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T Kurz

Publications and source records attributed to T Kurz.

At least 37 records · Page 2Linked to original sources

A HPLC-fluorescence detection method for determination of cardiac phospholipase D activity in vitro.

A nonradioactive assay for the investigation of phospholipase D (PLD) activity in cardiac membranes has been developed. A fluorescent derivative of phosphatidylcholine [2-decanoyl-1-(O-(11-(4,4-difluoro-5,7-dimethyl-4-bora-3a, 4a-diaza-s-indacene-3proprionyl)amino) undecyl) sn-glycero-3-phosphocholine] was utilized as substrate in an in vitro PLD-catalyzed transphosphatidylation reaction utilizing ethanol as second substrate. Unreacted phosphatidylcholine and the products of phospholipase activity (PEtOH, phosphatidylethanol; PA, phosphatidic acid; DAG, diacylglycerol) were separated by a binary gradient HPLC system and detected by fluorometry. The detection limit of this assay is approximately 0.6 pmol PEtOH. The reaction proceeded at a linear rate for up to 45 min and increased linearly with increasing amounts of rat cardiac membrane protein in a range of 0.625 microg up to at least 25 microg. In the presence of potassium fluoride, formation of fluorescent PA increased at the expense of DAG generation, demonstrating the presence of PA phosphohydrolase activity in rat cardiac membranes. PEtOH formation was unchanged in the presence of the PA phosphohydrolase inhibitor, indicating that the phosphatidylalcohol is not subject to further metabolism by this enzyme. Activation of protein kinase C by phorbol ester significantly increased PLD activity in cardiac membranes. This assay proved to be sensitive for accurate and rapid assessment of PLD activity in cardiac membranes permitting further characterization of the regulation of PLD signal transduction in the heart.

Animals↗

Parametric and nonparametric multipoint linkage analysis with imprinting and two-locus-trait models: application to mite sensitization.

We present two extensions to linkage analysis for genetically complex traits. The first extension allows investigators to perform parametric (LOD-score) analysis of traits caused by imprinted genes-that is, of traits showing a parent-of-origin effect. By specification of two heterozygote penetrance parameters, paternal and maternal origin of the mutation can be treated differently in terms of probability of expression of the trait. Therefore, a single-disease-locus-imprinting model includes four penetrances instead of only three. In the second extension, parametric and nonparametric linkage analysis with two trait loci is formulated for a multimarker setting, optionally taking imprinting into account. We have implemented both methods into the program GENEHUNTER. The new tools, GENEHUNTER-IMPRINTING and GENEHUNTER-TWOLOCUS, were applied to human family data for sensitization to mite allergens. The data set comprises pedigrees from England, Germany, Italy, and Portugal. With single-disease-locus-imprinting MOD-score analysis, we find several regions that show at least suggestive evidence for linkage. Most prominently, a maximum LOD score of 4.76 is obtained near D8S511, for the English population, when a model that implies complete maternal imprinting is used. Parametric two-trait-locus analysis yields a maximum LOD score of 6.09 for the German population, occurring exactly at D4S430 and D18S452. The heterogeneity model specified for analysis alludes to complete maternal imprinting at both disease loci. Altogether, our results suggest that the two novel formulations of linkage analysis provide valuable tools for genetic mapping of multifactorial traits.

Allergens↗

Heart rate variability in patients with acute myocardial infarction undergoing primary coronary angioplasty.

