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Emerging evidence implicates the G-protein coupled receptor (GPCR) GPR183 in the development of neuropathic pain. Further investigation of the signaling pathways downstream of GPR183 is needed to support the development of GPR183 antagonists as analgesics. In rodents, intrathecal injection of its ligand, 7,25-dihydroxycholesterol (7,25-OHC), causes time-dependent development of mechano-and cold- allodynia (behavioral hypersensitivity). These effects are blocked by the selective small molecule GPR183 antagonist, SAE-14. However, the molecular mechanisms engaged downstream of GPR183 in the spinal cord are not known. Here, we show that 7,25-OHC-induced behavioral hypersensitivity is G dependent, but not -arrestin 2-dependent. Non-biased transcriptomic analyses of dorsal-horn spinal cord (DH-SC) tissues harvested at the time of peak hypersensitivity implicate potential contributions of mitogen-activated protein kinase (MAPK) and nuclear factor B (NF-B). In support, we found that the development of 7,25-OHC/GPR183-induced mechano-allodynia was associated with significant activation of MAPKs (extracellular signal-regulated kinase [ERK], p38) and redox-sensitive transcription factors (NF-B) and increased formation of inflammatory and neuroexcitatory cytokines. SAE-14 blocked these effects and behavioral hypersensitivity. Our findings provide novel mechanistic insight into how GPR183 signaling in the spinal cord produces hypersensitivity through MAPK and NF-B activation. SIGNIFICANCE STATEMENT: Using a multi-disciplinary approach, we have characterized the molecular mechanisms underpinning 7α,25-OHC/GPR183-induced hypersensitivity in mice. Intrathecal injections of the GPR183 agonist 7α,25-OHC induce behavioral hypersensitivity, and these effects are blocked by the selective GPR183 antagonist SAE-14. We found that 7α,25-OHC-induced allodynia is dependent on MAPK and NF-B signaling pathways and results in an increase in pro-inflammatory cytokine expression. This study provides a first insight into how GPR183 signaling in the spinal cord is pronociceptive.
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http://dx.doi.org/10.1124/jpet.122.001283 | DOI Listing |
Neurosci Biobehav Rev
September 2025
Department of Psychiatry, The University of Melbourne, Melbourne, Victoria, Australia; Department of Psychiatry, The University of Melbourne, Austin Health, Melbourne, Victoria, Australia. Electronic address:
One of the characteristic presentations of functional neurological disorder (FND) is with motor symptoms, such as weakness and tremor. While these symptoms are both common and disabling, how they arise at a mechanistic level remains unclear. This review provides an up-to-date account of the underpinnings of motor dysfunction in FND by integrating findings from neuroimaging, physiology, genetic, brain stimulation, and behavioral studies.
View Article and Find Full Text PDFPediatr Allergy Immunol
September 2025
Center for Digital Health, Medical Science Research Institute, Kyung Hee University Medical Center, Kyung Hee University College of Medicine, Seoul, South Korea.
Background: Residential greenness is an important environmental factor potentially influencing the development of allergic diseases in adolescents; however, its impact remains understudied in South Korea. This study aimed to examine the association between residential greenness and allergic disease prevalence using nationally representative data.
Method: We analyzed data from 1,130,598 adolescents (7-12th grade) participating in the Korean Youth Risk Behavior Web-based Survey (2007-2024).
Pediatr Allergy Immunol
September 2025
Food Allergy Referral Centre, Veneto Region, Department of Women and Child Health, Padua University Hospital, Padua, Italy.
This narrative review aimed to explore mental health issues among children with food-induced anaphylaxis (FIA) and their parents and to identify possible risk factors. A review of the scientific literature from 2005 to 2025 (MEDLINE, PubMed, PsycINFO) was done, and 31 papers were selected. Results were presented according to DSM-V diagnostic categories.
View Article and Find Full Text PDFAlcohol
September 2025
School of Neuroscience, Virginia Polytechnic and State University, 970 Washington Street SW, Blacksburg, VA, 24061, USA. Electronic address:
Alcohol Use Disorder (AUD) affects millions of people globally and is characterized by cycles of intoxication, withdrawal, and relapse. Convergent clinical and preclinical evidence strongly support the conclusion that AUD precipitates chronic pain marked by mechanical and thermal hypersensitivity, yet currently available FDA-approved therapeutics do not effectively manage AUD-associated pain. This review synthesizes clinical and preclinical evidence on AUD-associated pain, highlighting known phenomena of allodynia and hyperalgesia as well as small and/or large fiber neuropathy in patient subpopulations along with preclinical acute and chronic alcohol exposure paradigm-specific nociceptive phenotypes in rodents.
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