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Biomedical subjects

R Gerzer

Publications and source records attributed to R Gerzer.

At least 37 records · Page 2Linked to original sources

Urodilatin, a kidney-derived natriuretic factor, is excreted with a circadian rhythm and is stimulated by saline infusion in man.

Urodilatin is a recently described, presumably kidney-derived member of the atrial natriuretic peptide family. The first data on a physiological role for urodilatin in the regulation of sodium homeostasis in humans is presented in this work. Urinary urodilatin excretion during a 9-day study in healthy volunteers paralleled the circadian rhythm in urinary sodium excretion. Furthermore, urodilatin and sodium excretion were slightly increased during the first 3 h after an acute isotonic saline infusion and about three-fold elevated during 14 h postinfusion; both parameters remained closely correlated up to 28 h postinfusion. These data suggest that urodilatin is involved in the circadian regulation of sodium excretion and is a physiological regulator of long-term sodium excretion after an acute saline infusion.

Adult

Acute effects of beta-adrenergic stimulation with dobutamine on the plasma levels of atrial natriuretic peptide and cyclic guanosine monophosphate in patients with chronic heart failure.

In eight patients (63 +/- 7.9 years) with angiographically documented dilated cardiomyopathy, we studied the acute effects of a beta-adrenergic stimulation with dobutamine on the plasma levels of atrial natriuretic peptide (ANP) and cyclic guanosine monophosphate (cGMP). For this purpose, a four-point dose-response curve was prepared for dobutamine starting with an initial dose of 2.5 micrograms kg-1 min-1, which was increased by 2.5 micrograms kg-1 min-1 at a time up to altogether 10 micrograms kg-1 min-1. Each stage lasted 15 min. ANP and cGMP were determined from the mixed venous blood before the start (t0), at 5 micrograms kg-1 min-1 after 30 min (t1), at 10 micrograms kg-1 min-1 after 60 min (t2) and after subsidence of the drug effect after 90 min (t3). ANP dropped from 380 +/- 151 pg ml-1 (normal range up to 55 pg ml-1) by 38% to 235 +/- 90 pg ml-1 after 30 min and by another 17% to 171 +/- 45 pg ml-1 after 60 min. After the effect of dobutamine had subsided, an increase by 41% to 325 +/- 139 was reached. There was a parallel drop of the mean cGMP level from 5.4 +/- 1.4 pmol.ml-1 by 28% to 3.89 +/- 1.4 pmol.ml-1 (30 min) and by another 14% to 3.2 +/- 0.7 pmol.ml-1 (60 min). After 90 min it was 18% below the initial value, being 4.4 +/- 1.3 pmol.ml-1.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

Plasma hormones in patients with chronic heart failure before and early after orthotopic heart transplantation.

The aim of this prospective study was to investigate both vasoconstricting and vasodilating plasma hormones and plasma factors regulating the circulatory homeostasis in patients with endstage congestive heart failure before and early after orthotopic heart transplantation and to evaluate factors which may influence their regulation. 19 patients with endstage congestive heart failure were analyzed serially before and 3-4 weeks after orthotopic heart transplantation. A significant decrease in plasma concentrations of noradrenaline (457 +/- 202 vs. 204 +/- 88 pg/ml; p less than 0.001), adrenaline (43 +/- 32 vs. 26 +/- 11 pg/ml), atrial natriuretic peptide (341 +/- 218 vs. 139 +/- 64 pg/ml; p less than 0.005), cyclic guanosine monophosphate (13.8 +/- 7.8 vs. 6.6 +/- 2.2 pmol/ml, p less than 0.05) and in plasma renin activity (16.6 +/- 13.0 vs. 2.0 +/- 2.4 ng AI/ml/h; p less than 0.01) was found after transplantation. The data indicate that the marked increase in plasma catecholamine concentrations and renin activity in endstage congestive heart failure is reversible as early as 3-4 weeks after heart transplantation. This is most likely the consequence of normalization of cardiac function. While elevation of atrial natriuretic peptide and cyclic guanosine monophosphate as well as increased vasoconstrictor activity in heart failure appear to be related to impaired ventricular function, the persistent moderate elevation of both vasodilating agents after transplantation may be compensatory to counteract cyclosporin-induced arterial hypertension after heart transplantation.

