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T Hohlfeld

Publications and source records attributed to T Hohlfeld.

At least 19 recordsLinked to original sources

Effects of candesartan and perindopril on renal function, TGF-beta1 plasma levels and excretion of prostaglandins in stable renal allograft recipients.

AIMS: Although on account of their nephroprotective effects, ACE inhibitors and angiotensin receptor antagonists appear to be advantageous for patients after renal transplantation, their use in these patients has been limited up to now. This is in part due to the risk of inducing a decrease in the glomerular filtration pressure gradient with subsequent impairment of allograft function. The aim of the present study was to investigate the effects of ACE inhibitors and angiotensin receptor antagonists on renal function, excretion of prostaglandins as a parameter of glomerular hemodynamics and TGF-beta1 plasma levels during an 8-week withdrawal phase in pretreated patients. PATIENTS AND METHODS: Sixteen patients with stable long-term allograft function undergoing therapy with candesartan (group 1) and 16 patients with stable long-term allograft function undergoing therapy with perindopril (group 2) were included in the study. Any signs of chronic allograft dysfunction were defined as exclusion criteria. Renal function, albuminuria, TGF-beta1 plasma levels as well as the excretion of thromboxane B2 and 6-keto-prostaglandin-F-1alpha were monitored during an 8-week withdrawal phase of the angiotensin receptor antagonist or ACE inhibitor, respectively. Normotension was maintained throughout the study period through adjustment of other anti-hypertensive drugs. RESULTS: Creatinine clearance as well as TGF-beta1 plasma levels and the excretion of prostaglandins remained unchanged after discontinuation of candesartan or perindopril. However, after withdrawal of the substances a significant increase in albuminuria was noted in both patient groups throughout the observation period. After 8 weeks, median albuminuria had increased by 63% in group 1 and by 163% in group 2. CONCLUSIONS: We were able to demonstrate that the use of ACE inhibitors and angiotensin receptor antagonists in patients after renal transplantation is safe. Favorable effects of both substances on albuminuria were detectable in patients who showed no signs of chronic allograft dysfunction according to the usual criteria. Therefore, a nephroprotective effect of candesartan as well as of perindopril, is highly probable in patients after renal transplantation. Further investigations regarding routine use in these patients are therefore mandatory.

Adult↗

Recovery of platelet function after discontinuation of clopidogrel treatment in healthy volunteers.

AIMS: To study the recovery of platelet function after discontinuation of clopidogrel treatment in healthy volunteers. METHODS: Ten healthy volunteers were treated with clopidogrel (75 mg day(-1)) for 7 days. CD62P expression and PAC-1 binding were measured by flow cytometry. RESULTS: Adenosine diphosphate (ADP, 30 microM)-induced platelet responses were almost completely inhibited by clopidogrel. After discontinuation of the drug, platelet function gradually increased and complete recovery was seen 7 days after the last clopidogrel dose. The mean difference (95% CI) for ADP-induced PAC-1 binding (fluorescence intensity) between baseline and 7 days after the last dose was 0.01 (0.61, -0.59). Single cell analysis provides direct evidence for an irreversible mode of action of clopidogrel. CONCLUSIONS: This is the first report to directly demonstrate irreversibility of clopidogrel action in humans.

Adenosine Diphosphate↗

[Clopidogrel].

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Arteriosclerosis↗

Reduction of infarct size by selective stimulation of prostaglandin EP(3)receptors in the reperfused ischemic pig heart.

