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Mechanism of the positive inotropic responses to bretylium and guanethidine.

Isolated, atropinized, rat atria exhibited positive inotropic responses to bretylium, guanethidine and tyramine. These responses were prevented by treatment of the animal with reserpine, or by addition of dichloroisoprenaline to the organ bath. The positive inotropic effects of these compounds on atria from reserpinized animals were restored by incubation of the tissue with noradrenaline. On the basis of these findings it is concluded that the cardiac stimulation by bretylium, guanethidine and tyramine involves the release of catechol amines. The usually reported increase in sensitivity of the myocardium from reserpinized animals to noradrenaline was not observed. The influence of bretylium and guanethidine on cardiac uptake and release of noradrenaline was also studied with the rat. Guanethidine decreased the concentration of catechol amines and inhibited the uptake of exogenous noradrenaline, while bretylium had no effect on either. The decrease in concentration of cardiac catechol amines produced by guanethidine was prevented by treatment of the animal with bretylium or with 1-phenyl-2-hydrazinopropane (pheniprazine), a monoamine oxidase inhibitor.

Animals↗

TACHYPHYLAXIS TO SOME SYMPATHOMIMETIC AMINES IN RELATION TO MONOAMINE OXIDASE.

Tachyphylaxis to the effects of indirectly acting sympathomimetic amines has been studied on the blood pressure of the cat, rabbit and rat, on the cat spleen and nictitating membrane and on the rabbit heart. The pressor responses to tyramine and to phenethylamine declined slowly with repeated injection; the extent of tachyphylaxis induced by these amines depended on the dosage and on the frequency of injection. The pressor responses to alpha-methyltyramine and to dexamphetamine (alpha-methylphenethylamine) declined rapidly with successive injections. The tachyphylaxis induced by one indirectly acting sympathomimetic amine is crossed to others, but not to directly acting amines, such as noradrenaline. In animals treated with nialamide, a drug which inhibits monoamine oxidase, the tachyphylaxis induced by tyramine and by phenethylamine was similar to that produced by their alpha-methyl derivatives in normal animals. Similar results were obtained when the responses to indirectly acting sympathomimetic amines were studied on the cat spleen in situ and on the rabbit heart in vitro. Indirectly acting sympathomimetic amines impaired the responses of the cat nictitating membrane to sympathetic nerve stimulation; this effect was most evident with alpha-methylated amines.

Animals↗

SOME OBSERVATIONS ON THE PHARMACOLOGY OF ALPHA-METHYLDOPA.

alpha-Methyldopa in high concentrations impaired the responses of rabbit isolated ileum and guinea-pig isolated vas deferens to stimulation of the sympathetic nerves and to noradrenaline, but these preparations taken from animals previously treated with alpha-methyldopa showed no sign of impairment. Contractions of the cat nictitating membrane were reduced but not abolished by alpha-methyldopa. In cats, dogs and rats, pressor responses to noradrenaline were usually slightly increased by alpha-methyldopa. Pressor responses to tyramine were not affected consistently. alpha-Methyldopa, alpha-methyldopamine and alpha-methylnoradrenaline behaved like dopa, dopamine and noradrenaline respectively in restoring the responses of tissues from reserpine-treated animals to stimulation of the sympathetic nerves to the rabbit ileum, the guinea-pig vas deferens and the cat nictitating membrane and in restoring responses to tyramine of the cat blood pressure and nictitating membrane, and the rat blood pressure. The potency of alpha-methylnoradrenaline relative to noradrenaline ranged from one-half to one-ninth on various preparations. The results are discussed in relation to the antihypertensive action of alpha-methyldopa.

Animals↗

INHIBITION OF SYMPATHOMIMETIC EFFECTS ON THE HEART.

The adrenaline beta-receptor blocking drug, pronethalol, and the sympathomimetic amines, (-)-ephedrine, (-)-amphetamine, dexamphetamine, (-)-Psi-ephedrine and tyramine, inhibited the sympathomimetic effects of butyrylcholine and tyramine on the guinea-pig isolated atrium. Being reversible and noncompetitive, this antagonism was unspecific and not due to blockade of adrenaline receptors, although pronethalol inhibited the effect of noradrenaline competitively.