Adult

[Thrombocyte aggregation and fibrinolysis in healthy probands treated with molsidomine, isosorbide-5-mononitrate and placebo].

Twelve healthy volunteers received either a single oral dose of molsidomine (4 mg), isosorbide-5-mononitrate (ISMN, 20 mg), or placebo in a randomized, double-blind fashion. Blood was drawn prior to, as well as 30 and 60 min after intake of the respective drug. Platelet aggregation and the plasma levels/activity of plasminogen activator (tPA) and its inhibitor (PAI-1) were determined. In contrast to ISMN and placebo, molsidomine provoked a significant reduction in platelet aggregability. No alteration in plasma tPA concentrations was observed independent of whether molsidomine, ISMN, or placebo was applied. However, plasma PAI-1 activity was considerably reduced following molsidomine, but not altered following ISMN or placebo. We conclude that a single oral dose of molsidomine, but not of ISMN inhibits platelet aggregation and increases the fibrinolytic potential in healthy volunteers.

Adult

[Effect of molsidomine on thrombocyte aggregation in unstable angina pectoris after parenteral administration of nitroglycerin].

In the present study, we took whole blood from 12 patients treated with heparin, acetylsalicylic acid, and nitroglycerin i.v., to measure the aggregability of platelets after acute and prolonged i.v. application of nitroglycerin and after oral application of molsidomine. Aggregation was induced by platelet-activating-factor (PAF). As a measure for platelet aggregability, we determined the PAF-concentration needed to induce irreversible aggregation (threshold dose) and the maximum slope of the aggregation curve with 50 nM PAF. At the beginning, 1 h after the onset of nitroglycerin infusion (3 mg/h), 24 h and 1 h after increasing the nitroglycerin dose (5 mg/h), neither the maximum slope nor the threshold dose for PAF-induced aggregation differed significantly. However, after additional oral application of molsidomine the maximum slope of the aggregation curve decreased significantly. These data indicate that molsidomine decreases the aggregability of platelets in patients, even after pretreatment with heparin, acetylsalicylic acid, and nitroglycerin.

Angina, Unstable

[Platelet aggregation with SIN 1: comparison with isosorbide-5-mononitrate and acetylsalicylic acid].

SIN 1, the bioactive metabolite of molsidomine, not only appears to lack the problem of inducing nitrate tolerance, but also exerts antiaggregatory and fibrinolytic properties. These effects, which either are not or only in part shared by the drug isosorbide-5-mononitrate, might be beneficial in the prevention of thromboembolic complications in cardiovascular disease. In contrast to the effects of acetylsalicylic acid, SIN 1 already inhibits aggregation during the first phase of aggregation, and it inhibits aggregations induced by agonists that are not or only marginally influenced by acetylsalicylic acid (such as the aggregation induced by platelet activating factor). Thus, the antiaggregatory effects of molsidomine cannot replace the effects of acetylsalicylic acid, while a combination of both drugs might be of benefit in the treatment of patients with cardiovascular disease.

Aspirin

Cyclic nucleotides differentially regulate the synthesis of tumour necrosis factor-alpha and interleukin-1 beta by human mononuclear cells.

