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Studies of tyramine transfer and metabolism using an in vitro intestinal preparation.

The duodenal transfer and metabolism of [3H]tyramine from sacs and perfused segments of rat intestine were determined. In sacs, a linear relationship between the steady-state transfer rate of total tritium and the initial mucosal tyramine concentration was observed, suggesting that the clearance is the same at different concentrations. In duodenal perfusions, there was no significant difference in the amount of total tritium removed between control and everted tissues, whether the flow was 0.2 or 2.0 mL/min. The percentage of [3H]tyramine extracted from the gut lumen depended on the flow rate. About 30-40% of the extracted drug was metabolized; this value decreased to 20% when the rats were pretreated with pargyline. The data support the idea that the transfer mechanism for tyramine is simple diffusion.

Animals↗

Pharmacodynamics of MDL 72974A: absence of effect on the pressor response to oral tyramine.

MDL 72974A, a new irreversible selective inhibitor of monoamine oxidase (MAO)-B which is not metabolized to amphetamine-like compounds, is currently being developed for the treatment of Parkinson's disease. In this double blind, placebo controlled randomized study 24 healthy volunteers (n = 6/dose) received single oral doses of placebo, 1, 12 or 24 mg of MDL 72974A qd over two weeks. Sensitivity to orally administered tyramine was determined under fasting conditions before and after drug administration and the doses of tyramine yielding a 30 mmHg increase of SBP (PD30) compared. The 2-fold increase of tyramine sensitivity at end of treatment seen at all MDL 72974A dose levels, however, is within the variability range of the tyramine pressor response. MDL 72974A selectively inhibits MAO-B at doses up to 24 mg orally and has a favourable safety profile.

Administration, Oral↗

Tyramine infusions and selective monoamine oxidase inhibitor treatment. II. Interrelationships among pressor sensitivity changes, platelet MAO inhibition, and plasma MHPG reduction.

The relationship between changes in IV tyramine pressor sensitivity accompanying selective monoamine oxidase (MAO) inhibitor treatment and estimates of MAO-A and MAO-B inhibition in vivo were studied. Reductions in platelet MAO activity provided an index of MAO-B inhibition, while changes in plasma 3-methoxy-4-hydroxyphenethylene glycol (MHPG) were used as an hypothesized reflection of MAO-A inhibition. Chronic treatment with the MAO-A inhibitor clorgyline and the MAO-B inhibitor pargyline showed significant inhibition of the alternate MAO enzyme as well, although this crossover effect was greater for pargyline than clorgyline. The MAO-B inhibitor deprenyl appeared to maintain the greatest degree of MAO inhibition selectivity in vivo. Tyramine pressor sensitivity changes accompanying administration of the MAO inhibitors were highly correlated with decreases in plasma MHPG (r = 0.92), supporting our previous data indicating the rank order of clorgyline greater than pargyline greater than deprenyl for enhancement of tyramine pressor sensitivity and, thus, suggesting that tyramine potentiation is primarily a function of MAO-A rather than MAO-B inhibition. Changes in plasma MHPG are suggested to provide a potentially useful clinical index of in vivo MAO-A inhibition.

Blood Platelets↗

The release of 3H-noradrenaline by p- and m-tyramines and -octopamines, and the effect of deuterium substitution in alpha-position.

The 3H-noradrenaline-releasing effects of p- and m-tyramines and -octopamines, either deuterated or not, were studied in isolated vasa deferentia of the rat (COMT inhibited and calcium-free solution in all experiments). Km for uptake1 was higher for octopamines than for tyramines, but not increased by the introduction of deuterium in alpha-position, except for (probably contaminated) deuterated p-octopamine. Other tissues were preloaded with 3H-noradrenaline. After inhibition of vesicular uptake and MAO equi-releasing concentrations of the eight amines were strictly correlated with Km, they were 6 to 7 times higher for unsubstituted octopamines than for corresponding tyramines. When only MAO (but not vesicular uptake) was inhibited, this difference decreased to about 4-fold, but the releasing potency of the deuterated amines (relative to their parent amines) remained unchanged (except for p-octopamine). When vesicular uptake and MAO were intact, unsubstituted octopamines were only 1.5 to 2.2 times less potent than the corresponding tyramines. Analysis of the efflux of 3H-DOPEG confirmed that this gain in the relative potencies of octopamines is due to their increased ability to mobilize vesicular 3H-noradrenaline; moreover, deuterated amines as well were then better mobilizers than were their parent amines. It is concluded that, provided vesicular uptake is intact, the introduction of a beta-OH-group enhances the ability of indirectly acting sympathomimetic amines to mobilize vesicular noradrenaline; the introduction of deuterium in alpha-position, on the other hand, enhances this mobilizing effect exclusively when MAO is intact.

