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Modification of mu-opioid agonist-induced locomotor activity and development of morphine dependence by diabetes

J Kamei1, M Ohsawa, A Saitoh

  • 1Department of Pathophysiology & Therapeutics, Faculty of Pharmaceutical Sciences, Hoshi University, Tokyo, Japan.

Insights

Diabetic mice show reduced responses to morphine

Area of Science:

  • Pharmacology
  • Neuroscience
  • Diabetes Research

Background:

  • Mu-opioid receptors play a role in regulating locomotor activity and mediating physical dependence on opioids.
  • Diabetes is a metabolic disorder that can affect various physiological systems, including the nervous system.
  • Opioid-induced hyperalgesia and altered drug responses are potential complications in diabetic patients.

Purpose of the Study:

  • To investigate the effects of diabetes on the locomotor-enhancing and physical dependence actions of mu-opioid receptor agonists.
  • To determine if diabetes alters the sensitivity of mu1-opioid receptors involved in these effects.

Main Methods:

  • Administered morphine and DAMGO to diabetic and nondiabetic mice to assess locomotor activity.
  • Used mu-opioid receptor antagonists (beta-funaltrexamine, naloxonazine) to block receptor activity.
  • Induced physical dependence on morphine through chronic treatment and precipitated withdrawal using naloxone.

Main Results:

  • Both diabetic and nondiabetic mice exhibited dose-dependent locomotor enhancement with morphine and DAMGO.
  • Locomotor-enhancing effects were significantly reduced in diabetic mice compared to nondiabetic mice.
  • Morphine-dependent diabetic mice showed reduced naloxone-precipitated jumping and body shakes compared to nondiabetic mice, despite greater weight loss.

Conclusions:

  • Diabetic mice are selectively hyporesponsive to mu1-opioid receptor-mediated locomotor enhancement.
  • Diabetes may influence mu1-opioid receptor-mediated withdrawal signs following morphine dependence.

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