Depressed heart rate variability (HRV) has been associated with adverse outcome during and after acute myocardial infarction (AMI). The effects of reperfusion in AMI on the course of HRV have not been well characterized as yet. We analyzed 123 consecutive patients with a first AMI who underwent successful reperfusion (Thrombolysis In Myocardial Infarction grades 2 and 3) by primary percutaneous transluminal coronary angioplasty (PTCA). Time- and frequency-domain HRV was measured from 24-hour Holter monitoring, which began at hospital admission. Mean RR interval increased significantly after successful PTCA. Reperfusion immediately caused an immediate transient depression of HRV, which was followed by a significant increase of HRV. Quantitative markers of sympathetic activity and sympathovagal balance, such as SD of the averages of NN intervals in all 5-minute segments, and low- and/or high-frequency ratio continuously decreased within the observation period. Patients with anterior AMI exhibited the same pattern of temporal changes of HRV, with, however, lower absolute values for HRV and mean RR interval than patients with non-anterior AMI. Subgroup analysis in 21 patients with reperfusion > 12 hours after onset of pain showed that the biphasic profile of HRV and the marked increase of mean RR interval was absent. Furthermore, in patients with late reperfusion, HRV was significantly lower compared with those with early reperfusion. Thus, timely reperfusion in AMI leads to a biphasic effect on autonomic tone, characterized by a transient suppression, followed by a significant activation of the vagal tone, as well as an attenuation of sympathetic activity. Recovery of HRV may contribute to the benefits of early reperfusion in AMI.

Adult↗

[Intracoronary stent implantation and left ventricular function in primary PTCA in acute myocardial infarct].

In acute myocardial infarction intracoronary stenting is superior to PTCA regarding interventional success and occurrence of cardiac events. It is, however, uncertain whether myocardial function also improves with stenting. We, therefore, assessed angiographic parameters of myocardial function in patients with acute myocardial infarction who were treated with primary PTCA and received additional stenting in case of an unsatisfactory angiographic result (provisional stenting). Nineteen patients with acute myocardial infarction, in whom a "stent-like" angiographic result was achieved by PTCA alone, were compared with an equal number of patients receiving provisional stenting. The groups were exactly matched with respect to severity of coronary heart disease, segment of coronary occlusion, Killip class, and TIMI flow after intervention. We only included patients without inhospital cardiac events, in whom repeat angiography after ten days revealed a patent target vessel. There were no differences between both groups regarding age, gender, enzymatic infarction size, duration of ischemia (< or = 12 h), and cardiac risk factors. Myocardial function was assessed by ventriculography and was analyzed quantitatively by the center-line method. The group treated by intracoronary stenting showed a significantly improved ejection fraction (60.3 +/- 2.1% vs. 52.6 +/- 2.9%). All parameters of regional wall motion also indicated significantly less functional disturbance in the stented group compared to PTCA alone (circumferential extend of hypokinesia: 7.4 +/- 2.4% vs. 16.1 +/- 3.4% chords, maximum hypokinesia in the central infarct region: -0.98 +/- 0.20 vs. -1.52 +/- 0.15 SD, severity of regional hypokinesia: 7.3 +/- 2.6 vs. 21.9 +/- 5.4 area). In summary, these results in patients undergoing primary PTCA in acute myocardial infarction indicate that intracoronary stenting is superior to PTCA alone with respect to myocardial recovery, even if an angiographically "stent-like" result can be achieved. Probably, stenting results in a more efficient reperfusion.

Aged↗

Risk factors for early reocclusion and luminal renarrowing in patients with acute coronary syndromes treated by direct PTCA with provisional stenting.