2-Hydroxyphenethylamine↗

Determination of regional distributions of phenylethylamine and meta- and para-tyramine in rat brain regions and presence in human and dog plasma by an ultra-sensitive negative chemical ion gas chromatography-mass spectrometric (NCI-GC-MS) method.

Using a new ultrasensitive method the trace biogenic amines, phenylethylamine, meta-tyramine and para-tyramine have been quantitated in brain regions obtained from a single rat. Phenylethylamine concentrations in ng/g wet tissue (mean +/- std. error) were as follows: caudate 2.71 +/- 0.73, hypothalamus 0.45 +/- 0.15, cerebellum 0.09 +/- 0.02, olfactory bulb 0.35 +/- 0.11, stem 0.13 +/- 0.03, hippocampus 0.20 +/- 0.11, cortex 0.69 +/- 0.13 and the rest (remainder of the brain) 2.81 +/- 0.41. Mean whole brain was 1.23 +/- 0.19 ng/g, in agreement with previous measurements. meta-Tyramine concentrations (ng/g) were: caudate 2.69 +/- 0.19, hypothalamus 0.32 +/- 0.16, cerebellum 0.07 +/- 0.04, olfactory bulb 0.09 +/- 0.04, stem 0.04 +/- 0.01, hippocampus 0.07 +/- 0.02, cortex 0.18 +/- 0.15 and the rest 0.15 +/- 0.06, with a mean whole brain value of 0.26 +/- 0.05 ng/g and para-tyramine concentrations were: caudate 8.99 +/- 1.60, hypothalamus 0.93 +/- 0.13, cerebellum 0.78 +/- 0.27, olfactory bulb 0.70 +/- 0.13, stem 0.90 +/- 0.36, hippocampus 0.40 +/- 0.06, cortex 1.78 +/- 0.28 and the rest 2.38 +/- 0.12 and mean whole brain was 1.90 +/- 0.25 ng/g. In human plasma the concentrations of the three amines were found to be 31.3 +/- 3.4 pg/ml, 5.3 +/- 1.6 pg/ml and 66.0 +/- 9.9 pg/ml respectively and in dog blood 95.3 +/- 4.6 pg/ml, 24.0 +/- 7.6 pg/ml and 486 +/- 43 pg/ml respectively. When monoamine oxidase inhibitors were added to the blood immediately after collection there were no significant increases in the amine levels indicating that MAO-B is not present in plasma in significant quantities.

Animals↗

Kinetic study on p-tyramine metabolism in humans using stable isotope-labeled tracers.

A sensitive method for the determination of p-tyramine was developed using gas chromatography-chemical ionization mass spectrometry. This method was combined with a stable isotope tracer technique to study p-tyramine metabolism in humans. [2H]5-Phenylalanine was administered orally to men (5 mg/kg) as a tracer and the amounts of [2H]4-p-tyramine excreted into urine were determined at each hour. Excretion of [2H]4-p-tyramine was maximal between 1 and 2 hours following administration, at about 15 ng/kg.h in healthy adult men. Possible application in the study of metabolic disorders in human was demonstrated.

Chromatography, Gas↗

Rapid determination of tyramine in fish feed and slaughter offal by HPLC using coulometric detection.

