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HPLC electrochemical detection of trace amines in human plasma and platelets and expression of mRNA transcripts of trace amine receptors in circulating leukocytes.

We evaluated, using a multi-channel electrochemical HPLC system, whether trace amines are detectable in plasma and platelets of healthy control subjects. To this end, levels of tyramine, octopamine and synephrine were assessed in samples obtained from eight males and eight females, age matched and free from drugs. In plasma, octopamine was detectable in all subjects, synephrine in 15 and tyramine in six out of 16 subjects. Likewise, detectable levels of octopamine together with synephrine were, in contrast to tyramine, found within platelets of most individuals. Intracellular levels of the amines significantly diminished following platelet activation (ADP or collagen). In addition, circulating leukocytes from these same subjects are herein shown to express mRNA transcripts for the recently discovered 'trace amine receptors' (TAR-1, -3, -4 and -5). Thus, although baseline plasma levels of octopamine tyramine or synephrine may vary among healthy individuals, the observation that platelets store and actively release these trace amines suggests that they may be effectors involved in platelet-mediated signaling events in the bloodstream.

Adult↗

The differential effects of circulating norepinephrine and neuronally released norepinephrine on sodium excretion in humans.

The renal effects of incremental infusions of norepinephrine (placebo, 0.025 mu/kg/min), 0.075 micrograms/kg/min, phenylephrine (placebo, 0.5 micrograms/kg/min, 2.5 micrograms/kg/min), and tyramine (placebo, 2 micrograms/kg/min, 15 micrograms/kg/min) were examined in three respective groups (n = 9, 8, and 8) of normotensive male subjects undergoing water diuresis. Tyramine is an indirect sympathetic agent that causes neuronal release of endogenous norepinephrine. Increases in mean arterial pressure during each high-dose infusion were comparable in all three groups. Both norepinephrine and phenylephrine caused a decrease in urinary sodium excretion and effective renal plasma flow, with no changes in glomerular filtration rate. Proximal tubular sodium reabsorption, as assessed by both lithium clearance and solute-free water clearance methods, was increased by pressor doses of norepinephrine and phenylephrine. In contrast, a similar pressor dose of tyramine was associated with a pressure natriuresis, an increase in effective renal plasma flow, and a decrease in proximal tubular sodium reabsorption. Our data indicate that, in normotensive humans, circulating catecholamines (norepinephrine and phenylephrine) have opposite effects on renal sodium handling from neuronally released norepinephrine (tyramine).

Adult↗

Effects of prolonged cold storage on double peaked vasoconstrictor responses to periarterial nerve stimulation in isolated canine splenic arteries.

1. P2X-Purinoceptors and alpha1-adrenoceptors have previously been shown to involve in the double peaked vasoconstrictor responses to periarterial electrical nerve stimulation in the isolated and perfused canine splenic artery. The present study made an attempt to investigate effects of prolonged cold storage (7 days at 4 degrees C) on vasoconstrictor responses to periarterial electrical nerve stimulation, tyramine, noradrenaline and adenosine 5'-triphosphate (ATP) in the isolated canine splenic artery. 2. The periarterial nerve stimulation (1-10 Hz) readily causes a double peaked vasoconstriction in the non-stored preparations. After cold stored for 7 days, the double peaked vasoconstriction was still recognized, although the response became significantly smaller. The first phase was decreased relatively greater than the second phase by the cold storage. 3. In the cold stored preparations, the dose-response curve for tyramine was shifted to the right in a parallel manner. Prazosin almost completely inhibited tyramine-induced vasoconstriction but alpha,beta-methylene ATP failed to influence the response to tyramine. 4. The vasoconstrictor responses to noradrenaline and ATP were not significantly modified by the prolonged cold storage. 5. From these results, it is concluded that the functions of sympathetic co-transmission of purinergic components might be influenced more than that of adrenergic components in the cold storage canine splenic artery.

Adenosine Triphosphate↗

Pupillary functional asymmetry in patients with muscle contraction headache.