UNLABELLED: Angioplasty in acute coronary syndromes is complicated by a high rate of early vessel reocclusion and restenosis. Therefore, it is recommended to achieve a "stent-like" result by percutaneous transluminal coronary angioplasty (PTCA) or otherwise use coronary stenting (provisional stenting). This study sought to determine angiographic and patient-related factors that are associated with early target vessel reocclusion or luminal renarrowing after coronary intervention in acute coronary syndromes (ACS). In an observational prospective study we investigated 161 patients with ACS (acute myocardial infarction and unstable angina) submitted to PTCA. In 140 patients a follow-up angiography after 10 days was obtained. All angiograms were quantitatively evaluated by computerized measurements. Target vessel reocclusion and early luminal renarrowing was observed in 10 patients (7.1%) and 19 patients (13.6%), respectively. Using univariate analysis, significant risk factors (P < 0.05) for early reocclusion and renarrowing were diabetes mellitus (relative risk [RR] 6.1 and 5.0), arterial hypertension (RR 7.7 and 3.3), postprocedural lesion length > or = 2.5 mm (RR 6.8 and 7.1), postprocedural minimal lumen diameter < or = 2.5 mm (RR 9.0 and 5.8), residual stenosis > or = 25% (RR 4.8 and 3.5) and absence of stents (RR 4.1 and 3.2). Moreover, in multivariate analysis hypertension and postprocedural lesion length could be identified as independent risk factors for reocclusion and renarrowing. Diabetes mellitus was found to be an independent risk factor for renarrowing. CONCLUSIONS: In a consecutive series of patients with ACS undergoing PTCA with provisional stenting the occurrence of early target vessel reocclusion and luminal renarrowing is lower than previously reported for this subset of patients treated by PTCA alone. Adverse outcome is related to absence of stents, angiographic factors (residual stenosis, lesion length, minimal lumen diameter after procedure) and patient-related factors such as diabetes and hypertension.

Acute Disease↗

Cerebral oligaemia episode triggers free radical formation and late cognitive deficiencies.

Sixty minutes of cerebral oligaemic hypoxia, induced by bilateral clamping of the carotid arteries (BCCA) in pentobarbital-anaesthetized normotensive rats, induces a late progressive cognitive decline when compared with sham-operated controls. Analysis at BCCA of hippocampal metabolism using microdialysis showed increased release of glutamate, aspartate and gamma-aminobutyric acid, followed by a progressive rise in the formation of hydroxyl free radicals measured as 2,3-dihydroxybenzoic acid (2,3-DHBA), their reaction product with salicylate, though only in the re-perfusion phase. In the striatum increased dopamine release occurred during BCCA, whereas glutamate and aspartate showed an increase only during the late re-perfusion phase. gamma-Aminobutyric acid (GABA) concentration increased during BCCA and early re-perfusion. An increase in 2,3-DHBA was seen during BCCA, and persisted over 2 h of re-perfusion. Six and 13 months after surgery, though not as early as 3 months, BCCA-treated rats perform worse than sham-operated controls in a water-maze, where decreased swimming speed reveals striatal dysfunction, while hippocampal dysfunction manifested as diminished spatial bias. These results show that cerebral oligaemia, similarly to cerebral ischaemia, leads to increased extracellular dopamine, aspartate and glutamate, and the production of hydroxyl radicals in structures associated with learning and memory processes. Unlike cerebral ischaemia, in cerebral oligaemia the appearance of spatial memory deficits is delayed.

3,4-Dihydroxyphenylacetic Acid↗

A European study on the genetics of mite sensitization.

BACKGROUND: Sensitization to mite allergens represents a prominent feature of atopy and an important predictor of bronchial asthma. OBJECTIVE: It was the intention of this study to define genetic loci linked to mite sensitization because these could represent the genetic basis of the important atopic component of asthma. METHODS: We studied a multiethnic white population of 99 families, including 224 sib pairs sensitized to Dermatophagoides pteronyssinus. A genome-wide candidate-region search was performed that covered potential asthma and atopy regions. RESULTS: As for nonparametric linkage (NPL) analysis, 14 of the candidate regions showed evidence for linkage (NPL > 2.0), and 4 of them showed prominent linkage (NPL > 3.0). However, there were substantial ethnic differences. Maximizing the LOD score analysis identified candidate regions with suspected dominant and recessive mode of inheritance. Furthermore, genetic imprinting models provided significant evidence for linkage in the 8p23 region and revealed potential maternal imprinting. The regions found are distinct to those in asthma searches that have been found to be linked to asthma, as well to other inflammatory diseases. In addition, we could not find linkage to the HLA region. By different cutoff points of the phenotype definition, the IL cluster showed evidence of being linked to the degree of sensitization rather than to sensitization per se. CONCLUSION: The results indicate that the genetic basis of the atopic component of asthma is different from that of the inflammatory component. Furthermore, it seems reasonable to assume that specific sensitizations are influenced by distinct genetic variants leading to their initiation versus those leading to their enhancement.

