PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “DOM 2,5-Dimethoxy-4-Methylamphetamine”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 37 records · Page 2Linked to original sources

Stereoselective effects of 1-(2,5-dimethoxy-4-methylphenyl)-2-aminopropane (DOM) on schedule-controlled behavior.

The effects of R(-)-, S(+) and R, S-1-2-5-dimethoxy-4-methylphenyl)-2-Aminopropane (DOM) were studied using rats responding under a fixed interval two-min schedule of food presentation. All three drugs decreased average rates of responding in a dose-related manner, with R -DOM being five to six times more potent than S-DOM increased the low response rates occurring at the beginning of the fixed interval and decreased the higher response rates occurring at the end of the interval (rate-dependent effects). These results are discussed in terms of the stereoselective metabolism of DOM and of the structural similarities between R-DOM and the behaviorally active isomer of LSD.

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

Resolution and absolute configuration of trans-2-(2,5-dimethoxy-4-methylphenyl)cyclopropylamine, a potent hallucinogen analogue.

An hallucinogen analogue, trans-2-(2,5-dimethoxy-4-methylphenyl)cyclopropylamine (DMCPA), was resolved into ints two enantiomers by fractional crystallization of salts with d- or l-O,O-dibenzoyltartaric acid. A comparison of the ORD and CD curves of the N-5-bromosalicylidene derivatives of trans-2-phenylcyclopropylamine of known absolute configuration and of the title compound established the stereochemistry of the latter to be (1R,2S)-(-) and (1s,2r)-(+). We have earlier shown that the (-) isomer shows selective behavioral effects in cats and mice. In present study it was found that the (-) isomer selectively elicits rabbit hyperthermia when compared with the (+) isomer. In view of the stereoselective ability of the (-) isomer to elicit hallucinogen-like behavioral profiles in these animal models, the proof of absolute configuration lends further support to a new model which interrelates the active binding, conformation of phenethylamine hallucinogens to that of serotonin and tryptamines.

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

Chemical and biological studies of 1-(2,5-dihydroxy-4-methylphenyl)-2-aminopropane, an analogue of 6-hydroxydopamine.

Autoxidation of the bis(O-demethyl)-p-hydroquinone metabolite of the psychotomimetic amine 1-(2,5-dimethoxy-4-methylphenyl)-2-aminopropane (DOM) at pH 7.4 leads exclusively to a bicyclic imino quinone. This imino quinone is a good alkylating agent, forming covalent adducts via 1,4 addition to thiols. The autoxidation appears to be dependent on trace metal catalysis and is dramatically inhibited by components of the 10000g supernatant fraction of rabbit liver homogenates. Incubation of tritium-labeled hydroquinone with bovine serum albumin under oxidizing conditions leads to significant amounts of nonextractable radioactivity which presumably is dependent on imino quinone alkylation of nucleophilic functionalities present on macromolecules. Incubation of tritium-labeled DOM with rabbit microsomes in the presence of NADPH leads to irreversible binding of the label to macromolecular components of the microsomes. Since this binding is NADPH dependent, it is likely that metabolic conversion of DOM to the hydroquinone is involved. The imino quinone oxidation product is highly lypophilic and is capable of crossing the blood-brain barrier. Intravenous administration of tritium-labeled imino quinone to rats resulted in significant nonextractable radioactivity in brain tissue. These properties of the hydroquinone metabolite parallel those reported for the structurally related sympatholytic compound 6-hydroxydopamine and have led to the hypothesis that the psychotomimetic properties of DOM may be mediated through 6-hydroxydopamine-type interactions of the hydroquinone with important macromolecules in the brain.

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

In vitro stereoselective metabolism of the psychotomimetic amine, 1-(2,5-dimethoxy-4-methylphenyl)-2-aminopropane. An apparent enantiomeric interaction.

