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Biomedical subjects

M D Aceto

Publications and source records attributed to M D Aceto.

At least 19 recordsLinked to original sources

Cannabinoid precipitated withdrawal by the selective cannabinoid receptor antagonist, SR 141716A.

Precipitated withdrawal in rats chronically exposed to delta 9-tetrahydrocannabinol, the major psychoactive principle of the marijuana plant, was unequivocally demonstrated for the first time using a selective antagonist, SR 141716A (N-(piperidin-1-yl)-5-(4-chlorophenyl)-1(2,4- dichloro-phenyl)-4-methyl-1H-pyrazole carboxamide.HCl). This demonstration should provide a powerful stimulus for the systematic study of dependency on the psychoactive cannabinoids.

Animals

Comparative pharmacology of nicotine and ABT-418, a new nicotinic agonist.

ABT-418, a novel cholinergic ligand, was reported to possess potent cognitive-enhancing and anxiolytic properties in animal models with reduced side effects (Decker et al. 1994; Garvey et al. 1994) suggesting selectivity of effects. In this study, the binding properties of ABT-418 to [3H]-nicotine sites were evaluated and its pharmacology investigated in different tests in laboratory animals. ABT-418 binds with high affinity to 3H-nicotine binding sites in the brain with, however, a Ki (6 nM) less than that of nicotine (four-fold). In addition, it acts as a full nicotinic agonist in producing hypomotility, hypothermia and antinociception in mice and engendering nicotine-like responding in rat drug discrimination. The potency of ABT-418 is three to four times less than that of nicotine in all of the animal models, except for hypothermia. In addition, its behavioral effects are completely blocked by mecamylamine, a non-competitive nicotinic antagonist. Although activation of nicotinic receptors by ABT-418 produced several behavioral and pharmacological effects, our results do not suggest high selectivity of different effects as reported by Decker et al. (1994) and Garvey et al. (1994). However, it should be noted that we did not perform some of these tests that produced effects at low doses (Decker et al. 1994) and additional pharmacological studies are needed to establish its selectivity at multiple nicotinic receptors.

Animals

Antipodal alpha-N-(methyl through decyl)-N-normetazocines (5,9 alpha-dimethyl-2'-hydroxy-6,7-benzomorphans): in vitro and in vivo properties.

The enantiomeric (-)- and (+)-N-(methyl through decyl) normetazocines (5,9 alpha-dimethyl-2'-hydroxy-6,7-benzomorphans) were synthesized and their in vitro and in vivo activities determined. Increasingly bulky enantiomeric N-alkyl homologs were prepared until their interaction with the sigma 1 receptor decreased and their insolubility became a hindrance to their evaluation in vivo and/or in vitro. The (-)-methyl, -pentyl, -hexyl, and -heptyl homologs were essentially as potent as, or more potent than, morphine in the tail-flick, phenylquinone, and hot-plate assays for antinociceptive activity; the (-)-propyl homolog had narcotic antagonist activity between that of nalorphine and naloxone in the tail-flick vs morphine assay, and it also displayed antagonist properties in the single-dose suppression assay in the rhesus monkey. The antinociceptively potent (-)-heptyl homolog did not substitute for morphine in monkeys but did show morphine-like properties in a primary physical-dependence study in continuously infused rats. All five potent compounds showed high affinity for the mu opioid receptor from both rat and monkey preparations and the kappa opioid receptor (< 0.05 microM), and all except the (-)-methyl homolog interacted reasonably well at the delta receptor (K(i) < 0.1 microM). The (-)-propyl compound was equipotent (K(i) 1.5-2.0 nM) at mu and kappa receptors. The pattern of interaction of the (-)-enantiomeric homologs with mu receptors from rat and monkey preparations was similar, but not identical. The enantioselectivity of the homologs for mu receptors was greater in the rat than in the monkey preparation for all but the N-H and butyl compounds, and the enantioselectivity of the lower homologs (methyl through butyl) for the mu (monkey) receptor was greater than for the kappa or delta receptors. However, bulkier homologs (hexyl through decyl) displayed higher enantioselectivity at kappa or delta receptors than at the mu (monkey) receptor. The (+)-butyl through (+)-octyl homologs were essentially equipotent with, or more potent than, (+)-pentazocine at the sigma receptor. Only the (+)-H and (+)-methyl homologs had high affinity (< 0.05 microM) at PCP binding sites.