Allergens↗

Differential effects of carvedilol on norepinephrine release in normoxic and ischemic heart.

Carvedilol is a beta-adrenoceptor antagonist with multiple actions, which may contribute to superior cardioprotection in heart failure and myocardial infarction. We hypothesized that carvedilol may modulate presynaptic norepinephrine release in the heart. Therefore, we compared the effects of carvedilol (racemate and both enantiomers) and beta1-selective as well as nonselective beta-adrenoceptor blockers on norepinephrine release in isolated perfused rat hearts under normoxic and brief ischemic conditions. Exocytotic release of endogenous norepinephrine was induced by paired electric field stimulations to compare the release before (S1) and after (S2) beta-adrenoceptor blocker application. Metoprolol, bisoprolol, and pindolol (0.1-10 microM) had essentially no effect on exocytotic norepinephrine release under normoxic and ischemic conditions. In contrast, carvedilol exerted a biphasic concentration-response curve (increase followed by suppression) on norepinephrine release. The increase in norepinephrine release was more pronounced with R-carvedilol than with S-carvedilol, indicating an effect independent from beta-receptor antagonism. During ischemia, the facilitatory effect of carvedilol on norepinephrine release was lost, resulting in a concentration-dependent suppression of the release. These results indicate that carvedilol in contrast to classic beta1-selective and -nonselective beta-adrenoceptor blockers has pronounced effects on cardiac norepinephrine release with a remarkable difference between normoxic and ischemic conditions. Whereas a facilitation of norepinephrine release prevailed in normoxia, we observed a suppression of the release in ischemia. It remains to be established whether this unique action of carvedilol on cardiac sympathetic neurotransmission is of clinical relevance.

Adrenergic beta-Antagonists↗

Alpha 1-adrenergic receptor-mediated increase in the mass of phosphatidic acid and 1,2-diacylglycerol in ischemic rat heart.

OBJECTIVE: 1,2-Diacylglycerol (1,2-DAG) and phosphatidic acid (PA) are produced by phospholipase C and D activity and play a key role as second messengers in receptor-mediated signal transduction. So far, little is known about alterations of endogenous 1,2-DAG and PA production during myocardial ischemia. METHODS: Rat isolated perfused hearts were subjected to global ischemia, total lipids were extracted, and separated by thin-layer chromatography. The mass of PA and 1,2-DAG were quantified using laserdensitometric analysis of visualized lipids. RESULTS: Compared to normoxic control values (1,2-DAG 713 +/- 45 ng/mg protein, PA 171 +/- 11 ng/mg protein), the myocardial content of 1,2-DAG and PA was unaltered after 10 min of ischemia. Prolonged myocardial ischemia (20 min), however, which was accompanied by marked overflow of endogenous norepinephrine, significantly increased the mass of both second messengers (1,2-DAG 1062 +/- 100 ng/mg protein, PA 340 +/- 29 ng/mg protein). The increase in PA and 1,2-DAG in response to ischemia was abolished by inhibition of ischemia-induced norepinephrine release as well as by alpha1-adrenergic blockade but unaffected by beta-adrenergic blockade. While inhibition of diacylglycerol kinase did not affect ischemia-induced increase in PA and 1,2-DAG, inhibition of phosphatidylinositol-specific phospholipase C activity significantly suppressed ischemia-induced increase in 1,2-DAG but did not affect endogenous production of PA indicating phospholipase C-independent formation of PA and activation of both, phospholipase C and D, in the ischemic heart. CONCLUSIONS: Ischemia elicits an alpha1-adrenergic receptor-mediated increase in the mass of myocardial PA and 1,2-DAG. The increase in endogenous PA is suggested to be due to the activation of myocardial phospholipase D, whereas 1,2-DAG is formed predominantly by activation of phospholipase C in the ischemic heart.

Adrenergic Uptake Inhibitors↗

Endogenous adenosine suppresses norepinephrine-induced ventricular arrhythmias in rat heart.

