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Biomedical subjects

R Pacher

Publications and source records attributed to R Pacher.

At least 55 records · Page 3Linked to original sources

Quality of life in patients with chronic heart failure: a randomized controlled trial of changes induced by a regular exercise program.

The aim of this study was to evaluate the impact of a three-month exercise program on the perception of quality of life in patients with severe chronic heart failure. In a randomized controlled setting, 27 patients with a left ventricular ejection fraction of 18.1 +/- 8.0% were entered into the study. The training group performed aerobic exercises for three hours/week while the control group continued their usual activities of daily living. Quality of life was measured using the German version of the MOS SF-36. Two patients required a change in their drug regimen and were therefore withdrawn from the study. Twenty-five patients completed the study. In the exercise group the perception of quality of life improved significantly in the domains of vitality (p = 0.0001), physical role fulfillment (p = 0.001), physical (p = 0.02) and social (p = 0.0002) functioning. Exercise was effective in increasing peak oxygen uptake and exercise time (p < 0.01). Only weak correlations were registered between parameters of physical performance and quality of life domains. The results of the study indicate that aerobic exercise can improve the perception of quality of life in patients with severe chronic heart failure.

Chronic Disease↗

Effects of prostaglandin E1, dobutamine and placebo on hemodynamic, renal and neurohumoral variables in patients with advanced heart failure.

Excessive neurohumoral activity remains a major burden to the circulation of patients with advanced heart failure. Prostaglandin E1 (PGE1), a balanced i.v. vasodilator, was shown to elicit favorable hemodynamic and clinical effects in this cohort. A prospective randomized parallel group trial was performed to evaluate acute, intermediate and chronic changes in hemodynamic, neurohumoral and renal variables in response to PGE1, dobutamine and placebo. Thirty patients with class III and IV heart failure and low cardiac index (mean 1.9 l/min/m2) two hours after oral drugs including high dose enalapril were included. A 7-day-infusion of PGE1 (16.5 +/- 5 ng/kg/min, range 10 to 20 ng/kg/min, group A n = 10), dobutamine (4.5 +/- 1 micrograms/kg/min, range 2.5 to 5 micrograms/kg/min, group B n = 10) or placebo (saline, group C n = 10) was administered via a central venous access line after stepwise titration until intolerable side effects developed with PGE1 or a 20% increase in cardiac index occurred with dobutamine, which was continued on this dose throughout while PGE1 was maintained on 50% peak dose. Hemodynamic data were collected at baseline, at peak dosages, after 12 hours and after 7 days. Of neurohumoral variables plasma norepinephrine, big endothelin (Big ET) and atrial natriuretic peptide (ANP) were simultaneously evaluated using RIA methods. Renal plasma flow (by paraaminohippurate clearance) and glomerular filtration rate (by iothalamate clearance) was measured prior to and during the infusions (after 12 hours and after 7 days). At peak dose and at 12 hours significant drops from baseline of mean pulmonary artery pressure, pulmonary capillary wedge pressure and systemic vascular resistance were observed which were accompanied by a rise in cardiac output with both PGE1 and dobutamine. These changes were maintained through 7 days when pulmonary vascular resistance levels also fell with both active drugs. Blood pressure did not change throughout, but PGE1 increased heart rate slightly at 12 hrs. Both PGE1 and dobutamine enhanced renal plasma flow after 7 days, but only PGE1 decreased glomerular filtration fraction significantly. Glomerular filtration rate did not change with either drug. PGE1 decreased ANP levels at 12 hrs, and dobutamine increased big ET levels at peak, but decreased big ET at 7 days. Norepinephrine levels were unaffected throughout. Except a slight decrease in right atrial pressure after 7 days placebo did not change any measured variable significantly. Taken together, these data suggest that treatment with PGE1 is as efficacious as low-dose dobutamine in improving cardiac performance and renal perfusion in advanced heart failure. Of importance, no deleterious neurohumoral counterregulation was observed with PGE1.

Alprostadil↗

Value of cardiopulmonary exercise testing and big endothelin plasma levels to predict short-term prognosis of patients with chronic heart failure.

OBJECTIVES: We tested the hypothesis that, in patients with stable heart failure, measuring big endothelin-1 (ET-1) plasma level at rest predicts short-term prognosis better than peak oxygen consumption (VO2max) at exercise. BACKGROUND: Cardiopulmonary exercise testing and evaluation of neurohumoral plasma factors are established tools to estimate survival in patients with heart failure. No data, however, exist comparing the prognostic value of both marker categories simultaneously. METHODS: Two hundred twenty-six heart failure patients were studied in regard to a combined end point of death and prioritization for urgent cardiac transplantation within 1 year follow-up. RESULTS: During the study period 149 patients were without cardiac events (group A), 69 patients died or were urgently transplanted (group B) and 8 patients were alive after a nonurgent heart transplant operation. Norepinephrine (p < 0.0001), atrial natriuretic peptide (p < 0.001), big endothelin plasma levels (p < 0.0001 as well as workload, VO2max and achieved percentage of predicted peak oxygen consumption (pVO2max) (all p < 0.0001) differed significantly between groups A and B. In multivariate stepwise regression analysis, however, only big ET-1 plasma concentration (chi2=74.4, p < 0.0001), New York Heart Association function class (chi2=33.9, p < 0.0001), maximal workload (chi2=7.2, p < 0.01, and plasma atrial natriuretic peptide (ANP) concentration (chi2=4.6, p < 0.05) were independently related to outcome. Peak oxygen consumption or pVO2max did not reach statistical significance in this model. Event-free survival rates were significantly lower in patients with a big ET-1 level of 4.3 fmol/ml or more than with lower big ET-1 levels (p < 0.0001). CONCLUSION: We conclude that in patients with chronic heart failure who are stable on oral therapy measuring big ET-1 and ANP plasma levels may be a valuable noninvasive adjunct to improve the prognostic accuracy of detecting high risk patients compared with exercise testing alone.

