Meningeal macrophages mask incision pain sensitization in male rats
Kolahdouzan, M.; Ghazisaeidi, S.; Tu, Y.; Muley, M.; Gambeta, E.; Salter, M. W.
Show abstract
IntroductionMeninges surrounding the brain and spinal cord house a variety of immune cell types including macrophages that express the CD206 mannose receptor. Here, we investigated whether CD206+ macrophages in the meninges play a role in regulating nociception and pain hypersensitivity. MethodsWe selectively depleted CD206+ macrophages in the meninges around the lumbar spinal cord by intrathecal administration of anti-CD206 coupled to saporin, and determined the effects of CD206+ macrophage depletion on responses in naive rats and in those that had received a skin incision to the upper hindlimb. In addition, we used RNAseq to investigate transcriptional changes in lumbar meninges and dorsal root ganglia. Experiments were done in both male and female rats. ResultsDepleting CD206+ meningeal macrophages did not alter basal responses in naive animals of either sex. By contrast depleting these cells after skin injury induced mechanical hypersensitivity in male rats, without changes in thermal sensitivity but had no effect in females. In male rats with skin incision injury, we found that the mechanical hypersensitivity induced by depleting CD206+ meningeal macrophages was reversed by administering the NMDAR antagonist, APV. In addition, the hypersensitivity was reversed by an enhancer of KCC2 function, CLP290. Unexpectedly, skin incision caused significant transcriptional changes in the meninges, but only in male rats. ConclusionsTaken together, our results indicate that while CD206+ meningeal macrophages do not regulate basal nociception in naive rats, after skin incision injury, these cells mask mechanical hypersensitivity in male rats only. Thus, we conclude that in a sex-dependent manner CD206+ meningeal macrophages prevent the spread of pain hypersensitivity after a minor injury. Importantly, the skin incision we used was comparable to that used in sham controls in numerous rodent studies of neuropathic pain. Our findings have, therefore, potentially broad implications for re-interpreting results from previous neuropathic pain research.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Microglial ablation does not affect opioid-induced hyperalgesia in rodents 97%
- Peripheral Nerve Transection Predominantly Drives Sympathetic Nerve Sprouting in Mouse Dorsal Root Ganglia 96%
- Studies on CRMP2 SUMOylation-deficient transgenic mice identify sex-specific NaV1.7 regulation in the pathogenesis of chronic neuropathic pain 96%
Similar papers in this journal
- De novo expression of neuropeptide Y in sensory neurons does not contribute to peripheral neuropathic pain 97%
- Protease-Activated Receptor 2 (PAR2) expressed in sensory neurons contributes to signs of pain and neuropathy in paclitaxel treated mice 97%
- Amygdalar Calcitonin Gene-Related Peptide Driven Effects of Cold Sensitivity Induced by Peripheral Neuropathy in Mice 97%
Similar papers in this journal
- Degenerative and regenerative peripheral processes are associated with persistent painful chemotherapy-induced neuropathies in males and females 97%
- The Secretomes of Painful Versus Nonpainful Human Schwannomatosis Tumor Cells Differentially Influence Sensory Neuron Gene Expression and Sensitivity 96%
- Experimenter familiarization is a crucial prerequisite for assessing behavioral outcomes and reduces stress in mice not only under chronic pain conditions 96%
Similar papers in this journal
- FL/FLT3 signaling enhances mechanical pain hypersensitivity through Interleukin-1 beta (IL-1β) in male mice 96%
- ATP-Gated Potassium Channels Contribute to Ketogenic Diet-Mediated Analgesia in Mice. 95%
- Eukaryotic initiation factor 3d Regulates Context-Dependent Pain Hypersensitivity Through the Integrated Stress Response 95%
Similar papers in this journal
- Interleukin-4 induces CD11c+ microglia leading to amelioration of neuropathic pain in mice 96%
- Loss of cortical control over the descending pain modulatory system determines the development of the neuropathic pain state in rats 96%
- Protective role of neuronal and lymphoid cannabinoid CB2 receptors in neuropathic pain 96%
"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.