Recent reports have shown that phosphodiesterase (PDE) inhibitors suppress production of tumour necrosis factor-alpha (TNF-alpha) in mouse macrophages. In the present study we show that theophylline, pentoxifylline and 3-isobutyl-1-methylxanthine markedly suppress the lipopolysaccharide (LPS)-induced synthesis of TNF-alpha (also) in human mononuclear cells. This effect is selective for TNF-alpha since up to several-fold higher concentrations of these PDE inhibitors do not affect production of interleukin-1 beta (IL-1 beta) in the same system. The observed effect of PDE inhibitors appears to be mediated by accumulation of cAMP since (i) addition of PDE inhibitors increases cAMP while cGMP levels are only marginally elevated; (ii) raising cAMP by another mechanism (enhanced formation induced by prostaglandin E2; PGE2) leads to a similar suppression of TNF-alpha production; and (iii) raising cGMP by activating the soluble guanylate cyclase by 3-morpholinosydnonimine (SIN 1) does not inhibit TNF-alpha synthesis. However, SIN 1 suppressed the synthesis of IL-1 beta. Selective suppression of TNF-alpha synthesis by PDE inhibitors may contribute to their beneficial effects in animal models of septic shock or lung injury and may thus have clinical implications.

Cell Line

Kinetic characterization of atrial natriuretic factor-sensitive particulate guanylate cyclase.

The present investigation describes kinetic characteristics of membrane-bound and Triton X-100-solubilized atrial natriuretic factor (ANF)-sensitive guanylate cyclase from bovine adrenal cortex. The kinetic analysis of both enzyme forms suggests that in the presence of manganese, ANF induces or stabilizes at least two apparent GTP*Mn2(+)- and in addition two Mn2(+)-binding sites. Addition of the natriuretic drug amiloride favors this state. ATP increases the vmax in the presence of ANF for GTP*Mg2+, but not for GTP*Mn2+ as a substrate. With GTP*Mg2+, amiloride has no effect on basal or ANF-stimulated activity, but slightly reduces the effect of ATP. Under all conditions tested, the enzyme follows regular Michaelis-Menten kinetics in the presence of Mg2+ and exhibits positive cooperativity with Mn2+. Positive cooperativity is also retained after Triton extraction. The results indicate that Triton extraction has no major influence on the kinetic properties of particulate guanylate cyclase when the extraction procedure is done carefully. The data also support the suggestion that multiple interactions of subunits might occur upon activation of the enzyme by ANF in the presence of Mn2+.

Adrenal Cortex

Effects of a small bolus dose of ANF in healthy volunteers and in patients with volume retaining disorders.

Thirty-seven patients with volume-retaining disorders (liver cirrhosis with ascites, n = 8; heart failure NYHA III-IV, n = 12; endstage renal failure, n = 17) and twelve healthy age-matched controls were given a small dose (33 micrograms) of hANF (human atrial natriuretic factor). We tested the resulting hemodynamic and renal effects as well as the effect on plasma cyclic GMP levels and compared them with the properties of platelet ANF receptors. The ANF injection evoked an increase in cyclic GMP plasma levels of 19.3 +/- 2.2 nM in healthy controls. This increase tended to be smaller in the cirrhosis group (15.5 +/- 3.3 nM) and in the heart failure group (16.8 +/- 2.3 nM) than in the dialysis group (20.5 +/- 2.5 nM). The invasion rates of cyclic GMP were comparable in all groups, but the evasion rates increased more in the heart failure and endstage renal failure groups (27.9 +/- 7.7 min and 26.1 +/- 3.4 min, respectively) than in the cirrhosis and control groups (14.9 +/- 1.9 min and 14.2 +/- 1.9 min, respectively). Patients with endstage renal failure and congestive heart failure showed a smaller decrease in diastolic blood pressure than controls and patients with liver cirrhosis. Renal actions of ANF were diminished in cirrhosis and heart failure patients. Binding capacities of platelet ANF receptors were higher in the control group (12.2 +/- 1.5 receptors/cell) than in the patient groups (cirrhosis, 7.8 +/- 1.2; endstage renal failure, 8.0 +/- 0.9; heart insufficiency, 8.0 +/- 1.0 receptors/cell), with no differences among the patient groups. Binding affinities were not significantly different. Correlation analysis showed that the relationship between the actions of ANF and the increases in plasma cyclic GMP levels is loose and cannot predict the hemodynamic or renal effects of exogenous ANF in a given patient. Although the behavior of plasma cyclic GMP levels fails to predict the responsiveness of the body to ANF in a given patient, it does reflect the differences between the patient groups and the control group. In contrast, we found no correlation between the properties of platelet ANF receptors and ANF action.