Twenty-five patients with 'muscle contraction headache' (MCH) underwent tyramine pupillary tests, and 15 of them also underwent physiologic pupillary tests and cold pressor tests. Twenty healthy controls underwent tyramine pupillary tests, physiologic pupillary tests, and cold pressor tests. In the tyramine pupillary tests and the physiologic pupillary tests, the controls showed a symmetric mydriasis. In contrast, MCH patients showed asymmetric mydriasis after tyramine instillation and in the physiologic pupillary tests. In the cold pressor tests MCH patients reacted in the same manner as the controls. It is suggested that MCH patients have pupillary sympathetic imbalance. The role of this imbalance in the pathogenesis of MCH remains uncertain.

Adult↗

Biogenic amine production by wild lactococcal and leuconostoc strains.

Two qualitative and one quantitative HPLC methods were evaluated for the detection of biogenic amine producers among wild dairy lactococcal and leuconostoc strains. High tyramine producers ranging from 370 to 807 mg l-1 were detected by qualitative methods and confirmed by HPLC analysis. Tyramine levels detected throughout the incubation time depended on the concentration of the amino acid precursor available and no tyramine production was observed when strains were grown in milk. However, increasing amounts of tyramine were detected in cultures grown in milk supplemented with different concentrations of tyrosine. Qualitative methods failed to detect weak producers so that tryptamine production (< 7 mg l-1) could only be determined by HPLC. None of the tested strains was able to produce histamine. Simultaneous production of different amines was observed by HPLC although no colour change was observed in the specific decarboxylase media. Thus, it was concluded that the amine forming ability should be taken into account when selecting starters for milk fermentations. Qualitative methods could be used as a first screening step to eliminate the highest amine producers while the quantitative methods would detect any producing strain.

Aromatic-L-Amino-Acid Decarboxylases↗

Semisynthesis and analysis of lipophilically modified unfractionated and low molecular mass heparins.

Unfractionated heparin and LMMH were substituted with different lipophilic organic compounds. Specifically endpoint attached (LMMH-tyramine and LMMH-tyramine-FITC) and nonspecifically substituted heparins (acylated heparins, and LMMH-biotin and LMMH-cholesterol hemisuccinate) were obtained. The lipophilically substituted heparins were analysed by HPSEC and showed different retention times, high peak purity, different UV/VIS absorbances, and areas under the absorbance time curve. The determination of the average molecular mass Mn, Mm, and Mz and the polydispersity P was performed by PAGE. The substituted heparins showed an increase in their molecular mass Mm, ranging from 2.9 to 129.7% unfractionated heparin and 3.9 to 224.0% (LMMH) compared with the parent compounds (unfractionated heparin and LMMH). The anticoagulant activity was measured by anti-Factor Xa. Lipophilically modified heparin had an aXa activity ranging from 52 to 168 U/mg (unfractionated) and 60 to 108 U/mg (LMMH) and antithrombin activity ranging from 31 to 270 U/mg (unfractionated) and 5 to 15 U/mg (LMMH). The thrombin generation inhibition assay demonstrated an effective anticoagulant potency of the modified compounds. They were neutralized by different amounts (1.1 to 4.1, w/w) of protamin. 1H NMR spectroscopy revealed the specific endpoint attachment of tyramine to LMMH and FITC to LMMH-tyramine. The lipophilically modified heparins showed intact anticoagulant properties and are now used for pharmacokinetic investigations.

Acylation↗

Monoamine oxidase A mediates iodotyrosine formation induced by monoamines in bovine thyroid particulate fraction.

