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Biomedical subjects

W Fratta

Publications and source records attributed to W Fratta.

At least 37 records · Page 2Linked to original sources

Antinociceptive action of DBO 17 and DBO 11 in mice: two 3,8 diazabicyclo (3.2.1.) octane derivates with selective mu opioid receptor affinity.

Two 3,8 diazabicyclo (3.2.1.) octane derivates, namely DBO 17 and DBO 11, were studied for the opioid-like activity. In the rat brain membrane preparation binding studies, DBO 17 and DBO 11 showed a high affinity and selectivity for the mu opioid receptor (Ki's: 5.1 and 25 nM, respectively). DBO 17 and DBO 11 inhibited the nociceptive response in the hot-plate test of mice with ED50 values of 0.16 mg/kg and 0.44 mg/kg, respectively. The antinociceptive action of both DBO 17 and DBO 11 was blocked by naloxone. Tolerance to the antinociceptive action of DBO 17 and DBO 11 was present after 13 and 7 days of repeated treatment, respectively. Both DBO 17 and DBO 11 were ineffective in morphine-tolerant mice and vice versa. Chronic treatments (three times daily for seven consecutive days) of DBO 17 and DBO 11 induced a naloxone-precipitated withdrawal syndrome in DBO 17 treated mice similar to that in morphine treated mice, whereas in DBO 11 treated mice abstinence signs were virtually absent. These results indicate an interesting pharmacological profile that suggests these compounds as possible new candidates for the clinical treatment of pain.

Analgesia↗

Rewarding properties of gamma-hydroxybutyric acid: an evaluation through place preference paradigm.

Gamma-hydroxybutyric acid (GHB), a putative neurotransmitter or neuromodulator found in the mammalian brain, has been successfully used in clinical practice to alleviate both alcohol and opiate withdrawal symptoms. In the present study we used a conditioned place preference (CPP) paradigm to investigate whether GHB possesses rewarding properties in rats. In order to exclude possible artifacts due to experimental design, we evaluated the possibility of a shift in preference when rats are conditioned either on their non-preferred side or on a randomly assigned side of conditioning. In both experiments GHB was seen to induce CPP. Although to date the physiological role of this compound still remains unclear, there is no doubt that GHB, further to its proven effect on alcohol and opiates, possesses rewarding properties of its own. The abuse liability afforded by this drug suggests the use of particular caution in handling GHB as a clinically useful drug.

Animals↗

C-Fos expression as a molecular marker in corticotropin-releasing factor-induced seizures.

Expression of Fos-like protein has been shown to increase after seizures in several types of experimentally induced epilepsies. The intracerebroventricular (icv) injection of murine corticotropin-releasing factor (CRF) in rats (10 micrograms), shows an electroencephalographic (EEG) spiking activity restricted to the amygdaloid-hippocampal area. This EEG seizure pattern represents a unique model of localized epileptic activity induced by a neuropeptide. C-fos expression after icv CRF has been considered a useful tool in mapping areas involved in stress and in seizure activity. Our results show that 1 microgram and 10 micrograms CRF are able to induce c-fos activation in several brain areas. Moreover, the present study not only details c-fos expression increase in brain areas directly involved in spiking activation, such as the amygdaloid-hippocampal region, but also maps the possible contribution of other regions to seizure manifestations.

Animals↗

Effect of isradipine, a dihydropyridine-calcium antagonist on i.v. self-administration of morphine in rats.

The effect of dihydropyridine calcium channel antagonist isradipine (PN 200-110) on morphine reinforcement has been investigated using i.v. self-administration test in rats. Rats were given the opportunity to self-administer a solution of morphine (1 mg/ml, i.v.) in a 1 hr limited access paradigm (FR = 1). Within 5-7 days rats had learned to self-administer approximately 1 mg of morphine in 1 hr as evidenced by a plateau of responding. The administration of isradipine (1.2, 2.5 and 5.0 mg/kg s.c.) 90 min before the morphine self-administration session, induced dose-dependent increase in the number of morphine self-infusions with respect to basal values. This response pattern was very similar to the one observed when morphine solution was substituted by saline in trained rats not treated with isradipine. The results indicate that isradipine inhibits partially the reinforcing properties of morphine in self-administration test.

Animals↗

Failure of naloxone to modify electroencephalogram interictal epileptiform discharges in patients with primary generalized epilepsy after slation.