Amphetamine↗

MODIFICATION OF THE EFFECTS OF GUANETHIDINE ON CARDIAC CATECHOL AMINES BY VARIOUS AGENTS.

A study has been made of the effect of injections of guanethidine in rats, in depleting catechol amines from the whole cardiac ventricles and from various subcellular fractions. Unlike reserpine, guanethidine first affected the concentration of the amines in the soluble fraction of the cell. Neither [2-(2,6-dimethylphenoxy)-propyl]trimethylammonium chloride monohydrate (beta-methyl xylocholine) nor hemicholinium affected the endogenous catechol amines or the uptake of injected noradrenaline, but each significantly reduced the action of guanethidine in depleting catechol amines. Administration of choline chloride after hemicholinium reversed its influence on guanethidine depletion. In cats, cocaine potentiated the pressor response to noradrenaline, but antagonized the response to tyramine and guanethidine, while bretylium and N-o-chlorobenzyl-N'N"-dimethylguanidine sulphate (BW392C60) potentiated the responses to noradrenaline, tyramine and guanethidine.

Amines↗

Effect of low-dose clorgyline on 24-hour urinary monoamine excretion in patients with rapidly cycling bipolar affective disorder.

Effects of clorgyline on urinary excretion of norepinephrine, dopamine, tyramine, and their major metabolites, 5-hydroxyindoleacetic acid and phenylethylamine, were studied in four women who suffered from primary, bipolar affective disorder. All patients had rapid mood cycles and were nonresponsive to lithium carbonate. During placebo administration, a strong correlation was found between the excretion rates of norepinephrine and dopamine and their respective metabolites. Clorgyline, 5 to 10 mg every or every other day, reduced overall-body norepinephrine turnover by 55% and increased tyramine but did not alter 5-hydroxyindoleacetic acid, phenylethylamine, or p-hydroxyphenylacetic acid excretion. These findings demonstrate the clinical actions of low-dose clorgyline and clorgyline's specificity as a monoamine oxidase A (MAO-A) inhibitor in vivo in humans, as well as the effects of specific MAO-A inhibition on monoamine metabolism.

Bipolar Disorder↗

Effect of metastatic cancer on platelet monoamine oxidase activity and serotonin metabolism.

Platelet monoamine oxidase (MAO) activity and urinary excretion of 5-hydroxyindoleacetic acid (5-HIAA), serotonin, tyramine and tryptamine were measured in patients with a variety of metastatic cancers and in healthy control subjects. The patients with cancer had higher platelet MAO activity and lower urinary excretion of 5-HIAA, sertonin and tyramine than the healthy subjects. The urinary tryptamine excretion was not significantly different in the two groups. At the present time it is unclear if the alterations in platelet MAO activity and monoamine excretion are casually related.

Adult↗

Analysis of the venom of the Sydney funnel-web spider, Atrax robustus using gas chromatography mass spectrometry.

Thirteen compounds have been identified using gas chromatography mass spectrometry in the venom of the Sydney funnel-web spider, Atrax robustus. The compounds were identified as their trimethylsilyl or pentafluoropropionate derivatives and were citric acid, lactic acid, phosphoric acid, glycerol, urea, glucose, gamma-aminobutyric acid, glycine, spermidine, spermine, tyramine and octopamine. Female venom contained trace quantities of 5-methyoxytryptamine which was not detected in male venom. Quantitative determination of tyramine and octopamine was achieved using chemical ionization (CH4) gas chromatography mass spectrometry and deuterated internal standards.

Arthropod Venoms↗

Effect of tricyclic antidepressants and alcohol in psychomotor skills related to driving.