Monoamines are able to increase the thyroid iodine organification in vitro. A predominance of the A form of monoamine oxidase (MAO) has been previously demonstrated to exist in bovine thyroid tissue. In the present study we have investigated the form of MAO that could be involved in the iodotyrosine formation induced by tyramine, 5-hydroxytryptamine (5-HT) and beta-phenylethylamine (PEA) in a bovine thyroid subcellular fraction. The relative capacity of these monoamines to generate H2O2 and to incorporate iodine into tyrosine has also been studied. The MAO A inhibitor clorgyline (10(-9) M) produced a strong inhibition on the iodotyrosine formation induced by tyramine, 5-HT and PEA. In contrast, only a slight reduction was observed with deprenyl as MAO B inhibitor. Among the three monoamines, tyramine produced the highest H2O2 generation and iodotyrosine formation. The lowest Km value obtained was for 5-HT and the highest for PEA. Regarding the Vmax, the lowest value was for 5-HT and the highest for tyramine. The amount of iodine incorporated to tyrosine was not equivalent to the H2O2 generated by the monoamines nor to that exogenously added. Our results indicate that in bovine thyroid tissue mainly the A form of MAO is involved in the monoamine metabolism.

Animals↗

The tyrosine decarboxylation test does not differentiate Enterococcus faecalis from Enterococcus faecium.

According to the current edition of the Bergey's Manual of Systematic Bacteriology [11] the tyrosine decarboxylation test allows the differentiation of enterococci. Tyrosine is decarboxylated to the biogenic amine tyramine by E. faecalis and not by E. faecium strains. In the present study we sequenced the16S rDNA of two tyramine-producing strains, BIFI-56 and BIFI-58, presumptively classified as E. faecalis. Their 16S rDNA were identical to the same fragment from the E. faecium type strain. Several E. faecium strains were then checked for their ability to decarboxylate tyrosine and also a putative tyrosine decarboxylase-coding gene was PCR amplified from these strains. All the strains confirmed as E. faecium produced tyramine and possessed a DNA fragment coding for a putative tyrosine decarboxylase. The concordance of the two methods allows us to conclude that the tyrosine decarboxylase test cannot be used in the differentiation of E. faecalis from E. faecium since at least some E. faecium strains are tyramine producers.

Bacterial Typing Techniques↗

Radical formation in single crystals of aromatic amines and radical transformation by light.

Single crystals of the four aromatic bioamine salts phenylethylamine hydrochloride, tyramine hydrochloride, tryptamine hydrochloride, and histamine dihydrochloride were grown in various states of deuteration. Free radicals were produced by exposure to X-rays between 77 and 300 K and investigated by electron spin resonance spectroscopy. Dissociation of atomic hydrogen from C beta of the aliphatic chain occurs in all compounds studied except tryptamine. However deamination as usually present in the analogous amino acids is not found. The C beta-radical is characterized by an anisotropic H alpha-splitting and two isotropic H beta-splittings. The latter splittings depend strongly on temperature in tyramine. In comparison to the analogous amino acids, radical formation in the aromatic residues is favoured. Among the seven different aromatic radicals found only one is identified in histamine but two in each of the three other bioamines. Two of these are characterized by hydrogen dissociation which occurs in phenylethylamine and tyramine. One hydrogen addition radical is found in each of the three compounds phenylethylamine, tyramine and histamine. In tryptamine two different addition radicals are detected. One of the two products can be converted into the other by visible light. The reverse process is induced by heat, thus permitting the switching of the radical site reversibly between two different structures.

Electron Spin Resonance Spectroscopy↗

Defective cardiovascular reflexes and supersensitivity to sympathomimetic drugs in autonomic failure.

