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Biomedical subjects

E L Way

Publications and source records attributed to E L Way.

At least 127 records · Page 7Linked to original sources

Potency of the N3im-methyl analog of TRH in the induction of shaking movements in the rat.

The relative potencies of TRH analogs in provoking a shaking response in rats were determined. Bilateral administration of 0.011-2.0 mug TRH analog into the periaqueductal-fourth ventricular spaces of the barbiturate-anesthetized rat showed that N3im-methyl TRH was approximately 10X more potent than TRH, whereas N1im-methyl TRH was approximately 10X less potent than TRH. These results indicate that the potencies of the TRH analogs in inducing shaking parallel their thyrotropin-releasing activities.

Animals↗

Effect of pargyline on morphine tolerance and physical dependence development in mice.

The effects of single and repeated pargyline administration on morphine antinociception in both naive and morphine-tolerant mice and on naloxone-precipitated withdrawal in morphine tolerant-dependent animals were investigated. Adult, male Swiss-Webster mice were rendered tolerant to and dependent on morphine by the s.c. pellet implantion technique. Morphine analgesia, as assessed by the tail-flick antinociceptive test, was potentiated in tolerant animals by acute adminstration of pargyline but antagonized by repeated pargyline administration; pargyline produced similar effects in non-tolerant mice and to the same relative degree. Repeated pargyline treatment during morphine pellet implantation enhanced the withdrawal jumping response precipitated by naloxone in dependent mice. Pargyline also, after a single injection, exacerbated jumping in mice undergoing abrupt withdrawal. Neither acute nor chronic pargyline administration altered the brain distribution of injected morphine in non-tolerant mice. It was concluded that pargyline may modify acute morphine actions and withdrawal without materially altering the process(es) involved in the development of tolerance and physical dependence.

Animals↗

Precipitation of abstinence-like syndrome in morphine-dependent mice by pargyline.

In mice rendered morphine-dependent by pellet implantation for 3 days, the administration of pargyline 6 hours after pellet removal intensified narcotic abstinence behavior, particularly the narcotic withdrawal jumping response. Pargyline, 75 mg/kg i.p., caused a 6- to 9-fold increase in the incidence of jumping in mice withdrawing from morphine 6 hours after removal of the pellet, whereas this effect was not observed: 1) 1 hour after the injection of pargyline or 2) in animals still implanted with the morphine pellet. The median effective dose (ED50) of pargyline required to elicit withdrawal jumping in mice implanted with morphine decreased with increasing physical dependence. The ED50 for 72 hours was about one-sixth that after 24 hours of implantation. Additionally, pargyline potentiated naloxone-precipitated withdrawal jumping as evidenced by a reduction of the naloxone ED50 by approximately one-half. Administration of other monoamine oxidase inhibitors such as pheniprazine, iproiazid or tranylcypromine failed to alter the indicence of jumping in dependent mice undergoind abrupt morphine with drawal. Further, dopamine receptor stimulation by amphetamine, pheniprazine or amantadine antagonized the pargyline-induced jumping response. These data suggest that the increased incidence of withdrawal jumping observed after pargyline in morphine-dependent mice is not related to monoamine oxidase inhibition but rather to a possible pargyline-induced decrease in dopaminergic activity.

Amantadine↗

Antinociceptive effects of lanthanum and cerium in nontolerant and morphine tolerant-dependent animals.

Intracerebroventricularly (i.vt.) administered lanthanum chloride was found to produce antinociceptive effects as measured by the mouse tail-flick and hot plate tests and the rat tail-flick test. These antinociceptive effects were reduced by peripheral administration of the narcotic antagonist naloxone or by i.vt. administration of calcium chloride. In addition, animals made tolerant to morphine were also tolerant to the effects of La+++. In morphine-dependent mice, the incidence of both abrupt and naloxone-precipitated withdrawal jumping was reduced by La+++ administration. In view of the known inhibitory effects of La+++ on Ca++ binding and movement, these findings suggest that alterations in Ca++ localization may be involved in the analgetic action of narcotic drugs as well as the development of narcotic tolerance and dependence.

Analgesics↗

Reinitiation of sensitivity to naloxone by a single narcotic injection in postaddicted mice.

In mice implanted with a morphine pellet for 3 days and subsequently withdrawn for various periods of time, a single injection of morphine results in a rapid and marked sensitization of abstinent mice to naloxone-induced jumping behavior when compared to abstinent mice pretreated with saline or to placebo-withdrawn mice given a single morphine injection. Maximum sensitization of abstinent mice occurs at morphine doses of about 10 to 30 mg/kg and peaks at 0.5 to 2 hours after morphine administration. The ability of morphine to sensitize abstinent mice to naloxone declines with time after pellet removal and appears to consist of two components, one with a short T1/2 and one with a much longer T1/2. Abstinent mice are also sensitized to naloxone by levorphanol and methadone, but not by dextrorphan. It is proposed that the administration of a narcotic drug to abstinent mice uncovers a latent, pre-existing state of physical dependence and restores the responsiveness of this state to naloxone.

Animals↗

Circling behavior after narcotic drugs and during naloxone-precipitated abstinence in rats with unilateral nigral lesions.

Unilateral lesions of the substantia nigra zona compacta (SNC) in rats were produced by electrolytic coagulation or by an injection of 6-hydroxydopamine. Two to 5 weeks later, after being preselected for amphetamine-induced ipsilateral circling behavior, the animals were administered narcotic agonists or antagonists and their circling behavior was observed. Morphine, methadone, levorphanol, nalorphine or pentazocine induced ipsilateral circling movements; both naloxone and dextrorphan were without effect. Ipsilateral circling was also observed in rats with unilateral electrolytic lesions after administration of agents that are thought to enhance central dopaminergic activities: d-amphetamine, l-dopa and apomorphine. In rats with unilateral electrolytic or 6-hydroxydopamine SNC lesions that were rendered highly morphine-dependent by multiple-morphine pellet implantation, contralateral (C) circling behavior was observed within 1 to 2 minutes after a naloxone challenge; the onset and duration of C circling behavior coincided with the initial appearance and duration of precipitated-morphine withdrawal signs. C circling was also observed after administration of putative dopamine receptor blockers, haloperidol and pimozide in rats with either unilateral electrolytic or 6-hydroxydopamine SNC lesions. Morphine pretreatment diminished both the C circling intensity and the appearance of withdrawal signs observed after a naloxone challenge in morphine-dependent, SNC-lesioned rats. The naloxone-precipitated withdrawal in unilaterally lesioned morphine-dependent rats was accompanied by a 20% elevation of neostriatal dopamine in the intact side. In contrast to the effects of a chronic SNC lesion in decreasing neostriatal dopamine, a 77% increase was observed in the lesioned side 30 minutes after electrolytic coagulation. Thus, narcotic agonists and partial agonists may enhance central dopaminergic activities and naloxone-precipitated withdrawal may involve a diminution in central dopaminergic activities of the nigroneostriatal pathway.

Animals↗