The stereoselective metabolism [R/S (metabolized) less than 1] of the psychotomimetic amine (R,S)-1-(2,5-dimethoxy-4-methylphenyl)-2-aminopropane in 10 000g rabbit liver homogenate supernatant and 100 000g microsomal fractions has been demonstrated with the aid of the chiral reagent (S)-N-pentafluorobenzoylprolyl-1-imidazolide and GLC analyses. In contrast to the enantiomeric discrimination observed with racemic amine, the individual isomers were metabolized at approximately the same rate. This apparent enantiomeric interaction illustrates the fact that racemates should be viewed as unique chemical species with pharmacodynamic and toxicologic profiles potentially different from the individual antipodes.

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

In vitro O-demethylation of the psychotomimetic amine, 1-(2,5-dimethoxy-4-methylphenyl)-2-aminopropane.

The possible relationship between metabolism and psychotomimetic activity among the methoxylated 1-phenyl-2-aminopropanes led to our investigation of the in vitro O-demethylation of 1-(2,5-dimethoxy-4-methylphenyl)-2-aminopropane (1, DOM, STP). Employing a sensitive and highly selective stable isotope dilution assay, we observed that rabbit liver homogenates biotransform the amine 1 to its 2-O-demethyl, 5-O-demethyl, and bis (O-demethyl) metabolite metabolites. Both monophenolic metabolites are enriched in their S enantiomers. The bis(O-demethyl) metabolite has structural, chemical, and electrochemical similarites to the sympatholytic agent "6-hydroxydopamine". The possible significance of metabolic O-demethylation in terms of the psychotomimetic properties of amine 1 is discussed.

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

Monomethylthio analogues of 1-(2,4,5-trimethoxyphenyl)-2-aminopropane.

Regiospecific syntheses of the three monomethylthio analogues of 1-(2,4,5-trimethoxyphenyl)-2-aminopropane are described. The three isomeric amines were evaluated for potential psychotomimetic potency using the rabbit hyperthermia assay. Enantiomeric compositions and time-concentration curves in rat brains were determined following intraperitoneal administration of each compound. The biological data are contrasted with the corresponding results obtained with the potent human psychotogen 1-(2,5-dimethoxy-4-methylphenyl)-2-aminopropane (DOM).

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

A crystallographic and theoretical study of the conformation of DOET and its significance for the hallucinogenic amphetamines.

The crystal and molecular structure of 2, 5-dimethoxy-4-ethyl-alpha-methyl-phenylethylamine (DOET) has been determined by X-ray crystallography and the conformation of the side chain has been examined theoretically by the use of a potential energy calculation. There is no indication in the solid state of any intra or inter-molecular hydrogen bonding. The isopropylamine side chain is staggered to the plane of the benzene ring. The alpha-methyl group is fully extended (antiplanar) whereas the amino group is orientated back towards the ring (synclinal). The potential energy calculations show the existence of 6 minima, one of which corresponds to the crystal position. The calculations also show that the energy differences between the various minima of the side chain are very small. The relationship of these data to the conformations of the hallucinogens, mescaline and 2, 4, 5,-trimethoxyamphetamine is discussed.

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

Some pharmacological actions of 2,5-dimethoxy-4-ethylamphetamine (DOET) in rats and mice.

DOET, like DOM, exhibited pressor action in rats. This increase of blood pressure was blocked by pretreatment with cinanserin. DOET at high doses decreased the spontaneous locomotor activity of mice at the first hour but increased the activity at the second hour; a low dose was less effective. DOET also increased the rectal temperature of rats and this hyperthermic action was suppressed by pretreating the animals with cinanserin or methysergide. These actions of DOET were compared with those of DOM.

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

Discriminative response control by psychomotor stimulants.

Psychomotor stimulants are capable of controlling discriminative responding in rats. Evidence suggests that response control is central, of a fairly specific nature, and dependent on intact dopaminergic functions.

DOM 2,5-Dimethoxy-4-Methylamphetamine↗