In 10 patients with chronic autonomic failure the clinical features and cardiovascular reflexes were correlated with the pressor responses to intravenous noradrenaline and tyramine. In all patients there was an exaggerated response to noradrenaline but a normal or only mildly exaggerated response to tyramine. Patients with lack of sinus arrhythmia and by implication baroreceptor reflex loss had greater responsiveness to pressor drugs than patients with preservation of this reflex. The responses to tyramine infusions imply that there must be sufficient noradrenaline released at defective sympathetic endings for a pressor response to occur. However, the lack of rise of plasma noradrenaline following tyramine, except in the patients with pure autonomic failure, clearly separates these responses from those of normal subjects. These results can be explained by the presence of lesions of both central and peripheral sympathetic pathways in patients with chronic autonomic failure and multiple system atrophy or Parkinsonism. The peripheral lesion, which is incomplete, may consist of replication of the receptors so causing supersensitivity with a duration of response that is little prolonged. The peripheral defect in the two patients with pure autonomic failure was found to be more complex and the prolonged response in one of these patients suggests the possibility of defective re-uptake or metabolism of noradrenaline. Clearly further study of the defects of sympathetic endings is required, including the use of other techniques such as catecholamine fluorescence. The extreme supersensitive responses underline the need for blood pressure monitoring during pressor drug studies prior to treatment, if the hazards of recumbent hypertension are to be avoided.

Adult↗

Action of nimodipine on sympathomimetic mydriatics in humans.

In 12 healthy volunteers, the effects of a single oral dose of nimodipine (40 mg) on pupil size and on the mydriasis induced by conjunctival instillation of tyramine and phenylephrine were studied by using a TV monocular infrared pupillometer. Nimodipine alone was unable to modify the pupil area. When compared with placebo, the Ca2+ entry blocker reduced the pupil dilation caused by tyramine, whereas it did not affect the phenylephrine-induced mydriasis. Since tyramine provokes mydriasis by releasing neuronal norepinephrine, a full adrenoceptor agonist, whereas phenylephrine acts only on alpha 1-adrenoceptors insensitive of extracellular Ca2+, the hypothesis may be advanced that a heterogeneous population of alpha-adrenoceptors, located in the human iris dilator muscle and differently sensitive to Ca2+ entry blockade, is responsible for the reduction of the tyramine-induced mydriasis. Apart from this putative mechanism, the results suggest that nimodipine reduces the pupillary response to adrenergic activation in the human eye.

Administration, Oral↗

The action of sympathomimetic amines on heart rate in relation to the effect of reserpine.

When the heart-lung preparation is made from a dog treated with reserpine, catechol amines such as noradrenaline and isoprenaline have a greater effect on the rate of the heart than they have in a preparation from a normal dog. Other sympathomimetic amines such as tyramine and ephedrine, on the other hand, are found to have lost their action. Since treatment with reserpine has been shown to cause the store of noradrenaline in the heart to disappear, and the infusion of noradrenaline into the preparation made from a reserpine-treated animal restores the action of tyramine, it is concluded that substances like tyramine and ephedrine normally act by liberating noradrenaline from the store, and do not act directly. Cocaine, like reserpine, increases the effect of noradrenaline and decreases the effect of tyramine on the heart rate; it appears to block the release of noradrenaline from the store in the heart.

Amines↗

Pharmacological significance of biogenic amines in the lungs: noradrenaline and dopamine.

1. The noradrenaline concentration in the lung was less than 0.5 mug/g in eight animal species.2. In the cat, dog, rabbit and goat, tyramine produced a fall in pulmonary resistance, which was reduced by the administration of either reserpine or cocaine. Although an infusion of noradrenaline increased the content of this amine in the lung of the cat, previously depleted by reserpine, the bronchodilator property of tyramine was not restored. The infusion of isoprenaline did not restore the response to tyramine. The role of either catecholamine in mediating the bronchomotor response to tyramine could not be ascertained.3. The concentration of dopamine was as high as 6.4 mug/g in the goat lung and less than 0.5 mug/g in the lungs of the cat, rabbit, dog, rat, mouse, guinea-pig and man. Dopamine, injected intravenously into the cat, dog, rabbit and goat, produced a slight rise in pulmonary resistance. This increase was blocked by tolazoline, indicating that the response was mediated by alpha-adrenoceptors in the bronchial passages. No procedure has been observed to influence the dopamine content of the lung. The release of dopamine cannot, however, be excluded until the blood in the bronchial veins has been analysed.

Anilides↗

Local application of drugs to sympathetic nerve terminals: an electrophysiological analysis of the role of prejunctional alpha-adrenoceptors in the guinea-pig vas deferens.