Fish feed and slaughter offal products may contain decomposition compounds such as biogenic amines. Owing to their harmful effects on animals fed with such products, there is a need for determining the amine content. In the work a simple and fast HPLC method, based on coulometric detection (EC) measuring only tyramine, was developed for routine quality screening. The samples were extracted with 0.4 mol/L perchloric acid and analysed directly by HPLC using a mobile phase of 0.2 mol/L potassium dihydrogen phosphate in water at pH 3. Tyramine was detected using a coulometric detector consisting of two analytical cells, the first one at 0.4 V and the second at 0.7 V. The calibration was linear over the range 4.52 to 452 ng/ml. The minimum detectable quantity was 10 pg/20 microliters. The reproducibility and the recoveries were high. Comparison of the tyramine content measured by EC or derivatization followed by ultraviolet detection showed that both methods gave similar results. HPLC using EC is a fast and sensitive method for analysing tyramine reliably in fish feed and slaughter offal samples without any time-consuming derivatization steps.

Animal Feed↗

Formation of tyramine by Lactobacillus curvatus LTH 972.

The effect of food-related environmental factors on the formation of tyramine by Lactobacillus curvatus LTH 972 was investigated in liquid culture supplemented with tyrosine. The highest concentrations of tyramine (up to 201 mg/l) were formed at 30 degrees C, pH 5.2 and at a water activity (aw) of 0.97. At lower temperatures and at higher pH- and aw values the reaction slowed down but was still clearly detectable. Glucose, nitrate and nitrite had no effect at concentrations applied in sausage fermentations. The strain was able to form tyramine from tyrosine-containing di- and tripeptides in phosphate buffer. Therefore, in proteinaceous substrates an increased formation of tyramine cannot be excluded when ongoing proteolysis creates precursors, as is the case in the presence of proteolytic micro-organisms.

Amino Acid Sequence↗

Non-specific stimulant activity of tyramine on isolated intestinal preparations.

The effect of tyramine on isolated organ preparations from several animal species has been studied. Contraction of the guinea-pig ileum by tyramine is due to a direct effect on histamine receptors whereas the contractile effect on the rat fundus and rabbit jejunum by tyramine is mediated through 5-hydroxytryptamine receptors. These studies indicate the variability and non-specificity of isolated organ responses and that the effects of tyramine are not limited to adrenergic systems.

Animals↗

Tyramine and benzylamine partially but selectively mimic insulin action on adipose differentiation in 3T3-L1 cells.

Biogenic amines like tyramine, methylamine and the non-naturally occuring amine, benzylamine, have been described to promote adipose conversion of murine 3T3 preadipocytes. To further investigate these novel effects of amines, we studied whether they selectively mimic the long-term adipogenic action of insulin. To this aim, we decided to use the 3T3-L1 cell line since this model needs a complex combination of inducers to trigger the differentiation programme: insulin, isobutylmethylxanthine (IBMX, an activator of cAMP-signal transduction pathway) and the synthetic glucocorticoid, dexamethasone. A cell culture protocol was designed, by which each component of the differentiation cocktail was replaced with either benzylamine or tyramine, in order to determine whether these amine oxidase substrates could substitute any of the differentiation inducers in 3T3-L1 cells. The incomplete lipid accumulation found in cells grown under IBMX- or dexamethasone-free conditions was not improved by the daily addition of amines to the culture medium. Insulin was the only component of adipose differentiation cocktail of 3T3-L1 that could be replaced, although partially, by tyramine or benzylamine. When used at 0.5 mM, these amines resulted in a significant increase of triacylglycerol accumulated eight days after confluence, when compared to cells kept without insulin. This partial insulin replacement was totally abolished by SSAO-inhibitors, while MAO-blockade did not reduce lipid accumulation. As previously reported for other insulin-sensitive processes, such as stimulation of glucose transport or lipolysis inhibition in mature adipocytes, the stimulation of adipogenesis by tyramine and benzylamine was an SSAO-dependent mechanism that apparently shared common signaling pathways with insulin.

1-Methyl-3-isobutylxanthine↗

Mechanisms of accumulation of tyramine, metaraminol, and isoproterenol in isolated chromaffin granules and ghosts.