We have previously identified prostaglandin EP(3)receptors in left ventricular myocardium. To assess the potential contribution of this receptor subtype to the anti-ischemic properties of E-type prostaglandins (i.e. PGE(1)), two groups of anesthetized open-chest minipigs were subjected to LAD occlusion (1 h) and reperfusion (3 h). In one group, the selective EP(3)receptor agonist M&B 28.767 (2 pmol/kgxmin) was infused into the LAD from 20 min before ischemia until the end of reperfusion. The other group received vehicle. M&B 28.767 did not alter the systemic hemodynamics, but significantly reduced infarct size (tetrazolium staining) and creatine kinase release by 53% and 48%, respectively. Ischemia-induced ventricular arrhythmias were mostly reduced. Further experiments analysed the effects of EP(3)receptor stimulation on normoxic myocardium. PGE(1), an unselective agonist to all EP receptor subtypes, as well as M&B 28.767 (2 pmol/kgxmin of each into the LAD) reduced the action potential duration (epicardial monophasic electrodes) and almost prevented the inotropic response to intravenous isoprenaline. This dual response is consistent with the EP(3)receptor coupling to an inhibitory G protein. This was confirmed in separate experiments with stable Chinese hamster ovary cell transfectants expressing the porcine EP(3)receptor, where M&B 28.767 inhibited the forskolin-induced increase in cAMP in a concentration-dependent manner. It is concluded that the protection of reperfused ischemic myocardium by E-type prostaglandins is mediated by EP(3)receptors, which seems to involve a combined activation of repolarizing membrane currents and an inhibition of deleterious effects caused by ischemia-induced catecholamine release.

Action Potentials↗

[Experimental study of the effect of pentaerythritol tetranitrate in acute myocardial infarct].

Pentaerithrityltetranitrate (PETN) is an organic nitrate ester with high selectivity to venous vessels and little development of tolerance. Here we report experimental results concerning the hemodynamic and antiischemic effects of intravenously administered PETN. The experiments were performed with anesthetized, open-chest minipigs (25 to 35 kg body weight [bw]). PETN (0.125, 0.25, 0.5 mg/kg bw, i.v.) dose-dependently decreased left ventricular systolic pressure without change in peripheral vascular resistance. A reflex increase in heart rate returned to normal within 20 minutes (0.125 and 0.25 mg/kg). PETN (0.5 mg/kg) also transiently (10 minutes) decreased left ventricular contractility. In additional experiments, myocardial infarction was induced by LAD occlusion (1 hour), followed by reperfusion (3 hours). PETN (0.6 mg/h, i.v.) was administered starting 20 minutes before ischemia until the end of reperfusion. While PETN did not cause hemodynamic changes, infarct size was significantly decreased compared with vehicle (56 +/- 6% vs 83 +/- 3% of area at risk, p < 0.05). Regional contractile function (ultrasound crystals) was completely abolished during ischemia and did not recover during 3 hours reperfusion in control hearts. However, PETN-treated pigs showed partial functional recovery (19 +/- 5%, p < 0.05 vs vehicle) during the first hour of reperfusion. Histologic evaluation revealed a decreased number of granulocytes accumulated in the ischemic myocardium of PETN-treated animals. Accordingly, in-vitro experiments showed a reduction by PETN of the adherence of HL-60 cells differentiated to granulocytes to vascular smooth muscle cells. Therefore, PETN reduced infarct size and improved myocardial function after LAD occlusion and reperfusion. It is concluded that the intravenous administration of PETN might be of advantage in the treatment of acute myocardial ischemia.

Animals↗

Habitual smoking causes an abnormality in platelet thromboxane A2 metabolism and results in an altered susceptibility to aspirin effects.

The present study investigates the effects of aspirin (100 mg every second day for 14 days) on platelet function in nine healthy non-smokers and in nine healthy habitual smokers. There was a significantly (P < 0.05) stronger inhibition of collagen (0.6 microgram/ml)- and ADP (2 microM)-induced platelet aggregation by aspirin in smokers as compared to non-smokers. This difference occurred in the presence of an almost complete (> 95%) inhibition of thromboxane A2 (TXA2) synthesis in both groups. The platelet capacity to generate TXA2 in vitro was significantly reduced in smokers, urinary excretion of TXA2, however, was significantly increased. Thus, the better susceptibility of smokers to anti-aggregatory effects of aspirin is very likely to be related to a chronic smoking-induced alteration of platelet TXA2 system. Cessation of smoking should, therefore, be encouraged.

Adenosine Diphosphate↗

Influence of mycophenolic acid and FK-506 on human platelet activation in vitro.

