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Central effects of morphine and morphine-6-glucuronide on tissue protein synthesis

Y Hashiguchi1, P E Molina, V R Preedy

  • 1Department of Surgery, State University of New York at Stony Brook 11794-8194, USA.

Insights

Central administration of morphine sulfate (Mor) and morphine-6-glucuronide (M6G) suppresses tissue protein synthesis in rats. This effect is linked to opiate-induced respiratory depression and associated hormonal changes.

Area of Science:

  • Pharmacology
  • Physiology
  • Biochemistry

Background:

  • Morphine and its metabolite morphine-6-glucuronide are potent analgesics.
  • Understanding their central vs. peripheral effects on protein synthesis is crucial.

Purpose of the Study:

  • To investigate the central and peripheral effects of morphine sulfate (Mor) and morphine-6-glucuronide (M6G) on tissue protein synthesis rates (kappa s).

Main Methods:

  • Rats received intracerebroventricular (ICV) or intravenous (IV) injections of Mor or M6G.
  • Fractional rates of tissue protein synthesis (kappa s) were measured in liver, spleen, and gastrocnemius muscle.
  • Plasma hormone levels (epinephrine, norepinephrine, corticosterone, insulin) and blood gases (PaO2, pH, PaCO2) were analyzed.

Main Results:

  • ICV administration of Mor and M6G significantly decreased kappa s in the liver, spleen, and gastrocnemius muscle.
  • IV administration of Mor and M6G did not affect kappa s in any studied tissues.
  • ICV Mor and M6G increased plasma epinephrine, norepinephrine, and corticosterone, while decreasing PaO2 and, in the case of M6G, also decreasing pH and increasing PaCO2.
  • Hypoxia alone significantly reduced protein synthesis in the brain, liver, and skeletal muscle.

Conclusions:

  • Morphine sulfate and morphine-6-glucuronide suppress tissue protein synthesis via central mechanisms.
  • Opiate-induced respiratory depression, leading to hypoxia, and associated neural and hormonal alterations likely mediate these effects.

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