinal chloride imbalance in neuropathic pain.

First Author  Aby F Year  2022
Journal  Sci Adv Volume  8
Issue  30 Pages  eabo0689
PubMed ID  35895817 Mgi Jnum  J:351510
Mgi Id  MGI:7329504 Doi  10.1126/sciadv.abo0689
Citation  Aby F, et al. (2022) Switch of serotonergic descending inhibition into facilitation by a spinal chloride imbalance in neuropathic pain. Sci Adv 8(30):eabo0689
abstractText  Descending control from the brain to the spinal cord shapes our pain experience, ranging from powerful analgesia to extreme sensitivity. Increasing evidence from both preclinical and clinical studies points to an imbalance toward descending facilitation as a substrate of pathological pain, but the underlying mechanisms remain unknown. We used an optogenetic approach to manipulate serotonin (5-HT) neurons of the nucleus raphe magnus that project to the dorsal horn of the spinal cord. We found that 5-HT neurons exert an analgesic action in naive mice that becomes proalgesic in an experimental model of neuropathic pain. We show that spinal KCC2 hypofunction turns this descending inhibitory control into paradoxical facilitation; KCC2 enhancers restored 5-HT-mediated descending inhibition and analgesia. Last, combining selective serotonin reuptake inhibitors (SSRIs) with a KCC2 enhancer yields effective analgesia against nerve injury-induced pain hypersensitivity. This uncovers a previously unidentified therapeutic path for SSRIs against neuropathic pain.
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