Increased activity in the somatosensory and insular cortex during the transition from acute to chronic neuropathic pain
Moosa, S.; Murphy, E. D.; Gupta, N.; Elias, W. J.; Farzad, F.; Sun, C.; Kapur, J.; Joshi, S.
Show abstract
Pathophysiological mechanisms underlying the transition from acute to chronic neuropathic pain remain incompletely understood. The somatosensory and insular cortices are key cortical components of the pain matrix. We examined changes in activation of these cortical regions during the transition from acute to chronic neuropathic pain. The right sciatic nerve was ligated in activity reporter TRAP mice using standard procedures. Mechanical allodynia was confirmed after CCI or sham surgery using von Frey monofilaments applied to the hind paws. To label active neurons, 4-hydroxytamoxifen was administered to separate cohorts at 1, 3, and 6 weeks following nerve ligation. Passive tissue clearing of brain sections and confocal imaging was used to assess active neurons. Progressive reduction of ipsilateral hind paw in CCI mice indicated mechanical allodynia development. CCI mice showed robust neuronal activation in the bilateral somatosensory and insular cortices. The somatosensory cortical activation peaked at 3 weeks post-CCI, whereas insular cortical activity increased during the transition from acute to chronic neuropathic pain. These studies revealed that CCI induced progressive mechanical allodynia and distinct temporal patterns of cortical neuronal activation, with transient peak neuronal activity in the somatosensory cortex and sustained, increasing activation in the insular cortex during acute-to-chronic pain transformation.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Sex differences in the impact of nerve injury on Locus Coeruleus function and behaviour in mice 95%
- Diversity of microglial transcriptional responses during opioid exposure and neuropathic pain 95%
- Peripheral Nerve Transection Predominantly Drives Sympathetic Nerve Sprouting in Mouse Dorsal Root Ganglia 94%
Similar papers in this journal
- The impact of nerve injury on the immune system across the lifespan is sexually dimorphic 95%
- Eukaryotic initiation factor 3d Regulates Context-Dependent Pain Hypersensitivity Through the Integrated Stress Response 94%
- FL/FLT3 signaling enhances mechanical pain hypersensitivity through Interleukin-1 beta (IL-1β) in male mice 94%
Similar papers in this journal
- GPR37 activation erases spinal pain memory and resolves increased nociception in murine models 96%
- De novo expression of neuropeptide Y in sensory neurons does not contribute to peripheral neuropathic pain 96%
- Dynamics of global gene expression and chromatin accessibility of the peripheral nervous system in animal models of persistent pain 95%
Similar papers in this journal
- The Secretomes of Painful Versus Nonpainful Human Schwannomatosis Tumor Cells Differentially Influence Sensory Neuron Gene Expression and Sensitivity 95%
- Degenerative and regenerative peripheral processes are associated with persistent painful chemotherapy-induced neuropathies in males and females 92%
- Identification of Sensory Fiber Types in Mouse Temporomandibular Joint Tissues 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.