Adenosine is an antiarrhythmic substance particularly effective in catecholamine-dependent tachycardias. Although endogenous adenosine substantially accumulates in catecholamine-stimulated hearts, little is known about the antiarrhythmic potency of endogenous adenosine in this condition. Therefore, we sought to demonstrate a potential antifibrillatory effect of endogenous adenosine either by blockade of adenosine receptors with 8-phenyltheophylline (8-PT) or by suppression of endogenous adenosine release with nitrobenzyl-6-thioinosine (NBTI). The study was performed in spontaneously beating Langendorff-perfused rat hearts. Adenosine release into the effluent was determined by HPLC methods. Catecholamine stimulation was induced by perfusing the hearts with norepinephrine (1 mumol/l) for 30 min, which caused ventricular tachycardia (VT) in 31% and ventricular fibrillation (VF) in 25% of control hearts (n = 35). When 8-PT (10 mumol/l) was added to the perfusion buffer prior to norepinephrine, the incidence of VT and VF increased to 79 and 68%, respectively. The addition of 8-PT did not affect the catecholamine-dependent formation of adenosine. Perfusion of the hearts with NBTI (10 mumol/l) prior to norepinephrine reduced adenosine release and increased the occurrence of both VT (65%) and VF (40%). In summary, the results indicate that adenosine is an endogenous antiarrhythmic substance, which accumulates in catecholamine-stimulated myocardium to a level, which effectively suppresses the occurrence of ventricular arrhythmias.

Adenosine↗

Bradykinin B2-receptor-mediated stimulation of exocytotic noradrenaline release from cardiac sympathetic neurons.

Myocardial ischemia, as well as angiotensin-converting-enzyme-inhibitors, increase cardiac concentrations of the non-apeptide bradykinin. Cardiac effects of bradykinin are potentially mediated by modulation of sympathoadrenergic neurotransmission. Accordingly, the present study was designed to examine the influence of bradykinin on exocytotic noradrenaline release from rat isolated perfused heart. Exocytotic noradrenaline release was induced by electrical field stimulation (1 min, 5 V, 6 Hz) twice to compare the effect of intervention (S2) with respective control stimulation (S1). The overflow of endogenous noradrenaline was determined by high pressure liquid chromatography and electrochemical detection. The results are expressed as the mean S2/S1 ratio+/-S.E.M. Bradykinin (1 micromol/l) evoked a significant increase in noradrenaline release (S2/S1: 1.60+/-0.12; P<0.01), which was even more pronounced after inhibition of neuronal reuptake of noradrenaline by desipramine (0.1 micromol/l: S2/S1: 1.83+/-0.15; P<0.01) excluding interference of bradykinin with the noradrenaline uptake1 carrier. The concentration-response curve for bradykinin (0.1 nmol/l to 10 micromol/l) revealed a maximum effect at 1 micromol/l and an EC50-value of 7.5 nmol/l. The effect of bradykinin was unaltered by the B1-receptor antagonist des-Arg9 (Leu8)-bradykinin (1 micromol/l; S2/S1: 1.69+/-0.17), whereas it was reduced significantly by the B2-receptor antagonist Hoe 140 (1 micromol/l; S2/S1: 1.14+/-0.11; P<0.05). Des-Arg9-bradykinin (1 micromol/l), a specific B1-agonist, had no effect on stimulation-induced noradrenaline release (S2/S1: 0.94+/-0.08). Utilizing pharmacological interventions, we attempted to characterize the intraneuronal signal transduction pathway mediating the effect of bradykinin on exocytosis. Neither inhibition of cyclooxygenase nor blockade of nitric oxide synthesis affected bradykinin-induced stimulation of noradrenaline release. Likewise, inhibition of protein kinase C by bisindolylmaleimide (1 micromol/l) or tyrosine kinase by genistein (10 micromol/l) had no effect on the promoting action of bradykinin. In contrast, inhibition of cytosolic phospholipase A2 activity by the specific inhibitor AACOCF3 (1 micromol/l) prevented bradykinin-induced increase in noradrenaline release (S2/S1: 1.09+/-0.15; P<0.01). In conclusion, bradykinin increases exocytotic release of endogenous noradrenaline from cardiac sympathetic neurons via activation of presynaptic B2-receptors. Intraneuronal coupling of B2-receptors to phospholipase A2 appears to mediate the facilitatory effect of bradykinin on noradrenaline release in rat heart.