The effects of the transmembrane pH gradient (delta pH) and the transmembrane potential gradient (delta psi) on the uptake of several sympathomimetic amines were investigated, using bovine adrenal chromaffin granules isolated in isotonic sucrose. As previously described [R. Johnson and A. Scarpa, J. Biol. Chem. 254 3750 (1979)], freshly isolated chromaffin granules maintain an intragranular pH of 5.5 as measured by [14C] methylamine distribution and, in the presence of ATP, generate a delta psi of 80 mV, positive inside, as measured by [14C] methylamine distribution. When tyramine, metaraminol, and isoproterenol (1-50 mM) were added to well-buffered suspensions of granules at pH 7.0, a dose-related alkalinization of the granule interior was observed. Study of the time-resolved influx of the same amines labeled radiochemically (5-21 microM) revealed that all the amines were accumulated against an apparent concentration gradient. However, while accumulation of [14C] serotonin and [3H] isoproterenol was totally inhibited by reserpine, [14C] tryramine accumulation was inhibited by only 60% and [14C[ metaraminol uptake was unaffected. The ATP-dependent generation of a delta psi produced a stimulation of amine uptake in the order: serotonin greater than isoproterenol greater than tyramine; metaraminol accumulation was not enhanced by ATP addition. The relationship between the electrochemical proton gradient (delta micro H+) and the electrochemical gradient for each of the sympathomimetic amines (delta micro A) was investigated utilizing chromaffin ghosts devoid of endogenous matrix gradients or components. All amines were accumulated in the presence of delta pH alone. In the presence of delta psi alone, [14C] serotonin, (14C] tyramine, and [3H] isoproterenol were accumulated, but no [3H] metaraminol uptake was demonstrable. The results indicate that serotonin and isoproterenol accumulated in isolated chromaffin granules and ghosts via a reserpine-sensitive mechanism, driven by the magnitude of the electrochemical proton gradient. Conversely, metaraminol permeated the membrane of the chromaffin granule through the apolar lipid phase and distributed according to the delta pH alone. Tyramine uptake proceeded by both mechanisms. The implications of the mechanism of accumulation of these potent physiologic and pharmacologic agents for their in vivo action are discussed.

Adenosine Triphosphate↗

Intestinal metabolism of tyramine by both forms of monoamine oxidase in the rat.

The two forms of monoamine oxidase (MAO) in rat intestine and brain homogenates were found to have different Km and Vmax values towards tyramine. The Km values for the A-form of the enzyme towards this substrate were around 120 microM in both cases, whereas the values for the B-form were about 240 microM. As a consequence, the ratio of activities (MAO-A: MAO-B) towards tyramine are dependent upon the substrate concentration. The MAO-A-selective inhibitors, toloxatone and cimoxatone, were found to be competitive inhibitors of the oxidation of tyramine by the A-form of this enzyme in the rat intestine, with Ki values of 3.4 microM and 3.7 nM respectively. The significance of these results in relation to the "cheese effect", a pressor response to tyramine after monoamine oxidase inhibition, are discussed.

Animals↗

The presence of tyramine and related monoamines in the nerve cord and some other tissues of the lobster, Homarus americanus.

This report shows the existence of endogenous p-tyramine in the nerve cord and some organs of the lobster. Their concentrations are lower than those of dopamine or 5-hydroxytryptamine. The nerve cord levels of m-tyramine, beta-phenylethylamine and tryptamine are much lower than those of the phenolic or catecholic amines. The finding that the administration of an aromatic-L-amino acid decarboxylase inhibitor leads to a decrease of p-tyramine gives further evidence that this amine is synthesized from p-tyrosine, which is also found in high concentrations in the lobster nerve cord. The widespread distribution of p-tyramine in the nervous system and peripheral tissues of the lobster suggests that this amine may have additional roles rather than functioning only as a precursor of p-octopamine.

Animals↗

Tyramine conjugation test distinguishes unipolar from bipolar depressed patients and controls.

Tyramine sulphate conjugation following oral tyramine administration (the tyramine test) has previously been found to distinguish endogenous unipolar from neurotic depression and appears to be a trait marker. In this study, the test was used in 24 unipolar depressed patients compared with similar sized matched groups of bipolar depressed patients and normal controls. Most of the depressed patients in each group showed endogenous features. The study found that whereas tyramine sulphate conjugation was significantly impaired in unipolar patients, values in the bipolars were similar to those of controls. These results provide further evidence for the biological difference between unipolar and bipolar depression.