Amino Acid Sequence

Nicotine's opioid and anti-opioid interactions: proposed role in smoking behavior.

Nicotine produced antinociception in mice which was antagonized noncompetitively by naloxone. In addition, at significantly lower doses, nicotine noncompetitively antagonized morphine-induced antinociception. A speculative suggestion regarding the opiatergic and anti-opiatergic actions of nicotine is that it significantly promotes and maintains smoking behavior.

Analgesia

Suppression of opiate withdrawal and cocaine hyperarousal syndromes by buspirone. Possible pharmacotherapeutic applications.

Buspirone (CAS 36505-84-7) was evaluated in three animal models which were designed to study stages of drug abuse most likely associated with compulsive abuse. Buspirone attenuated abrupt withdrawal in rhesus monkeys maximally-dependent on morphine. In addition, it completely blocked the emergence of cocaine-induced stereotyped behavior in rats and attenuated the hyperarousal or rausch syndrome in morphine-dependent and non-dependent rhesus monkeys. Buspirone was active at doses which caused little, if any, impairment in the animals. The results suggest that buspirone may possibly find application in the pharmacotherapy of opioid and cocaine abuse.

Animals

Common stereospecificity of opioid and dopamine systems for N-butyrophenone prodine-like compounds.

The two optical isomers of 1-[3-(p-fluorobenzoyl) propyl]-3-methyl-4-phenyl-4-propionoxypiperidine (FPP) were obtained by resolution of (+/-)-r-3-methyl-4-phenyl-c-4-piperidinol followed by N-alkylation and O-propionylation. These, as well as the racemate, were evaluated for their antinociceptive, opioid, and neuroleptic properties using in vivo and in vitro test systems. The results are remarkable in two respects, namely, the dextrorotatory isomer is consistently the most potent on all tests, and it acts on both opioid (mu) and neuroleptic (D2) receptors.

Alphaprodine

Assessment of the abuse potential of acetorphan, an enkephalinase inhibitor.

The discriminative stimulus properties, reinforcing effects and physical dependence potential of acetorphan, a parenterally-active enkephalinase (E.C. 3.4.21.11) inhibitor, were assessed in the present studies. Rats trained to discriminate 2 mg/kg morphine from saline did not generalize to acetorphan at any dose tested (5-50 mg/kg). Acetorphan also had minimal reinforcing effects in rhesus monkeys. When acetorphan was substituted for cocaine, one dose (300 micrograms/kg per inj.) maintained responding somewhat above the range of vehicle values in only two of the four monkeys tested. In physical dependence studies, acetorphan also failed to produce opioid-like effects. In morphine-dependent monkeys and rats, acetorphan failed to suppress withdrawal. Additionally, there were no overt withdrawal signs observed following the termination of chronic acetorphan infusion in the rat. Together, these results indicate that acetorphan appears to have minimal abuse potential.

Animals

Very long-acting narcotic antagonists: the 14 beta-p-substituted cinnamoylaminomorphinones and their partial mu agonist codeinone relatives.

The biological activity of 14 beta-(p-halo and p-methylcinnamoylamino)-7,8-dihydro-N-cyclopropylmethylnorcodei nones and their corresponding morphinones was investigated. In vitro, the codeinones displayed predominantly mu agonist activity in the 3H-etorphine binding assay and mouse vas deferens preparation. In vivo, in the mouse, the compounds showed weak to inactive antinociception in the tail-flick and hot-plate tets; however, they were potent agonists in the phenylquinone test and moderately weak antagonists in the tail-flick vs morphine test. They also substituted for morphine in withdrawn morphine-dependent rhesus monkeys. When given to non-withdrawn morphine-dependent monkeys, the codeinones precipitated a delayed but long-lasting withdrawal syndrome. They all generalized to codeine in the drug-discrimination test in rhesus monkeys and, in the dose range tested, two compounds were self-administered. This activity is consistent with that of a partial mu agonist. On the other hand, all the morphinones had very long-acting and highly potent mu antagonist properties. The data can be reconciled by assuming that the codeinones are partially metabolized to their respective morphinones. These compounds may be especially useful in the treatment of opioid dependence.

Analgesics

2,5-Dimethyl-2'-hydroxy-9 alpha- and 9 beta-(3-methylbutyl)-6,7-benzomorphans and N-substituted compounds in the 9 alpha-(3-methylbutyl) series: chemistry, pharmacology, and biochemistry.