Twenty healthy subjects took amitriptyline, doxepin, and placebo for 2 wk each in a double-blind crossover trial, and another 20 subjects similarly took nortriptyline, chlorimipramine, and placebo. The antidepressants were given three times daily in doses generally used for neurotic patients. The presence of antidepressants in tissues was checked with the tyramine pressor test. On the seventh and fourteenth days of each period, psychomotor skills (choice reaction, coordination, and attention) were measured after the administration of drugs in combination with an alcoholic or placebo drink. Dose-response graphs for the tyramine pressor effect were shifted to the right during the antidepressant treatment, indicating a blockade of the membrane pump in peripheral sympathetic terminals. This antityramine effect of antidepressants did not correlate with their psychomotor effects. No drug alone importantly impaired psychomotor skills. Amitriptyline in combination with alcohol increased cumulative choice reaction times, and doxepin in combination with alcohol increased both cumulative choice reaction times and inaccuracy of reactions. Coordination was impaired after both of these combinations on the seventh day. It seems as if doxepin and amitriptyline but not nortiriptyline or chlorimipramine, in combination with 0.5 gm/kg of alcohol, may be especially dangerous in driving.

Adult↗

Age-related changes in rat brain monoamines release: peculiarity of dopamine release.

Our aim has been to investigate the ability of the rat brain to retain its level of neurotransmitter release over life. We have investigated the neurotransmitter release from the rat brain synaptosomes prelabeled with 3H-DA, 3H-NA, or 3H-5HT, and perfused with Krebs-Ringer medium alone (basal release) or containing a high K+, calcium ionophore, tyramine or amphetamine (evoked release). Brain areas have been dissected of animals 45 days and 4, 6, and 11 months old. The results have shown a gradual reduction of the 3H-NA release evoked by a high K+ from 45 days to 6 months, which is stabilized until 11 months of age. The reduction rate has been relatively different from the brain areas investigated (36% for the frontal cortex and 26% for the hippocampus and cerebellar cortex). A similar reduction has been seen with 3H-5HT released from synaptosomes of the frontal cortex, hippocampus, and striatum. Surprisingly, the 3H-DA release that was evoked by high K+ was greater in rats 11 months old than in younger rats; this effect has been seen in synaptosomes from the caudate and the frontal cortex. The calcium ionophore A23187 has shown a releasing picture similar to a high K+. When we analyzed a nonexocitotic, but probably carrier mediated, release (evoked by tyramine or amphetamine), there was reduced release of all of the above neurotransmitters from 45 days to 11 months of age. We presume that there have been adaptive changes in neurotransmitter evoked release due to changes in Ca++ utilization, as inferred from the results from calcium ionophore experiments and carrier performance.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Effects of 3,4-dimethoxyphenethylamine derivatives on monoamine oxidase.

The cactus alkaloid 3,4-dimethoxyphenethylamine and its naturally occurring N-methylated homologs inhibited the deamination of tyramine and tryptamine by rat brain monoamine oxidase. In contrast, the beta-hydroxylated derivatives of this series failed to inhibit the action of monoamine oxidase on both tyramine and tryptamine.

Animals↗

Characterization of 1,2-benzo-8-(2-aminoethyl)-3-phenoxazone.

The compound 1,2-benzo-8-(2-aminoethyl)-3-phenoxazone (1) is synthesized by reacting tyramine with 1-nitroso-2-naphthol in the presence of nitric acid. During the reaction, tyramine and 1-nitroso-2-naphthol undergo condensation, ring closure, and subsequent oxidation steps to form 1. Compound 1 is characterized by one- and two-dimensional NMR spectroscopy and mass spectrometry. The proposed mechanism of reaction is based on the spectroscopic data. This reaction can be applied as a spot test analysis for analogous phenolic compounds.

Magnetic Resonance Spectroscopy↗

Stereochemistry of benzylamine oxidation by copper amine oxidases.