BACKGROUND/AIM: FK-506 (FK) and mycophenolic acid (MPA) are immunosuppressive agents used in kidney transplant recipients. Their effect on posttransplant thromboembolic complications is either controversial (FK) or has not been described (MPA). Thromboembolic events are among the consequences of platelet hyperaggregability which can be identified by measuring platelet aggregation. The aim of this study was to evaluate the in vitro effects of MPA and FK upon platelet activation in healthy subjects. METHODS: Platelet-rich plasma from healthy volunteers (n = 18) was incubated with FK (70 ng/ml), FK vehicle, and MPA (30 microg/ml) before platelet aggregation was induced by the platelet agonists adenosine diphosphate (2 and 5 microM) and collagen 0.5 and 1.0 microg/ml). Aggregation was measured by recording the optical density. RESULTS: MPA resulted in a significant decrease in the platelet response to collagen (1.0 microg/ml) in platelet-rich plasma, whereas FK significantly increased platelet aggregation in response to collagen (0.5 microg/ml). The vehicle of FK had no influence on platelet aggregation with either agonist. CONCLUSIONS: The decreased platelet-activating response following preincubation with MPA may favor its use in kidney transplant recipients to reduce thromboembolic events. The FK-induced enhancement of platelet aggregation shown in vitro may lead to thromboembolic complications in transplant recipients.

Adenosine Diphosphate↗

Analysis of a porcine EP3-receptor: cloning, expression and signal transduction.

A cDNA clone, encoding a complete porcine EP3 receptor, was isolated from a porcine heart cDNA library. The deduced amino acid sequence revealed a protein of 387 amino acid residues with an estimated molecular weight of 43 kD and strongest homology to the human EP3-II receptor (84% identity on protein level). Ligand binding studies with transfected COS-7 cells, expressing the porcine receptor, showed displacement of [3H]PGE1 with the EP3-specific agonist M&B 28.767, the EP1/EP3-agonist sulprostone but not with the EP2-specific agonist butaprost. Stimulation of transfected CHO cells with M&B 28.767 resulted in inhibition of forskolin-induced cAMP formation, suggesting coupling to an inhibitory G protein. Agonist-induced translocation of the transcription factor NFkappaB into the nucleus of transfected CHO cells was demonstrated by Western blot analysis, indicating that these EP3 receptors modulate NFkappaB-dependent cellular signal transduction. Analysis of the genomic organization identified the major transcription initiation site at about 160 bp upstream of the ATG start codon. The 800-bp 5' flanking region contains a variety of putative cis-acting regulatory elements, including binding sites for AP2, SP1 and MyoD (E-box). The present data will now allow further studies on EP3 receptor-mediated signal transduction and its regulation.

Amino Acid Sequence↗

Acetylsalicylic acid enhances arrhythmogeneity in a model of local ischemia of isolated rabbit hearts.

