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Partial Sciatic Nerve Ligation: A Mouse Model of Chronic Neuropathic Pain to Study the Antinociceptive Effect of Novel Therapies
Published on: October 6, 2022
Antinociceptive profiles and mechanisms of centrally administered oxyntomodulin in various mouse pain models
Soo-Hyun Park1, Jae-Ryeong Lee2, Sang-Pil Jang2
1Front bio Co., Ltd., #405 1-dong, 32 Soyanggang-ro, Chuncheon, Gangwon-do 24232, Republic of Korea.
Abstract:
In the present study, the antinociceptive profiles of oxyntomodulin were examined in ICR mice. Oxyntomodulin administered intrathecally (i.t.) and intracerebroventricularly (i.c.v.) (from 1 to 5μg/5μl) showed an antinociceptive effect in a dose-dependent manner as measured in the acetic acid-induced writhing test. Moreover, cumulative response time of nociceptive behaviors induced by intraplantar formalin injection was reduced by i.t. or i.c.v. treatment with oxyntomodulin during the second, but not the first phase. In addition, the cumulative nociceptive response time after i.t. injection with substance P (0.7μg), glutamate (20μg), and pro-inflammatory cytokines such as TNF-α, IL-β or IFN-γ (100pg/5μl) was diminished by spinally or supraspinally administered oxyntomodulin. However, i.t. and i.c.v. treatment with oxyntomodulin did not affect latencies of the tail-flick and hot-plate paw-licking responses. Furthermore, the i.t. pretreatment with yohimbine (adrenergic receptor antagonist), but not naloxone (an opioid receptor antagonist) or methysergide (a serotonergic receptor antagonist), attenuated antinociceptive effect induced by oxyntomodulin administered i.c.v. in the writhing test. The i.c.v. or i.t. pretreatment with oxyntomodulin attenuated formalin-induced increase of phosphorlated ERK (p-ERK) expression in the spinal cord. Our results suggest that centrally administered oxyntomodulin shows an antinociceptive property in various pain models except for thermal-induced nociception. Furthermore, supraspinally administered oxyntomodulin-induced antinociception may be mediated by spinal adrenergic receptors, but not serotonergic and opioidergic receptors. Furthermore, the antinociception induced by oxyntomodulin appears to be mediated by reduced formalin-induced p-ERK expression in the spinal cord.
Insights
Oxyntomodulin administered centrally shows pain relief in mice, particularly for inflammatory pain, by reducing spinal ERK activation. Its pain-relieving effects involve adrenergic receptors but not opioid or serotonin pathways.
Area of Science:
- Neuroscience
- Pharmacology
- Pain Research
Background:
- Oxyntomodulin is a peptide hormone with diverse physiological roles.
- Its potential antinociceptive (pain-relieving) properties require further investigation.
- Understanding the mechanisms of novel analgesics is crucial for pain management.
Purpose of the Study:
- To investigate the antinociceptive effects of oxyntomodulin in mouse pain models.
- To determine the involvement of specific receptor systems in oxyntomodulin-induced analgesia.
- To explore the molecular pathways underlying oxyntomodulin's pain-relieving action.
Main Methods:
- Administered oxyntomodulin intrathecally (i.t.) and intracerebroventricularly (i.c.v.) in ICR mice.
- Assessed antinociception using acetic acid-induced writhing and formalin tests.
- Investigated receptor involvement using yohimbine, naloxone, and methysergide antagonists.
- Measured spinal phosphorylated ERK (p-ERK) expression.
Main Results:
- Oxyntomodulin demonstrated dose-dependent antinociceptive effects in writhing and formalin tests, primarily in the second phase of formalin pain.
- It did not affect responses in thermal pain tests (tail-flick, hot-plate).
- Antinociception was attenuated by yohimbine (adrenergic antagonist) but not naloxone (opioid) or methysergide (serotonin) antagonists.
- Oxyntomodulin reduced formalin-induced p-ERK expression in the spinal cord.
Conclusions:
- Centrally administered oxyntomodulin possesses antinociceptive properties against chemical and inflammatory pain, but not thermal pain.
- Supraspinal oxyntomodulin-induced analgesia appears to be mediated by spinal adrenergic receptors.
- The antinociception involves the downregulation of spinal p-ERK expression.
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