Animals↗

Systemic and cardiac catecholamines during elective PTCA and during immediate PTCA for acute myocardial infarction.

This study investigated arterial and coronary venous catecholamine concentrations in patients undergoing either elective coronary angioplasty (PTCA) or direct PTCA for acute myocardial infarction. We included 17 patients with stenoses of the left anterior descending coronary artery (LAD) and 10 patients with acute anterior myocardial infarction (AMI) undergoing PTCA. During the initial balloon dilatation arterial and coronary venous plasma concentrations of norepinephrine and epinephrine were determined. In elective PTCA, coronary occlusion (2 min) resulted in a transient increase of arterial concentrations of norepinephrine (2.04 +/- 0.30 vs. 1.26 +/- 0.13 nmol/L before dilatation) and epinephrine (0.52 +/- 0.08 vs. 0.34 +/- 0.04 nmol/L) in the first minute of reperfusion, whereas coronary venous concentrations of catecholamines were not changed after dilatation. Among the 10 patients with AMI, immediate reperfusion of the LAD (TIMI grade 3) was achieved in 6 patients. In these patients, baseline arterial concentrations for norepinephrine (3.91 +/- 1.16 nmol/L) and epinephrine (4.68 +/- 2.07 nmol/L) were elevated and no transcardiac gradient for catecholamines was found. In the first minute after successful reopening of the LAD we detected a distinct rise of the transcardiac norepinephrine gradient from -0.10 +/- 0.53 to 85.02 +/- 24.64 nmol/L, which declined in the fifth minute of reperfusion of 4.36 +/- 2.30 nmol/L. Conversely, venous epinephrine and arterial concentrations for both catecholamines remained unchanged within the observation period. In the four patients with incomplete (TIMI 0-2) reopening of the LAD, we found no cardiac washout of norepinephrine. In summary, a transient rise of systemic catecholamines, but no cardiac release of norepinephrine was observed in patients after brief coronary occlusion. Conversely, a massive washout of norepinephrine from the infarcted myocardium occurred during AMI.

Acute Disease↗

Influence of alpha- and beta-adrenoceptor antagonists on ventricular fibrillation in ischemic rat hearts.

Although it is generally accepted that adrenergic influences contribute to arrhythmias during myocardial ischemia, it is still a matter of debate whether these arrhythmogenic effects are mediated via alpha- or beta-adrenergic receptors and which particular receptor subtype is involved. Controversial results may be due to ancillary properties of the adrenergic receptor antagonists used to resolve this question. Therefore, we compared the influence of various, structurally different alpha- and beta-adrenoceptor blocking agents on the occurrence of ventricular fibrillation in rat isolated hearts. Regional ischemia was induced by ligature of the left coronary artery and ECG was monitored over 30 min of coronary occlusion. Myocardial ischemia precipitated ventricular fibrillation in a well reproducible manner with an incidence of about 80% in control hearts. Racemic propranolol (0.1-1 micromol/l) concentration-relatedly reduced the incidence of ventricular fibrillation from 71% in controls to 10%, whereas the beta-adrenoceptor blocking agents atenolol (10 micromol/l) and timolol (1 micromol/l) did not influence the occurrence of arrhythmias. Moreover, both stereoisomers of propranolol were equipotent in suppressing ischemia-induced ventricular fibrillation, indicating an action of propranolol independent of its beta-adrenoceptor blocking properties. Unselective antagonism of alpha-adrenoceptors by phentolamine decreased the incidence of ventricular fibrillation from 90% to 58% at 0.1 micromol/l and totally suppressed ventricular fibrillation at 1 micromol/l. The alpha1-selective antagonists prazosin and HEAT concentration-dependently (0.1-10 micromol/l) reduced the incidence of ventricular fibrillation from 83% to 0%, whereas the alpha2-selective antagonist RX 821002 revealed no antiarrhythmic effect. Furthermore, subtype specific antagonism of alpha1A-adrenoceptors by WB 4101 clearly reduced the occurrence of ventricular fibrillation in a concentration-dependent manner (0.01-1 micromol/l) from 66% to 17%. Conversely, CEC, known to block the alpha1B-adrenoceptor subtype, possessed no antifibrillatory effect. In conclusion, the contribution of catecholamines to ischemia-induced arrhythmias in rat isolated heart is primarily mediated via WB 4101-sensitive alpha1-adrenergic activation. Beta- and alpha2-adrenoceptor blockade did not affect ventricular fibrillation in this model. The antifibrillatory action of propranolol was rather due to ancillary properties of this agent.