Sleep deprivation (SD) is a method widely used to activate EEG epilept oform activity, but the basis of this effect remains unknown. One possibilty is that SD shares a common mechanism with physical and psychological stresses that also precipitate seizures. Because endogenous opioids are released during stress, opioids may play a role in enhancing epileptiform EEG patterns after SD. We report the effects of SD on EEG epileptiform activity in a small but highly homogeneous population of 13 epileptic patients with idiopathic (primary) generalized epilepsy (IGE). SD increased EEG interictal epileptiform discharges (IEDs); this activation was not modified by naloxone (NAL). Our results, in contrast to those of previous investigations of localization-related epilepsy, which showed an increase in IEDs after NAL administration, suggest a possible difference in the mechanism whereby SD enhances IEDs in IGE and localization-related epilepsy.

Adolescent↗

Chronic imipramine, L-sulpiride and mianserin decrease corticotropin releasing factor levels in the rat brain.

Among clinically effective antidepressant drugs, the action mechanism of mianserin has recently been related to variations in corticotropin releasing factor (CRF) levels in the rat locus coeruleus. We describe a specific effect on CRF levels after chronic treatment with different antidepressants: mianserin (10 mg/kg), imipramine (20 mg/kg), both for 21 days, or L-sulpiride (1 mg/kg) for 15 days. While all antidepressants used greatly decreased CRF concentrations in the hypothalamus, only mianserin decreased CRF concentrations by 40% in extrahypothalamic sites. Acute treatments failed to modify CRF levels. Chronic treatment with mianserin did not affect CRF density either in the hypothalamus or the extrahypothalamic areas. This new finding may add another facet to the therapeutic action of certain antidepressants and in particular to the atypical profile of mianserin.

Animals↗

Isradipine inhibits nicotine intravenous self-administration in drug-naive mice.

The effect of isradipine, a dihydropyridine calcium antagonist, on intravenous self-administration of nicotine in naive mice has been investigated. When nicotine injections were made contingent upon nose-poke response by naive mice, they increased their rate of nose poking with respect to animals receiving contingent saline injections or yoked control animals receiving noncontingent nicotine injections. Pretreatment of mice with mecamylamine (2.4 mg/kg) inhibited self-administration of nicotine contingent upon a nose-poke response. The same effect was observed with isradipine (0.5-1.0 mg/kg) in a dose-related manner and stereospecifically. These data suggest that isradipine suppresses the reinforcing properties of nicotine and might be useful for treatment of nicotine abuse.

Animals↗

Sleep deprivation in the rat: an animal model of mania.

The model of sleep deprivation in rats by the platform method has been extensively studied in our laboratory as a possible animal model of mania. At the end of the period of sleep deprivation, the rat does not fall asleep as soon as it is returned to its home cage, but shows a period of wakefulness of about 30 min, during which the animal presents a cohort of symptoms that appear to mimic those present in idiopathic mania. In particular, during this period the animal displays insomnia, a high degree of hyperactivity, irritability, aggressiveness, hypersexuality and stereotypy. Haloperidol (0.2 mg/kg) was effective in reducing latency to sleep, while L-sulpiride was much weaker (< 50 mg/kg). The dopamine D1 receptor antagonist SCH 23390 exhibited an extremely high potency and efficacy in reducing sleep latency, a significant effect being observed with 3 micrograms/kg. The administration of the specific D1 receptor agonist SKF 38393 markedly prolonged the period of insomnia with the correlated behavioral syndrome. When lithium was added to the diet and consumed during the sleep deprivation period in adequate amounts to produce serum lithium levels of 0.7-1.0 mEq/l, sleep latency and locomotor activity were significantly reduced. The administration of naloxone (1-10 mg/kg) reduced the latency to sleep in a dose-related manner. By contrast, morphine (1 and 5 mg/kg, i.p.), beta-endorphin and [D-Ala2,D-Leu5]enkephalin (i.c.v., 2 and 1 micrograms, respectively) markedly prolonged the insomnia. The model not only represents a confirmation in the rat that sleep loss often precedes and may trigger a manic episode in man, but suggests that an opioid-dopamine interaction may play a pathogenetic role in mania.

Animals↗

Effects of the calcium antagonist isradipine on cocaine intravenous self-administration in rats.

The effect of isradipine, a dihydropyridine calcium antagonist, on cocaine intravenous self-administration in rats was investigated. Administration of (+/-)isradipine (1.25-5 mg/kg SC) 2 h before the cocaine self-administration session induced a significant and dose-dependent increase in the number of cocaine injections with respect to basal values. This effect was stereospecific, with the (+) form of isradipine being active, while the (-) stereoisomer was ineffective. These results suggest that isradipine antagonizes the rewarding properties of cocaine, possibly by inhibiting those dopaminergic systems related to reward mechanisms. These results further indicate a possible use of isradipine, or structurally similar compounds, in the treatment of cocaine related disorders.

Animals↗

Dopamine and opioids interactions in sleep deprivation.

