Involvement of peripheral mu opioid receptors in scratching behavior in mice

Atsuki Yamamoto1, Yukio Sugimoto

  • 1Department of Medicinal Pharmacology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Tsushima-naka 1-1-1, Kita-ku, Okayama 700-8530, Japan.

Insights

Opioid-induced pruritus (itching) is often experienced. This study found that activating peripheral mu-opioid receptors causes itching in mice, and naloxone methiodide may treat this side effect.

Area of Science:

  • Pharmacology
  • Neuroscience
  • Immunology

Background:

  • Pruritus is a frequent side effect of opioid therapy.
  • The precise mechanisms underlying opioid-induced pruritus remain incompletely understood.
  • Investigating peripheral mechanisms is crucial for targeted treatments.

Purpose of the Study:

  • To elucidate the role of peripheral opioid receptors in inducing itch sensation.
  • To identify specific opioid receptor subtypes involved in opioid-induced pruritus.
  • To evaluate the efficacy of peripherally acting antagonists in mitigating opioid-induced itch.

Main Methods:

  • Intradermal injection of loperamide (peripherally restricted opioid agonist) in mice to assess itch.
  • Administration of selective mu (DAMGO), delta (DPDPE), and kappa (U-50488H) opioid receptor agonists.
  • Evaluation of scratching behavior following agonist and antagonist (naloxone methiodide) administration.

Main Results:

  • Intradermal loperamide induced scratching behavior, indicating peripheral activation causes itch.
  • Selective mu-opioid receptor activation (DAMGO) elicited scratching, unlike delta or kappa agonists.
  • Naloxone methiodide significantly reduced loperamide- and DAMGO-induced scratching.

Conclusions:

  • Peripheral mu-opioid receptor activation is a key mechanism in opioid-induced pruritus.
  • Naloxone methiodide demonstrates potential as a targeted treatment for opioid-induced itching.
  • Findings support the development of strategies to manage opioid side effects without central nervous system impact.