Administration, Oral↗

Possible role of octopamine and tyramine in the antihypertensive and antidepressant effects of tyrosine.

The administration of a dose of 200 mg/kg of tyrosine (as either the free amino acid or the ethyl ester) increased the 24-hour excretion of p-hydroxyphenethyleneglycol (p-HPG) and p-hydroxyphenylethanol, metabolites of octopamine and tyramine, by 147 and 50%, respectively. One hour after this dose of tyrosine, brain levels of p-HPG and p-hydroxyphenylacetic acid (p-HPA), another metabolite of tyramine, were increased by 82 and 196%, respectively. Pretreatment with Ro4-4602, a peripheral decarboxylase inhibitor, reduced by 50% the tyrosine-induced increases in brain p-HPA levels, suggesting that tyramine was partially formed in the brain parenchyma. Tyrosine caused only slight, but non-significant increases in brain levels of catecholamine metabolites. These results suggest that tyrosine-induced increases in the production of tyramine and octopamine in brain may account for some of the effects of tyrosine, such as its antihypertensive and reported antidepressant properties.

Animals↗

The effect of some decarboxylase inhibitors on striatal tyramines in the mouse.

The administration of carbidopa (5-50 mg/kg), a peripheral L-aromatic aminoacid decarboxylase inhibitor, significantly increased striatal tyramines; maximal effects were observed at 2-4 hr after treatment. Benserazide produced similar effects. The drug, NSD 1034, that inhibits both central and peripheral decarboxylase, produced a dose-dependent reduction in striatal p-tyramine; in contrast, concentrations of m-tyramine were increased by the smaller doses (2-20 mg/kg) and reduced by the larger dose (400 mg/kg). The results support the view that the tyramines are formed within the brain by decarboxylation of their parent aminoacids but by different mechanisms.

Animals↗

Magnetic bead protamine-linked microtiter assay for detection of heparin using iodinated low-molecular-mass heparin-tyramine.

We have developed a competitive heparin binding assay employing protamine-coated magnetic beads for detection and measurement of heparin. The assay utilizes 125-iodine specifically bound to newly synthesized low-molecular-mass (LMM) heparin-tyramine. The tracer was stable over a period of 3 weeks, as demonstrated by gel filtration chromatography. The protamine-coated beads were found to be stable over at least two months. The heparin-tyramine bead assay had in buffer a lower detection limit of 0.04 microgram/ml and in plasma of 0.23 microgram heparin/ml. 50% binding was obtained at 0.7 microgram/ml and 20% binding at 4 micrograms/ml in plasma. The within assay coefficient of variation ranged from 9 to 28% for unfractionated, high molecular mass (HMM) heparin and from 12 to 15% for LMM-heparins in buffer system and in plasma. Various heparin fractions displaced the tracer from the protamine-coated magnetic beads to different extents. The validity of the assay was proven after intravenous administration of unfractionated and LMM-heparin in man. The elimination rate was similar using the heparin-tyramine bead assay compared with the anti-factor Xa coagulation assay. After intravenous dosing of LMM-heparin the maximal concentration was lower using the heparin-tyramine bead assay compared with the anti-factor Xa coagulation assay. The bead assay was found to be reproducible, valid, and rapid for measurement of the concentration of heparin preparations in purified systems and for HMM-heparin in plasma. Measurement of the concentration of LMM-heparin in plasma has a high coefficient of variation using the binding assay.

Binding, Competitive↗

Decreased urinary output of conjugated tyramine is associated with lifetime vulnerability to depressive illness.

In a group of normal pregnant women whose psychiatric histories were unknown, those with the lowest output of urinary tyramine (free plus conjugated) after an oral tyramine load had a significantly higher lifetime incidence of depressive illness compared with those with the highest output. as none of the women were suffering from depression at the time of tyramine loading, it seems likely that this decreased excretion of tyramine is associated in some way with vulnerability to depressive illness, whether puerperal or nonpuerperal.

Chronic Disease↗