Acetylsalicylic acid often is used in the treatment and prophylaxis of regional myocardial ischemia and infarction. However, only little is known about its electrophysiological effects and on possible proarrhythmic effects of the drug. Thus, the aim of this study was to evaluate the electrophysiological effects of acetylsalicylic acid in normal isolated saline perfused rabbit hearts and in hearts submitted to regional ischemia. Isolated saline perfused rabbit hearts were treated with increasing concentrations of acetylsalicylic acid (0.05, 0.1, 0.5 and 1 microM). The epicardial activation and repolarisation process were analysed using an epicardial mapping (256 unipolar leads). Activation and repolarisation time were determined for each electrode from which data the 'breakthrough-points' of epicardial activation were determined. At each electrode an activation vector was calculated giving the direction and velocity of the local excitation wave. The similarity of selected heart beats compared to the control was evaluated by determination of the percentage of identical breakthrough-points and of similar vectors (deviation < or = 5 degrees). At each electrode the local epicardial action potential duration was assessed as the activation recovery interval and the standard deviation of the epicardial action potential duration (of 256 leads, = dispersion) was determined. In a second series of experiments 30 min regional ischemia was induced by occlusion of the left descendent coronary artery followed by 30 min reperfusion in the absence or presence of 0.5 microM acetylsalicylic acid or 1 micro/M indomethacin. The degree of ischemia was assessed by the reduction in coronary flow, by the degree of ST-elevation and by the area in which ST-elevation was registered. Under non-ischemic conditions acetylsalicylic acid led to an increase in the epicardial action potential duration (7%), a decrease in the breakthrough-point similarity (by 10%) and vectorfield similarity (by 15%). In control hearts submitted to regional ischemia the similarity of the vectorfields and of the breakthrough-points, as well as the duration of the epicardial action potentials were markedly reduced while the dispersion was greatly increased. In the ischemic region there was a significant ST-deviation from the isoelectrical line. These changes of ST-segments were significantly enhanced by 0.5 microM acetylsalicylic acid, so that in all (7/7) acetylsalicylic acid treated hearts sustained ventricular fibrillation occurred after 20 min ischemia, whereas in the absence of acetylsalicylic acid fibrillation was found in only 2/7 hearts during reperfusion and not during ischemia. 1 microM indomethacin did not cause these changes. In all ischemia/reperfusion series of experiments the reduction in coronary flow and left ventricular pressure by ischemia was of the same degree and we did not observe significant differences in the size of ischemic area. Using 14C-acetylsalicylic acid, an accumulation of acetylsalicylic acid in the ischemic region could be observed. From these results we conclude, that acetylsalicylic acid can induce ventricular fibrillation. Thus, in acute myocardial ischemia, acetylsalicylic acid may have (besides the well known and desired antiaggregatory effects) electrophysiologic side effects which seem to be proarrhythmic in regional ischemia at least in this model.

Animals↗

Expression, function, and regulation of E-type prostaglandin receptors (EP3) in the nonischemic and ischemic pig heart.

The action of prostacyclin, prostaglandin E1 (PGE1), and their mimetics on myocardial function includes changes in contractility, electrophysiological properties, and protection from injury caused by transient myocardial ischemia. This study was undertaken to investigate the basic properties of myocardial E-type prostaglandin (EP) receptors. Ligand binding studies using an enriched preparation of sarcolemmal membranes prepared from pig hearts revealed a single class of binding sites for [3H]PGE1, with a Kd of 3.7 nmol/L and a Bmax of 92 fmol/mg protein. Competition experiments indicated highest affinity for EPs, suggesting an EP receptor. In addition, the EP receptor subtype-selective agonists sulprostone (EP1 and EP3) and M&B 28.767 (EP3) were active, suggesting the presence of an EP3 receptor subtype. PGE1 stimulated sarcolemmal GTPase and inhibited sarcolemmal adenylyl cyclase activity, indicating EP3 receptor coupling to an inhibitory G protein (Gi). Additional in vivo experiments showed that intracoronary infusion of PGE1 (1 nmol/min) decreased isoprenaline-stimulated left ventricular contractile activity without altering systemic vascular resistance. This inhibition of beta-adrenergic effects is compatible with the known myocardial anti-ischemic action of prostaglandins. Further experiments examined EP3 receptor density and G-protein coupling in sarcolemma from ischemic and reperfused ischemic myocardium. In anesthetized open-chest minipigs, occlusion of the left anterior descending coronary artery for 60 minutes increased EP3 receptor density by 50%, whereas receptor affinity was unchanged. This upregulation was prevented by pretreatment with colchicine (2 mg/kg i.v.), indicating microtubule-dependent receptor externalization. Northern hybridization showed comparable EP3 receptor mRNA expression in control and ischemic myocardium. The increase of receptor protein was reversed during 60 minutes of reperfusion. G-protein coupling proved to be intact in ischemic and reperfused ischemic myocardial tissue, as shown by preserved GTP-gamma-S-induced decrease of [3H]PGE1 binding. These data demonstrate for the first time that myocardial receptors for PGE1 belong to the EP3 subtype. The properties of this receptor include inhibition of adenylyl cyclase and upregulation during regional myocardial ischemia, suggesting an involvement in the anti-ischemic activity of E- and I-type prostaglandins.

Alprostadil↗

Platelet PGI2 receptor affinity is reduced in pre-eclampsia.