1. Focal extracellular recording techniques were used to study the effects of clonidine, yohimbine and tyramine on the intermittent transmitter release mechanism in the guinea-pig vas deferens in vitro. Drugs were applied locally to the varicosities located within the recording electrode. Statistical methods were used to determine whether noradrenaline (NA) acts locally to inhibit secretion from the same or a closely related release site (local regulation) on an impulse-to-impulse basis. 2. The alpha-adrenoceptor agonist, clonidine, inhibited transmitter release, an effect reversed by the alpha-adrenoceptor antagonist, yohimbine. Yohimbine alone increased action potential-evoked transmitter release, findings consistent with the idea that transmitter release is regulated through prejunctional alpha-adrenoceptors. 3. The indirectly acting sympathomimetic, tyramine, powerfully inhibited evoked transmitter release, an effect reversed by both yohimbine and phentolamine. The inhibitory effects of tyramine were greatly reduced in tissues taken from animals pretreated with reserpine. Clonidine powerfully inhibited transmitter release in reserpinized tissues showing that prejunctional alpha-adrenoceptors were functionally intact. The inhibitory effects of tyramine on transmitter release are therefore mediated indirectly through the release of endogenous NA. 4. Paradoxically, when transmitter release from a small population of variscosities on a single nerve fibre was studied in the absence of alpha-adrenoceptor antagonists, no evidence was found for local regulation of transmitter release. 5. The intermittent character of the transmitter release process makes it difficult to envisage how impulse-to-impulse regulation could occur. Furthermore, it is unlikely that NA will accumulate to any appreciable extent in the vicinity of the secreting varicosity. 6. The pharmacological evidence clearly supports the view that NA released from sympathetic nerve terminals by nerve impulses modulates subsequent transmitter release. However, the evidence does not support the view that released NA acts locally to inhibit secretion from recently activated varicosities.

Adenosine Triphosphate↗

On the amine oxidases of Klebsiella aerogenes strain W70.

Klebsiella aerogenes W70 was reported previously to produce a membrane-associated tyramine oxidase (TynA) that did not act on 2-phenylethylamine. Subsequently, a gene cloned from K. aerogenes W70 produced a soluble amine oxidase (MaoA) that acted readily on 2-phenylethylamine and tyramine. This enzyme appeared to be equivalent to a 2-phenylethylamine oxidase of Escherichia coli K-12 (MaoA) but was assumed to be the originally described K. aerogenes W70 tyramine oxidase (TynA). However, as described here, whole cells and cell-free extracts of K. aerogenes W70 showed only the tyramine oxidase (TynA) that is inactive against 2-phenylethylamine and not the maoA gene product. It seems that the organism has two amine oxidase genes, tynA and maoA, but only tynA is expressed. Hence, data relating to the expression of the K. aerogenes W70 tynA gene cannot be assumed to apply to the maoA gene of E. coli K-12 because they encode different enzymes.

Amine Oxidase (Copper-Containing)↗

Neural control of electrogenic transport in the rat jejunum; interaction between intramural and adrenergic mechanisms.

The aim of the study was to test the hypothesis that extrinsic adrenergic neurons modulate electrogenic ion transport in the jejunum by inhibition of intramural secretory nerve activity. Isolated pieces of rat jejunum were mounted in the Ussing chamber. Noradrenaline (NA) was released from sympathetic nerve endings in the tissue by electrical stimulation of the mesenteric nerves or by the indirect sympathomimetic agent tyramine. Intramural neurons were activated by electrical field stimulation (EFS). Mesenteric nerve stimulation induced a frequency-related decrease in the transepithelial potential difference (PD) and short circuit current (SCC), effects which were abolished by the alpha-adrenergic antagonist phentolamine. A similar response was induced by the serosal application of tyramine and by exogenous NA. Tetrodotoxin (TTX), a nerve conduction inhibitor, had no significant effect on the response to NA, but attenuated the response to tyramine. Both NA and tyramine markedly attenuated the secretory response to EFS, but there was no significant effect of catecholamines on the secretory response to serosal theophylline. The results suggest at least two mechanisms behind the adrenergic modulation of electrogenic chloride secretion: (I) a ganglionic or presynaptic modulation of secretory nerve activity via innervated alpha-receptors, and (2) a modulation at the level of the enterocytes via non-innervated alpha-receptors. The latter effect does not seem to be mediated by the cAMP system.