Adult

Effect of molsidomine on ex vivo platelet aggregation and plasma guanosine 3':5'-cyclic monophosphate levels in healthy volunteers.

To find out whether 3-morpholino-sydnonimine (SIN 1), the active metabolite of molsidomine, exerts its antiaggregatory effects not only in vitro but also in vivo, we tested ex vivo aggregation before and after intravenous application of molsidomine in healthy volunteers. We also measured plasma levels of guanosine 3':5'-cyclic monophosphate (cyclic GMP) as SIN 1, the bioactive metabolite of molsidomine, becomes effective via activation of soluble guanylate cyclase. In eight out of ten subjects molsidomine had an inhibitory effect on platelet aggregation and a higher threshold concentration of platelet-activating factor was required after molsidomine application to induce irreversible aggregation. Despite the effect on platelets, plasma cyclic GMP levels did not increase. These results suggest that the nitric oxide-containing SIN 1 inhibits platelet aggregation not only in vitro but also in vivo and that this property can be a beneficial effect in antianginal therapy.

Adult

Effect of prolonged physical exercise on fluid regulating hormones.

Sixteen well-trained young men performed a test marathon to study the behaviour of atrial natriuretic peptide (ANP) and its second messenger cyclic guanosine monophosphate (cGMP) in relation to changes in plasma volume (PV) and plasma proteins, arginine vasopressin (AVP), renin, aldosterone, potassium and sodium. Blood samples were drawn under standardized conditions before and immediately after the run, as well as 3 h and 31 h after the run. Directly after the run, a two-and-a-half fold increase of plasma ANP and a twofold increase of plasma cGMP level were found, whereas PV decreased significantly by 7.4%. At this time renin-, aldosterone- and AVP-secretion were much stimulated. Thirty-one hours after the run, PV was markedly greater (10%) than before the race, whereas plasma proteins had returned to pre-exercise values. The ANP and cGMP were not significantly altered compared to the pre-race values. We have concluded that ANP and the other volume-regulating hormones may play an important role during and immediately after prolonged physical exercise but not in the longer recovery period. It seems that an influx of plasma proteins into the vascular space is responsible for the increased PV at this time.

Adult

Assessment of dry body-weight in haemodialysis patients by the biochemical marker cGMP.

We investigated whether cGMP might be a suitable marker of ideal weight in chronic haemodialysis patients. In 20 patients on chronic haemodialysis (10 males, 10 females, mean age 55.5 +/- 7.4 years; mean interdialytic weight gain 2.4 +/- 1.1 kg) we determined plasma ANP and cGMP values before and after several haemodialysis treatments. ANP and cGMP before haemodialysis were markedly elevated (ANP 255 +/- 190 pg/ml; cGMP 28.6 +/- 16.2 pmol/ml). A significant decrease was found after haemodialysis (ANP 169 +/- 88 pg/ml; cGMP 13.5 +/- 7.4 pmol/ml). These values were still well above normal. There was a significant positive correlation between excessive body-weight delta P (difference between actual weight and estimated ideal weight), indicating fluid overload and ANP before (r = 0.57; P less than 0.001) and after haemodialysis (r = 0.47; P less than 0.001) as well as cGMP before (r = 0.42; P less than 0.01) and after haemodialysis (r = 0.85; P less than 0.0001). With cGMP and delta P after haemodialysis, the correlation appeared to be close enough for clinical application. All patients with a cGMP value of 18 pmol/ml or more after haemodialysis had an excessive body-weight of at least 0.5 kg. We conclude from these data that the plasma cGMP value determined immediately after haemodialysis is a sensitive marker for hyperhydration in patients with end-stage renal disease.

Atrial Natriuretic Factor

Evidence that urodilatin, rather than ANP, regulates renal sodium excretion.

