Action of morphine on the neuro‐effector transmission in the guinea‐pig ileum and in the mouse vas deferens.
Open Access
- 30 September 1980
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 307 (1) , 367-383
- https://doi.org/10.1113/jphysiol.1980.sp013440
Abstract
Effects of morphine on the neuro‐effector junction of the guinea‐pig ileum or mouse vas deferens were investigated by the micro‐electrode and double sucrose gap methods. 1. Morphine (10(‐8)‐10(‐5) M) did not change the membrane potential, membrane resistance and electrical threshold required to produce the action potential of smooth muscle cells of guinea‐pig ileum or mouse vas deferens. 2. Morphine (10(‐8)‐10(‐7) M) markedly suppressed the amplitude of excitatory junction potential (e.j.p.) of ileum or that of vas deferens. However the same concentration of morphine did not suppress the inhibitory junction potential recorded from the guinea‐pig ileum or the facilitation phenomena observed with repetitive stimulation in the mouse vas deferens. In addition, this opiate (3.5 x 10(‐5) M) did not alter the amplitude or the frequency of miniature excitatory junction potential recorded from the mouse vas deferens. 3. Naloxone (3.5 x 10(‐7) M), itself, exerted no effect on the membrane potential and amplitude of the e.j.p. After pretreatment with naloxone, however, the inhibitory action of morphine on the e.j.p. was suppressed. 4. The extracellularly recorded action potential from the small nerve bundle innervating the mouse vas deferens was not affected by morphine (3.5 x 10(‐5) M). 5. The amplitude of the e.j.p. of the guinea‐pig ileum was dependent on the concentration of [Ca]o. When [Ca]o and the relative amplitude of e.j.p. were plotted on a double logarithmic scale, the above relation yielded a straight line with a slope of 1.7. Application of morphine resulted in a reduction in the slope of the straight line to 1.0. 6. These results indicate that morphine probably suppresses the influx of Ca during spike electrogenesis in the nerve terminal, however, there is no modification of the action of Ca in nerve terminals.This publication has 29 references indexed in Scilit:
- Isolation of an endogenous compound from the brain with pharmacological properties similar to morphinePublished by Elsevier ,2003
- ON THE ROLES OF CALCIUM ION DURING POTASSIUM INDUCED CONTRACTURE IN THE SMOOTH MUSCLE CELLS OF THE RABBIT MAIN PULMONARY ARTERYThe Japanese Journal of Physiology, 1977
- beta-Lipotropin as a prohormone for the morphinomimetic peptides endorphins and enkephalins.Proceedings of the National Academy of Sciences, 1976
- Isolation and structure of an untriakontapeptide with opiate activity from camel pituitary glands.Proceedings of the National Academy of Sciences, 1976
- EFFECT OF SYNAPTIC TRANSMISSION BLOCKADE ON MORPHINE ACTION IN GUINEA-PIG MYENTERIC PLEXUS1976
- Effects of divalent cations, cation chelators and an ionophore on morphine analgesia and tolerance.1975
- Tetanic and post‐tetanic rise in frequency of miniature end‐plate potentials in low‐calcium solutionsThe Journal of Physiology, 1971
- KINETIC PARAMETERS OF NARCOTIC AGONISTS AND ANTAGONISTS, WITH PARTICULAR REFERENCE TO N‐ALLYLNOROXYMORPHONE (NALOXONE)British Journal of Pharmacology and Chemotherapy, 1968
- AGONIST AND ANTAGONIST ACTIONS OF MORPHINELIKE DRUGS ON THE GUINEA‐PIG ISOLATED ILEUMBritish Journal of Pharmacology and Chemotherapy, 1966
- The inhibition of autonomic neuro-effector transmission by morphine-like drugs and its use as a screening test for narcotic analgesic drugsNaunyn-Schmiedeberg's Archives of Pharmacology, 1964