Prostacyclin (PGI2) receptors were studied in platelet membrane preparations from women with normal pregnancy, pregnancy-induced hypertension (PIH) or pre-eclampsia. Patient groups showed no differences in gestational week at delivery. A markedly lower birth weight, however, was found in pre-eclampsia. No differences between groups could be detected in platelet PGI2 receptor number. In contrast, the binding affinity to the PGI2 mimetic iloprost was considerably reduced in pre-eclampsia, whereas receptor affinity between PIH and normal pregnancy did not differ significantly.

Adult↗

Endothelin 1 mediates ex vivo coronary vasoconstriction caused by exogenous and endogenous cytokines.

Treatment of rats with cytokines has been associated with an increase in the circulating levels of endothelin 1 (ET-1). Here we show that administration of tumor necrosis factor alpha (TNF-alpha; 4 micrograms.kg-1) to anesthetized rats caused within 15 min a strong elevation in the circulating levels of ET-1. This was associated with a striking coronary vasoconstriction in hearts from these animals when they were removed and perfused in vitro by the Langendorff technique. This vasoconstriction was largely overcome by treatment with either the endothelin type A (ETA) receptor antagonist FR 139317 or antibody against ET-1. Furthermore, it was mimicked by in vivo exposure to exogenous ET-1. Endogenously produced TNF-alpha may also cause such a coronary vasoconstriction, for treatment with interleukin 2 (600 micrograms.kg-1) produced an increase in coronary perfusion pressure that correlated with the increases in circulating TNF-alpha. This coronary vasoconstriction was substantially reversed by treatment either with antibody against TNF-alpha or with FR 139317. We suggest, therefore, that cytokine-driven changes in the production of ET-1 are key events in the development of vascular pathologies.

Animals↗

Regulation of prostaglandin receptors in myocardial ischemia.

Sarcolemmal membranes from pig hearts express a homogenous class of binding sites for [3H]PGE1. Competition binding studies with EP receptor suptype selective ligands suggest an EP3 receptor subtype. The GTP analogue GTP gamma S reduced affinity without changing binding capacity, indicating a G protein coupled EP3 receptor. Regional myocardial ischemia (60 min) in anesthetized, open-chest pigs caused a 50% increase of the number of binding sites while GTP gamma S still decreased [3H]PGE1 binding, suggesting intact G protein coupling. Myocardial ischemia may, therefore, modify myocardial actions of prostaglandins.

Animals↗

Antiatherosclerotic effects of oral naftidrofuryl in cholesterol-fed rabbits involve inhibition of neutrophil function.

We investigated the action of oral naftidrofuryl, a serotonin (5-HT2)antagonist, on atheromatous plaque formation, endothelial function, and neutrophil activity in cholesterol-fed (1% for 12 weeks) rabbits. Cholesterol feeding caused almost complete (84 +/- 4%) coverage of the aortic surface with atheromas and a marked intimal thickening. The endothelium-dependent relaxation to acetylcholine (ACh 1 nM-10 microM) and substance P (30 nM) was considerably reduced, whereas the relaxing effect to the endothelium-independent nitric oxide donor linsidomine (SIN-1) (100 microM) was unchanged. Treatment of hypercholesterolemic rabbits with naftidrofuryl (50 mg/kg body weight) resulted in a marked (54 +/- 6%, p < 0.05) reduction in aortic plaque formation. Endothelium-dependent relaxation to ACh was significantly improved in rings of both thoracic aorta: 33 +/- 5 versus 14 +/- 5% (p < 0.05) and abdominal aorta 68 +/- 9 versus 37 +/- 10% (p < 0.05). Similar results were obtained with substance P, but the responses to SIN-1 were unchanged. Zymosan-induced, luminol-enhanced chemiluminescence of polymorphonuclear leukocytes (PMN) was markedly stimulated in cholesterol-fed rabbits. Naftidrofuryl reduced this hyperreactivity to that of control rabbits. There was no change by naftidrofuryl in any of these parameters in control rabbits, precluding a direct action of the compound in nonhypercholesterolemic conditions. These data demonstrate significant endothelium-protective actions of long-term oral naftidrofuryl in cholesterol-fed rabbits that involve inhibition of cholesterol-induced neutrophil activation.

Acetylcholine↗