Urodilatin, a closely related member of the atrial peptide family, was discovered recently in human urine. Urodilatin (ANP 95-126) is believed to be produced within the kidney and is natriuretic; evidence indicates that most of the ANP-like immunoreactivity in the kidney elutes with urodilatin rather than with ANP. Moreover, urodilatin is little affected by renal enzymes that inactivate atriopeptin. To determine the relative importance of urodilatin versus ANP in the regulation of renal sodium excretion, we studied intact and cardiac-denervated conscious dogs under three experimental conditions: (1) spontaneous sodium excretion, (2) intravenous infusion of saline, and (3) left atrial distension. Urodilatin was measured in urine with a newly developed radioimmunoassay that selectively measures urodilatin without any cross-reactivity with alpha-human atrial natriuretic peptide (alpha-hANP); alpha-hANP was measured in plasma by radio-immunoassay because it is rapidly inactivated in the kidney by enzymatic activity. In each group of experiments, sodium excretion correlated better with urodilatin than it did with circulating alpha-hANP. The correlation coefficient (r value) between urodilatin excretion and renal sodium excretion exceeded 0.8 in 13 of 18 experiments and was below 0.6 in only 2 experiments. On the other hand, the correlation between circulating atriopeptin and sodium excretion exceeded 0.8 in only 3 of 18 experiments and was below 0.6 in 10 experiments. A negative correlation between plasma atriopeptin and renal sodium excretion was observed during left atrial distension in the cardiac-denervated dogs. These results and other considerations suggest that urodilatin, rather than atriopeptin, is the member of the ANP family that is primarily involved in the regulation of renal sodium excretion.

Animals

[Acute reduction of increased atrial natriuretic peptide level and cyclic guanosine monophosphate in patients with chronic heart failure caused by beta-adrenergic stimulation with dopexamine hydrochloride. Correlation with hemodynamic parameters].

In eight patients (63 +/- 8 years) with dilated cardiomyopathy, the acute effects of positive inotropic stimulation with dopexamine hydrochloride, a beta-2-agonistic and DA1-dopaminergic catecholamine, on the plasma levels of ANP and cGMP were tested. A four-point dose-response curve was prepared for dopexamine from 1 microgram/kg/min to 4 micrograms/kg/min. Each infusion stage lasted 15 min; ANP and cGMP were taken from the mixed venous blood. Hemodynamic parameters were determined by a Swan-Ganz catheter; cardiac output was determined by thermodilution. ANP dropped by 40% from 348 +/- 124 pg/ml to 208 +/- 70 pg/ml (p less than or equal to 0.01), while cGMP dropped by 25% from 4.8 +/- 1.6 pmol to 3.6 +/- 1.3 pmol/ml at the time of maximum hemodynamic effect after 1 h. Linear regression analyses revealed a significant relationship (p less than or equal to 0.01) between ANP as the independent variable and cGMP as the dependent variable. The hemodynamic determinants of the ANP concentration proved to be--independently of each other--the pulmonary capillary wedge pressure (p less than or equal to 0.01) and the mean right atrial pressure (p less than or equal to 0.01). The results show that chronically elevated ANP and cGMP levels can be strikingly reduced within a short time, whereby ANP and cGMP show similar kinetics. The results suggest a use of ANP and cGMP as humoral parameters in the therapy control of chronic heart failure.

Adrenergic beta-Agonists

[Renal effects of ibopamine in comparison with furosemide in patients with mild heart failure].