Adrenergic Fibers↗

Properties of a semicarbazide-sensitive amine oxidase in human umbilical artery.

The metabolism of some aromatic amines by amine oxidase activities in human umbilical artery homogenates has been studied. The inhibitory effects of clorgyline showed that 5-hydroxytryptamine (5-HT) and tryptamine, 1 mM, were predominantly substrates for monoamine oxidase (MAO) type A, whereas MAO-A and B were both involved in the metabolism of beta-phenylethylamine (PEA), 100 microM, and tyramine, 1 mM. About 20-30% of tyramine and PEA metabolism was resistant to 1 mM clorgyline, but sensitive to inhibition by semicarbazide, 1 mM, indicating the presence of a semicarbazide-sensitive amine oxidase (SSAO). Benzylamine, 1 mM, appeared to be metabolized exclusively by SSAO with a Km (161 microM) at pH 7.8 similar to that found for SSAO in other human tissues. Tyramine and PEA were relatively poor substrates for SSAO, with very high apparent Km values of 17.6 and 13.3 mM, respectively, when determined in the presence of clorgyline, 10(-3) M, added to inhibit any metabolism of those amines by MAO activities. However, kinetic studies with benzylamine indicated that clorgyline, 10(-3) M, also appears to inhibit SSAO competitively such that the true Km values for tyramine and PEA may be about 60% of those apparent values given above. No evidence for the metabolism of 5-HT or tryptamine by SSAO was obtained. The aliphatic amine methylamine was recently shown to be a specific substrate for SSAO in umbilical artery homogenates. We have used benzylamine and methylamine as SSAO substrates in histochemical studies to localize SSAO in tissue sections.(ABSTRACT TRUNCATED AT 250 WORDS)

Clorgyline↗

Effect of calcium antagonists on adrenergic mechanisms in canine saphenous veins.

Experiments were designed to investigate the effect of two calcium antagonists, diltiazem and nicardipine (concentration range: 10(-7)-10(-4) M), on the contractile responses to transmural nerve stimulation, exogenous noradrenaline and tyramine in isolated canine saphenous vein rings. Both diltiazem and nicardipine inhibited the contractile response to transmural nerve stimulation in a non-competitive, concentration-dependent manner. At a concentration of 10(-4) M, diltiazem and nicardipine inhibited the maximum contractile response to transmural nerve stimulation to 0.8 +/- 0.8% and 20 +/- 10% of control respectively. Effects of diltiazem and nicardipine (up to 10(-4)M) on the contractile response to exogenous noradrenaline were minimal. The only significant difference observed was a 30% depression of the maximum contractile response with a shift in ED50 at high concentrations of nicardipine. Diltiazem (up to 10(-4) M) had no significant effect on concentration-effect curves for tyramine. Nicardipine inhibited the response to tyramine in a non-competitive manner with the maximum response depressed to 46% of control at 10(-4) M-nicardipine. Release of [3H]noradrenaline during transmural nerve stimulation was reduced by both calcium antagonists in a concentration-dependent manner. However, release of [3H]noradrenaline produced by the indirect sympathomimetic agent tyramine was not significantly inhibited by nicardipine. These experiments suggest that the calcium antagonists diltiazem and nicardipine inhibit the contractile response to transmural nerve stimulation in the canine saphenous vein predominantly by inhibiting the release of endogenous noradrenaline. However, nicardipine appears to have an additional post-synaptic inhibitory effect on the responses to exogenous as well as endogenous noradrenaline.

Animals↗