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IL-4 deficiency is associated with mechanical hypersensitivity in mice
Nurcan Üçeyler1, Tengü Topuzoğlu, Peter Schiesser
1Department of Neurology, University of Würzburg, Würzburg, Germany. ueceyler_n@klinik.uni-wuerzburg.de
Abstract:
Interleukin-4 (IL-4) is an anti-inflammatory and analgesic cytokine that induces opioid receptor transcription. We investigated IL-4 knockout (ko) mice to characterize their pain behavior before and after chronic constriction injury (CCI) of the sciatic nerve as a model for neuropathic pain. We investigated opioid responsivity and measured cytokine and opioid receptor gene expression in the peripheral and central nervous system (PNS, CNS) of IL-4 ko mice in comparison with wildtype (wt) mice. Naïve IL-4 ko mice displayed tactile allodynia (wt: 0.45 g; ko: 0.18 g; p<0.001), while responses to heat and cold stimuli and to muscle pressure were not different. No compensatory changes in the gene expression of tumor necrosis factor-alpha (TNF), IL-1β, IL-10, and IL-13 were found in the PNS and CNS of naïve IL-4 ko mice. However, IL-1β gene expression was stronger in the sciatic nerve of IL-4 ko mice (p<0.001) 28 days after CCI and only IL-4 ko mice had elevated IL-10 gene expression (p = 0.014). Remarkably, CCI induced TNF (p<0.01), IL-1β (p<0.05), IL-10 (p<0.05), and IL-13 (p<0.001) gene expression exclusively in the ipsilateral spinal cord of IL-4 ko mice. The compensatory overexpression of the anti-inflammatory and analgesic cytokines IL-10 and IL-13 in the spinal cord of IL-4 ko mice may explain the lack of genotype differences for pain behavior after CCI. Additionally, CCI induced gene expression of μ, κ, and δ opioid receptors in the contralateral cortex and thalamus of IL-4 ko mice, paralleled by fast onset of morphine analgesia, but not in wt mice. We conclude that a lack of IL-4 leads to mechanical sensitivity; the compensatory hyperexpression of analgesic cytokines and opioid receptors after CCI, in turn, protects IL-4 ko mice from enhanced pain behavior after nerve lesion.
Insights
Mice lacking Interleukin-4 (IL-4) show mechanical sensitivity but are protected from neuropathic pain after nerve injury. This protection is linked to increased anti-inflammatory cytokines and opioid receptors in the central nervous system.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Interleukin-4 (IL-4) is an anti-inflammatory and analgesic cytokine.
- IL-4 influences opioid receptor transcription.
- Neuropathic pain models are crucial for understanding pain mechanisms.
Purpose of the Study:
- To investigate the role of IL-4 in neuropathic pain using IL-4 knockout (ko) mice.
- To characterize pain behavior, opioid responsivity, and gene expression in IL-4 ko mice after sciatic nerve injury.
- To compare IL-4 ko mice with wildtype (wt) mice.
Main Methods:
- Sciatic nerve chronic constriction injury (CCI) model in IL-4 ko and wt mice.
- Assessment of tactile allodynia, thermal hyperalgesia, cold allodynia, and muscle hyperalgesia.
- Measurement of cytokine (TNF, IL-1β, IL-10, IL-13) and opioid receptor gene expression in the peripheral and central nervous system (PNS, CNS).
Main Results:
- Naïve IL-4 ko mice exhibited tactile allodynia compared to wt mice.
- CCI induced significant gene expression of IL-1β, TNF, IL-10, and IL-13 exclusively in the spinal cord of IL-4 ko mice.
- IL-4 ko mice showed increased expression of μ, κ, and δ opioid receptors in the cortex and thalamus after CCI, correlating with enhanced morphine analgesia.
Conclusions:
- A lack of IL-4 leads to mechanical sensitivity but confers protection against exacerbated neuropathic pain.
- Compensatory overexpression of IL-10 and IL-13 in the spinal cord of IL-4 ko mice may explain the lack of genotype differences in pain behavior post-CCI.
- Upregulation of opioid receptors and enhanced morphine analgesia in IL-4 ko mice suggest a role for IL-4 in modulating pain perception and response.
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