Ibopamine is a novel oral dopamine analogue with positive inotropy and diuretic effects. In a double-blind, randomized study, the drug was investigated in 10 patients (mean age 49 +/- 10 years, six male, four female) with mild heart failure (NYHA classes II: six patients, III: four patients). Effects of single oral doses of 200 mg ibopamine, of 40 mg furosemide, and of 200 mg ibopamine plus 40 mg furosemide were compared in each patient at 3-day-intervals. One h after application, systolic and diastolic blood pressure increased from 119 +/- 11 to 124 +/- 8, and from 75 +/- 4 to 80 +/- 6 mm Hg (p less than 0.01) in the ibopamine group, while changes in both other groups and changes of the heart rate were insignificant. During 2 h after drug ingestion urinary flow was raised from 124 +/- 81 to 227 +/- 166 ml/2 h in the ibopamine group (p less than 0.05), while the application of furosemide (with or without ibopamine) resulted in several fold increases of urinary flow. After ibopamine, the 2-h-creatinine-clearance rose from 123 +/- 73 to 130 +/- 85 ml/min (not significant). Sodium excretion remained unchanged by ibopamine, potassium excretion was increased from 2.9 +/- 1.7 to 4.0 +/- 3.3 mmol/h (p less than 0.05), while effects of furosemide were several fold of those of ibopamine. Atrial natriuretic factor concentrations in plasma increased significantly after ibopamine and after ibopamine plus furosemide (p less than 0.01), but remained constant after furosemide alone.(ABSTRACT TRUNCATED AT 250 WORDS)

Atrial Natriuretic Factor

[Inhibition of platelet aggregation by endothelium-derived relaxing factor-like agents].

In the last years, an inhibition of aggregation by organic nitrates or by similar drugs has been demonstrated by some authors, but has also been ruled out by other authors. The present work was thus performed to study a possible inhibition of platelet aggregation by the respective drugs in comparison with the molecular mechanism of action of these drugs, that is activation of soluble guanylate cyclase. We found that in vitro, organic nitrates activate soluble guanylate cyclase and inhibit platelet aggregation only in millimolar concentrations, while sodium nitroprusside and SIN-1, the active metabolite of molsidomine, influence these parameters in micromolar concentrations. This difference between the actions of the O-NO2-containing nitrates and the NO-containing compounds nitroprusside and SIN-1 is, however, not apparent ex vivo. Ex vivo, not only molsidomine, that is converted in the liver to SIN-1, but also isosorbide-5-mononitrate inhibited platelet aggregation. Thus, it appears that organic nitrates can in vivo release nitric oxide in a tissue other than platelets in amounts that are high enough to inhibit platelet aggregation. These studies suggest, that an antiaggregatory effect may participate in the clinical actions not only of drugs that directly resemble EDRF, such as SIN-1, but also by the organic nitrates. However, since nitrates cannot be activated directly by the platelets, it appears that also the antiaggregatory effects of nitrates, but not of molsidomine, underlie the mechanisms of tolerance development.

Animals

Hormonal changes after parabolic flight: implications on the development of motion sickness.

Twenty-two different humoral parameters including stress-, gastrointestinal- and volume-regulating hormones were measured before and within 45 min after parabolic flight maneuvers of twenty healthy adult subjects. We compared hormonal data of motion sickness-affected participants with those unaffected. Changes in cortisol and vasoactive intestinal peptide plasma levels were significantly different (p less than 0.002 and p less than 0.004) between the two groups with increasing plasma levels of both hormones during motion sickness but decreasing levels within the control group. Growth hormone and prolactin plasma levels increased by 400% and 115% within the motion sickness-affected group and to a smaller degree (120% and 40% increases, respectively) within the control group, while ACTH levels were almost unchanged within both groups. Pancreatic polypeptide and gastrin plasma levels as well as plasma levels of insulin and C-peptide were significantly decreased within both groups after the parabolic flight. Plasma renin, aldosterone, atrial natriuretic peptide and cyclic GMP levels were unchanged within the control group. Within the motion sickness-affected group, plasma renin and aldosterone levels were decreased and atrial natriuretic peptide levels increased after the flight. Humoral parameters of the thyroid gland were neither changed within the groups nor different between the groups. The present data confirm previous results that increases in plasma levels of certain stress hormones participate in motion sickness. Furthermore, increases in vasoactive intestinal peptide levels participate in motion sickness. These increases could explain some of the gastrointestinal symptoms in motion sickness and might serve as markers for a discrimination between regular stress and motion sickness.

Female