2,5-Dimethyl-2'-hydroxy-9 alpha-(3-methylbutyl)-6,7-benzomorphan, the 9 beta-analogue, and 9 alpha-N-substituted (N-ethyl, propyl, butyl, pentyl, hexyl, phenylethyl, allyl, and cyclopropylmethyl) compounds were synthesized and evaluated biochemically and pharmacologically. The 9 beta N-methyl compound was found to be as potent as morphine in the mouse hot plate assay and had one-seventh the affinity of morphine for the opioid receptor. The N-alkyl and N-phenethyl 9 alpha-substituted compounds were either inactive or relatively ineffective as antinociceptive agents. None of the examined compounds substituted for morphine in single-dose suppression studies in the rhesus monkey. The N-cyclopropylmethyl compound in the 9 alpha series had half the narcotic antagonist potency of nalorphine and one-eighth of its affinity for the opioid receptor. The 9 alpha-(3-methylbutyl) moiety, unlike bulky substituents in the 9 beta position of 6,7-benzomorphans, generally lowers affinity for the mu opioid receptor and diminishes their in vivo activity as agonists or antagonists.

Analgesics

Hexahydro-1H-1-pyrindines from acid rearrangement of 9-alkylidene-5-(m-methoxyphenyl)-2-methylmorphans. A new structural type of narcotic antagonists.

9-Methylene- and 9-ethylidene-5-(m-methoxyphenyl)-2-methylmorphans (1, 2) and refluxing 48% HBr have given rearrangement products 3 and 4, respectively. The structure of 4 [4a-ethyl-2,4a,5,6,7,7a-hexahydro-4-(3-hydroxyphenyl)-1-methyl-1H-1- pyrindine] was determined by X-ray crystallography and that of 3 [1,4a-dimethyl-2,4a,5,6,7,7a-hexahydro-4-(3-hydroxyphenyl)-1-methyl-1H- pyrindine] follows from analogy and NMR data. Compounds 3 and 4 are opioid antagonists of about the potency of nalorphine in the tail-flick vs. morphine assay and precipitate a complete abstinence syndrome in morphine-dependent monkeys. Both are nearly devoid of antinociceptive activity and they have about 0.025 times the affinity of nalorphine for the mu opioid receptor.

Alkaloids

Rapid and brief tolerance to (+)- and (-)-nicotine in unanesthetized rats.

When given intravenously to unanesthetized rats as a bolus dose, (-)-nicotine produced a dose-related rise in blood pressure and fall in heart rate in the dose range of 5-40 micrograms/kg. Tolerance did not develop when doses were given at 30 min intervals. At the highest dose, the effects on heart rate persisted. In addition, severe arrhythmias and apnea were observed. (+)-Nicotine at 100 micrograms/kg produced effects similar to 10 micrograms/kg of (-)-nicotine. When given at 1 min intervals, tolerance quickly developed after only 6 injections at 5 micrograms/kg and after 4 injections at 10 micrograms/kg. Tolerance to (+)-nicotine also developed rapidly and was no longer evident at 5 min. The results suggest the tolerance is related to frequency of administration and dose. The implication of these results are discussed with regard to cardiovascular disease and dependence. In addition, we postulate that the relatively low degree of biological stereoselectivity of the optical isomers of nicotine, compared with that of the enantiomers of morphine, is due to the simplicity and flexibility of the nicotine molecule. It can be shown using Dreiding models that the nitrogen atoms in the enantiomers are nearly superimposable.

Animals

Effects of beta-funaltrexamine (beta-FNA) on morphine dependence in rats and monkeys.

The opioid mu receptor antagonist beta-funaltrexamine (beta-FNA) blocked the development of physical dependence in rats when infused simultaneously with morphine for 6 days. In addition, beta-FNA given s.c. 24 h prior to the initiation and on day 3 of a 6 day period of morphine infusion in rats reduced the development of physical dependence in a dose-dependent manner. In morphine-dependent rhesus monkeys, beta-FNA precipitated a prompt and long-lasting withdrawal, which was not reversed within 30 h by subsequent injections of morphine. In contrast, naloxone-induced withdrawal lasted approximately 90 min. These results provide further evidence that beta-FNA is a long-acting antagonist of the opioid mu receptor, and that this receptor has a major role in the development of morphine-induced physical dependence.

Animals