Adrenergic alpha-1 Receptor Antagonists↗

Nonexocytotic noradrenaline release induced by pharmacological agents or anoxia in human cardiac tissue.

In acute myocardial ischemia, noradrenaline is released locally from sympathetic varicosities by a Ca(2+)-independent nonexocytotic release mechanism that is effectively suppressed by inhibitors of the neuronal noradrenaline carrier (uptake1). The purpose of the present study was to elucidate the significance of free axoplasmic amine concentration and disturbed neuronal sodium homeostasis for nonexocytotic noradrenaline release in the human heart by comparing the release induced by anoxia with that induced by reserpine, tyramine, or veratridine. The overflow of endogenous noradrenaline and dihydroxyphenylethyleneglycol was assessed in human atrial tissue incubated in calcium-free Krebs-Henseleit-solution to prevent interferences by exocytotic release. The overflow of dihydroxyphenylethyleneglycol served as indicator of the free axoplasmic noradrenaline concentration. When vesicular uptake was blocked by the reserpine-like agent Ro 4-1284, high dihydroxyphenylethyleneglycol overflow was observed without concomitant noradrenaline overflow. If, however, Ro 4-1284 was combined with sodium pump inhibition (by omission of extracellular potassium) or with alteration of the transmembrane sodium gradient (by lowering the extracellular sodium concentration), both dihydroxyphenylethyleneglycol and noradrenaline were released. The indirectly acting sympathomimetic tyramine induced a marked increase in noradrenaline overflow which was accompanied by overflow of high amounts of dihydroxyphenylethyleneglycol, indicating interference of the drug with both vesicular catecholamine transport and amine transport via uptake1. Likewise, veratridine induced an overflow of noradrenaline (which was prevented by blockade of uptake1) and dihydroxyphenylethyleneglycol indicating a reserpine-like action of the drug. A disturbed energy status of the sympathetic neuron induced by cyanide intoxication or anoxia caused noradrenaline overflow which was suppressed by uptake1 blockade. Blockade of sodium channels by tetrodotoxin effectively reduced noradrenaline overflow during cyanide intoxication but not during anoxia. Anoxia-induced noradrenaline release, however, was markedly suppressed by inhibition of Na+/H+ exchange with ethylisopropylamiloride, indicating the Na+/H+ exchange as the predominant pathway for sodium entry into the sympathetic neuron during anoxia. The results demonstrate that disturbed neuronal sodium homoeostasis and impaired vesicular storage function are critical conditions, causing nonexocytotic noradrenaline release in anoxic human cardiac tissue.

Cell Membrane↗

Differential presynaptic modulation of noradrenaline release in human atrial tissue in normoxia and anoxia.