1. Sleep deprivation induced by the platform technique is considered to be a heavy stressful situation in rats. At the end of the sleep deprivation period (72 hrs) the rat displayed particular behavior characterized by wakefulness, a high degree of motor and exploratory activity, increased alertness and reactivity to environmental stimuli. 2. Our results indicate that this behavior is potently antagonized by the administration of D1 antagonist SCH 23390 and by the opioid antagonist naloxone. 3. We also show that concomitantly to this behavior, an increased number of D1 receptors associated with an increased dopamine-stimulated adenylate cyclase activity is present in the limbic system but not in the striatum of these animals. On the contrary, a decreased Bmax of mu and delta opioid receptors was found in the same brain areas. 4. These data suggest an active role of limbic dopamine and opioid system in the generation of arousal and insomnia related to sleep deprivation-induced stress.

Adenylyl Cyclases↗

Synthesis and opioid receptor affinity of bivalent ligands derived from 3,8-diazabicyclo(3.2.1)octanes.

A new series of bivalent ligands (2a-d), derived from the previously reported analgesic 3-cinnamyl-8-propionyl-3,8-diazabicyclo(3.2.1)octane (1a), has been synthesized and tested in vitro for their affinity towards opioid receptors and in vivo for their analgesic potency. None of the new compounds showed either appreciable affinity for opioid receptors or analgesic activity comparable to that of the model 1a.

Analgesics↗

Calcium antagonists isradipine and nimodipine suppress cocaine and morphine intravenous self-administration in drug-naive mice.

The effect of isradipine and nimodipine, two dihydropyridine calcium antagonists, on intravenous self-administration of cocaine and morphine in naive mice has been investigated. When morphine or cocaine injections were made contingent upon nose-poke response by naive mice, they increased their rate of nose-poking with respect to animals receiving contingent saline injections or yoked control animals, receiving noncontingent cocaine or morphine injections. Pretreatment of mice with isradipine (1.0-3.0 mg/kg, SC) or nimodipine (5-20 mg/kg, SC) inhibited in a dose-related manner self-administration both of cocaine and morphine contingent upon a nose-poke response. The ED50 of isradipine against cocaine and morphine self-administration was 1.7 and 2.1 mg/kg, respectively. The relative values for nimodipine were 14.5 and 11.4 mg/kg, respectively. These data suggest that nimodipine and, especially, isradipine suppress the reinforcing properties of morphine and cocaine and may be an effective pharmacotherapy for treatment of cocaine and heroin abuse.

Animals↗

Dopamine D1 and opioid receptor binding changes in the limbic system of sleep deprived rats.

Sleep deprivation induced by the platform technique is considered to be a heavy stressful situation in rats. At the end of the sleep deprivation period (72 h) the rat displayed particular behavior characterized by wakefulness, a high degree of motor and exploratory activity, increased alertness and reactivity to environmental stimuli. Our previous results indicated that this behavior was potently antagonized by the administration of the D1 selective antagonist SCH 23390 and by the opioid antagonist naloxone. In this paper we show that concomitantly to this behavior, an increased number of D1 receptors associated with an increased dopamine-stimulated adenylate cyclase activity is present in the limbic system but not in the striatum of these animals. On the contrary, a decreased Bmax of mu and delta opioid receptors was found in the same brain area. These data suggest an active role of limbic dopamine and opioid systems in the generation of arousal and insomnia related to sleep deprivation-induced stress.

Animals↗

Sleep deprivation decreases mu and delta opioid receptor binding in the rat limbic system.

Sleep deprivation induced by the platform technique is considered to be a heavy stressful situation in rats. At the end of the sleep deprivation period (72 h) the rat displayed particular behavior characterized by wakefulness, a high degree of motor and exploratory activity, increased alertness and reactivity to environmental stimuli. Our previous results indicated that this behavior was antagonized by the administration of the opioid receptor antagonist naloxone and increased by opioid agonists. In this paper we show that concomitantly with this behavior, a decreased Bmax of mu and delta opioid receptors is present in the limbic system of these animals. These data suggest an active role of limbic mu and delta receptors in the generation of arousal and insomnia related to sleep deprivation induced stress.

Animals↗

The calcium antagonist PN 200-110 inhibits the reinforcing properties of cocaine.

The effect of a dihydropyridine (DHP) calcium antagonist, PN 200-110, on cocaine reinforcing properties was investigated using conditioned place preference paradigm. PN 200-110 in nonsedative doses (0.62-1.25-2.5 mg/kg SC) was able to inhibit cocaine-(10 mg/kg IP) induced place preference with ED50 1.57 (0.88-2.58). The results suggest a possible use of DHPs in the treatment of cocaine-related disorders.

Animals↗