Copper amine oxidases (EC 1.4.3.6) exhibit stereochemical heterogeneity in their reaction specificities. Enzymes isolated from different sources have previously been shown to catalyze the deamination of tyramine and dopamine with abstraction of the pro-R hydrogen at C-1, the pro-S hydrogen, and net nonstereo-specific protein abstraction. In this study we report on the stereochemical course of proton removal from benzylamine for six copper amine oxidases using stereo-specifically deuterated benzylamines prepared by a combined chemical-enzymatic method. The product benzaldehydes from the amine oxidase reactions were reduced in situ with alcohol dehydrogenase and NADH providing benzyl alcohols which were analyzed by 1H NMR spectroscopy. The amine oxidases isolated from pea seedlings and bovine, horse, porcine, rabbit, and sheep plasma all react with abstraction of the pro-S hydrogen of benzylamine, irrespective of the stereochemical course of the oxidation of tyramine or dopamine. We also report that the enzymes isolated from horse and rabbit plasma contain 2,4,5-trihydroxyphenylalanine (topaquinone) as an organic cofactor based on visible absorbance spectroscopy of p-nitrophenylhydrazine-derivatized enzymes.

Amine Oxidase (Copper-Containing)↗

Synthesis of a N'-alkylamine anticoagulant active low-molecular-mass heparin for radioactive and fluorescent labeling.

Heparin plays an important role in anticoagulation and several other biological processes. Cleavage of heparin by nitrous acid results in a reactive 2,5-anhydromannose (Am) which can be used to selectively insert primary and secondary amines by reductive amination. Low-molecular-mass heparin (LMMH) was bound to 4-(2-aminoethylphenol) as shown by nuclear magnetic resonance spectroscopy (NMR), high-performance size-exclusion chromatography (HPSEC), polyacrylamide gel electrophoresis (PAGE), and ultraviolet/visible (uv/vis) spectroscopy. 1H NMR spectra revealed an average sequence of (IdoA2SO3-GlcNSO36SO3)9-IdoA2SO3-Am-tyramine and a 50% binding rate of tyramine to LMMH. LMMH-Tyr had an anticoagulant activity of 108 antifactor Xa activity (aXa) U/mg and 42 antifactor IIa activity (aIIa) U/mg. The compound was neutralized by protamine. The N-alkylamine derivative was adopted to label LMMH with iodine-125 by oxidation with chloramine T. Fluorescein-5-isothiocyanate (Fitc) was used to label LMMH-Tyr with fluorescence. NMR, HPSEC, PAGE, and uv/vis spectroscopy demonstrated the binding of Fitc to LMMH-Tyr. 1H NMR spectra indicated that about 80% of the LMMH-Tyr was labeled at the secondary amino group. The fluorescent compound exhibited 70 aXa and 5 aIIa U/mg and was neutralized by protamine. The selectively bound labeled heparin derivatives are "endpoint attached" and have intact anticoagulant activity.

Anticoagulants↗

Determination of transport parameters of permeant substrates of the vesicular amine transporter.

Biological transport of moderately permeant compounds is obscured by diffusion of the compounds back across the membrane, so characterization of the transport of such compounds requires correction for permeability. A relatively simple method for determining kinetic parameters for moderately permeant compounds is presented here. After evaluating a compound's apparent permeability coefficient, its steady-state uptake is measured as a function of concentration. By comparing the concentration dependence of uptake measured both in the presence and in the absence of a complete inhibitor of the transporter, K(m) and Vmax for transport of that substrate may be calculated. When used to analyze transport of tyramine and hydroxyephedrine by the vesicular amine transporter, this method yields results consistent with other methods and with values for analogous impermeant substrates. In bovine adrenal chromaffin vesicles, tyramine and (-)erythro-hydroxyephedrine have apparent permeability coefficients of 4.7 +/- 1.0 x 10(-9) and 1.1 +/- 0.4 x 10(-8) cm/s, respectively. Values for K(m) are 15 +/- 9 and 34 +/- 14 microM and for Vmax are 1.3 +/- 0.2 and 1.4 +/- 0.9 nmol/min.mg of membrane protein, respectively.

Adrenal Medulla↗

Monoamine oxidase B induces ERK-dependent cell mitogenesis by hydrogen peroxide generation.