1. Presynaptic modulation of noradrenaline release in human atrial tissue specimens was investigated under normoxic and anoxic conditions. 2. Noradrenaline release was induced by electrical stimulation and release during experimental intervention (S2) was compared with release during a preceding control stimulation (S1). The results were expressed as the geometric means and 95% confidence intervals of the S2/S1 ratio. 3. The alpha 2-adrenoceptor agonist, UK 14304 (0.1 mumol-1) significantly inhibited noradrenaline release, resulting in a S2/S1 ratio of 0.49 (0.40-0.59), and the a 2-adrenoceptor antagonist, yohimbine (1 mumol l-1) increased noradrenaline release (S2/S1 1.83 [1.43-2.35]) during normoxia. Both compounds were ineffective during anoxia. 4. Adenosine (30 mumol-1) inhibited noradrenaline release with a S2/S1 ratio of 0.54 (0.42-0.66). The adenosine antagonist, 8-phenyltheophylline, alone had no effect during normoxia. During anoxia, neither adenosine nor 8-phenyltheophylline altered noradrenaline release. 5. The beta 2-adrenoceptor agonist, terbutaline (1 mumol l-1) increased (1.53 [1.14-2.01]) and the beta-adrenoceptor antagonist, pindolol (1 mumol l-1) suppressed noradrenaline release (0.62 [0.49-0.79]) under normoxic conditions. During anoxia, pindolol significantly inhibited noradrenaline release with a S2/S1 ratio of 0.66 (0.51-0.85), whereas terbutaline did not influence noradrenaline release. 6. Angiotensin II (0.1 mumol l-1 enhanced noradrenaline release resulting in a S2/S1 ratio of 1.44 (1.34-1.54), while the angiotensin II antagonist, losartan (1 mumol l-1) had no effect on noradrenaline release during normoxia. Conversely, angiotensin II did not increase noradrenaline release and losartan significantly inhibited noradrenaline release to a S2/S1 ratio of 0.60 (0.46-0.77) during anoxia. 7. In conclusion, human cardiac tissue possesses presynaptic inhibitory alpha 2-adrenoceptors and adenosine receptors, as well as facilitatory beta 2-adrenoceptors and angiotensin II receptors regulating noradrenaline release under normoxic conditions. During anoxia the responses to alpha 2-adrenoceptors and adenosine receptor stimulation are lost, whereas facilitatory responses to beta 2-adrenoceptors and adenosine II receptor stimulation are maintained and these receptors appear to be maximally stimulated. This differential presynaptic modulation in anoxia may contribute to enhanced sympathetic activity in ischaemia.

Adenosine↗

Transient ischemia reduces norepinephrine release during sustained ischemia. Neural preconditioning in isolated rat heart.

Endogenous catecholamine release may play a role in ischemic preconditioning either as a trigger or as a target within the process of myocardial preconditioning. Therefore, we investigated the effect of transient ischemia (TI) on norepinephrine release during sustained ischemia in isolated rat hearts. TI was induced by multiple cycles of global ischemia followed by reperfusion with a duration of 5 minutes each, comparable to ischemic preconditioning protocols. After TI, norepinephrine release was evoked by either sustained global ischemia, anoxia, cyanide intoxication, tyramine, or electrical stimulation. During TI, no washout of norepinephrine was observed, and tissue concentrations of norepinephrine were not changed. TI, however, reduced norepinephrine overflow after 20 minutes of sustained ischemia from 239 +/- 26 pmol/g (control) to 79+/-8 pmol/g (67% reduction, P <.01 ). A similar reduction of ischemia-induced norepinephrine release from 192 +/- 22 pmol/g (control) to 90 +/- 15 pmol/g was observed when hearts underwent transient anoxia without glucose (P < .05). When reperfusion between TI and sustained ischemia was prolonged from 5 to 90 minutes, the inhibitory effect of TI on norepinephrine release was gradually lost. Susceptibility to TI was a unique feature of norepinephrine release induced by sustained ischemia, since release of norepinephrine evoked by anoxia, cyanide intoxication, tyramine, or electrical stimulation remained unaffected by TI. We propose a protective effect of TI on neural tissue, which may reduce norepinephrine-induced damage during prolonged myocardial ischemia.

Animals↗