The mitochondrial enzyme monoamine oxidase (MAO) A and B catalyze the oxidative deamination of various endogenous and exogenous biogenic amines. In the present study, we used human embryonic kidney 293 (HEK 293) cells stably transfected with human MAO-B cDNA to investigate the potential role of hydrogen peroxide (H(2)O(2)) produced by MAO-B isoform as an intracellular messenger involved in regulation of cell signaling and function. The MAO substrate tyramine induced tyrosine phosphorylation of Shc, ERK activation, and an increase in DNA synthesis in HEK 293 expressing MAO-B, but not in wild type HEK 293 cells, which do not express MAO. Tyramine effects were fully prevented by cell pretreatment with the MAO inhibitor pargyline or the antioxidant N-acetylcysteine. These results show that MAO-B induces MAPK/ERK activation and cell mitogenesis through H(2)O(2) production.

Adaptor Proteins, Signal Transducing↗

Characterization and partial purification of human monoamine oxidase-B expressed in Escherichia coli.

Monoamine oxidases (MAO-A and MAO-B) are enzymes that play a key role in the degradation of endogenous and dietary monoamines. A full-length cDNA of the B-type of MAO, isolated from a human liver cDNA library, was cloned into a prokaryotic expression vector (pET11c). Escherichia coli which was transfected with the recombinant plasmid expressed an insoluble protein product with the expected molecular weight (65 kDa). However, in the inclusion body fraction, where most of the recombinant protein was present, no MAO activity was observed. In contrast, the membrane fraction of the bacterial lysates expressed catalytic activity as estimated by oxidative deamination of beta-phenylethylamine and tyramine. The active enzyme protein was solubilized with Triton X-100 and partly purified (80-fold) on a DEAE-Sepharose column. This enzyme activity showed properties very similar to those of human brain and platelet MAO-B. Moreover, a single band of the expected molecular size was observed on an immunoblot. The peak fraction from the DEAE-Sepharose separation was further purified on a tyramine-Sepharose column, yielding a highly purified enzyme (190-fold), visible as a band on a sodium dodecyl sulfate-containing polyacrylamide gel.

Blood Platelets↗

Disulfiram and diethyldithiocarbamate intoxication affects the storage and release of striatal dopamine.

Acute intoxication and chronic therapy with the alcohol consumption deterrent dithiocarbamate disulfiram have been associated with several neurological complications perhaps involving the impairment of neurotransmitter pathways. In this study we have tested the hypothesis that dopaminergic malfunction is a critical component in disulfiram-evoked neurotoxicity. Disulfiram antagonized the in vitro striatal binding of [3H]tyramine, a putative marker of the vesicular transporter for dopamine, and the uptake of [3H]dopamine into striatal synaptic vesicles, with inhibitory constants (Ki) in the range of reported blood dithiocarbamate levels in treated alcoholics. Furthermore, disulfiram provoked a loss of radioactivity from [3H]dopamine-preloaded striatal vesicles, when added directly to the incubation mixture. Several metal-containing fungicide analogs were also potent displacers of specifically bound [3H]tyramine. Diethyldithiocarbamate (DDC), the major metabolite of disulfiram, had none of these effects. The intraperitoneal injection of a high dose of disulfiram and DDC into rats, mimicking acute intoxication, induced in vivo overflow of striatal dopamine from both a reserpine-sensitive (vesicular) and an alpha-methyl-p-tyrosine-sensitive (cytoplasmic) pool. The vesicular component of in vivo dopamine release resulted mainly from a direct activity of disulfiram, on the organelles (interaction with the carrier for dopamine plus membrane permeabilization) and indirectly through the mediation of serotonergic 5-HT3 receptors. DDC acted poorly at the vesicle membrane, and the in vivo releasing effect of dopamine was only partially prevented by the inhibition of 5-HT3 receptors, thus suggesting the role of additional mechanisms. It is concluded that disulfiram intoxication may acutely disrupt dopamine balance, an effect probably underlying some of the central neurotoxic, extrapyramidal symptoms associated with dithiocarbamate overdose.

3,4-Dihydroxyphenylacetic Acid↗