Adult↗

[Improved kidney function with intravenous prostaglandin E1 in patients with terminal heart failure].

In end stage congestive heart failure activation of a series of compensatory mechanisms increase renal vascular resistance and impair renal function. Prostaglandin E1 is increasingly used in the treatment of severe heart failure for its vasodilating actions. In various experimental settings prostaglandin E analogues are known to improve renal function by modulating renal filtration pressure and redistribution of renal blood flow. However, prostaglandin E1 decreases systemic blood pressure and thus, also renal perfusion pressure, a fact by which renal function might be further compromized in heart failure patients. The aim of the study was to evaluate the effects of prostaglandin E1 on excretory renal function in patients with end stage heart failure and to prove the hypothesis, that the well known local actions of prostaglandins on renal microcirculation might outweigh the negative impact of an expected decrease in perfusion pressure. 25 patients with terminal congestive heart failure were investigated. 13 patients received prostaglandin E1 at a dose of 13.5 +/- 1.9 ng/kg/min in combination with constant rates of dopamine and dobutamine (group A), 12 patients received prostaglandin E1 at a dose of 10.3 +/- 1.7 ng/kg/min without catecholamines (group B). There was no significant difference in prostaglandin dosages between groups. Kidney function was assessed by measuring plasma creatinine and urea nitrogen, urinary output, creatinine clearance, osmotic and free water clearance at baseline and after 72 h of infusion therapy. Hemodynamic parameters were measured by using a balloon tipped pulmonary arterial catheter. Hemodynamic measurements during infusion showed a significant improvement in all patients. At the same time as expected mean arterial pressure decreased in both groups (p < 0.001). Nevertheless, in both groups a significant increase of creatinine clearance during infusion was observed (in group A from 45 ml/min to 78 ml/min., p < 0.05, in group B from 59 ml/min to 105 ml/min., p < 0.001). Creatinine clearance in group B (without catecholamines) reached higher levels than group A (p < 0.05). Urinary volumes did not change during infusion therapy, whereas free water clearance significantly decreased, as an indication of an improvement of renal concentrations ability. We conclude, that in patients with end stage heart failure continuous infusion of prostaglandin E1 improves excretory kidney function. These findings suggest that the local effects of prostaglandin E1 on renal microcirculation can counterregulate the negative impact of prostaglandins on renal perfusion pressure.

Alprostadil↗

Relationship between kidney function, hemodynamic variables and circulating big endothelin levels in patients with severe refractory heart failure.

UNLABELLED: Fluid retention is a major characteristic of symptomatic, progressive heart failure when a main factor implicated in the pathogenesis of renal dysfunction is renal hypoperfusion. This may be a consequence of forward cardiac failure, resulting in a low cardiac output integrating poor left ventricular function secondary to myocardial impairment and increased resistance in the regional renal vasculature secondary to locally released vasoconstrictors, e.g. endothelin. So far, the role of the pulmonary circulation in perpetuating renal dysfunction in heart failure is unclear. METHODS: We investigated the relationship of hemodynamic variables obtained during right heart catheterization and plasma big endothelin levels to renal function variables in 18 male patients aged 52 +/- 3 years, with heart failure in the NYHA function class III-IV, based on idiopathic causes in 8 and ischemic causes in 10 patients. Renal plasma flow (RPF) was established by paraaminohippurate (PAH) clearance and the glomerular filtration rate (GFR) was measured by iothalamate clearance. RESULTS: Plasma big endothelin (ET) levels were increased above the upper normal range (1.8 fmol/ml) in 16 out of 18 patients, averaging 5.0 +/- 0.8 fmol/ml (1.7-11.9 fmol/ml). Positive correlations to big ET plasma levels were detected with mean pulmonary pressure (r = 0.73, p < 0.001) pulmonary capillary wedge pressure (r = 0.56, p < 0.05) and pulmonary vascular resistance index (r = 0.69, p < 0.01). Glomerular filtration rate (70 +/- 7 ml/min) and renal plasma flow (358 +/- 36 ml/min) were considerably reduced and exhibited a tendency to correlate inversely with big ET levels (r = -0.46, p = 0.056 and r = -0.44, p = 0.069, respectively). Contrary to expectations, RPF did not correlate significantly with cardiac index, systemic vascular resistance index or arterial blood pressure. In contrast, significant correlations were detected of RPF with pulmonary capillary wedge pressure (r = -0.69, p < 0.01), mean pulmonary artery pressure (r = -0.65, p < 0.01), right atrial pressure (r = -0.47, p < 0.05) and right ventricular ejection fraction (r = 0.49, p < 0.05). CONCLUSION: The findings suggest a role for endothelin in renal vasoconstriction and accord well with the concept that in severe heart failure renal hypoperfusion--by volume retention--as well as increased endothelin synthesis--by pulmonary vasoconstriction--play a part in the increased pulmonary filling pressures.

Endothelin-1↗

Atrial natriuretic peptide release is more dependent on atrial filling volume than on filling pressure in chronic congestive heart failure.

BACKGROUND: The mechanism of atrial natriuretic peptide (ANP) release has been difficult to demonstrate in patient studies because of inaccuracies in measuring atrial volumes using conventional techniques. METHODS: Magnetic resonance imaging was performed in 28 clinically stable patients (New York Heart Association class 3) with chronic heart failure to determine right atrial (RA), left atrial (LA), and ventricular volumes. In addition, right heart catheterization was serially performed and plasma ANP levels (in picograms per milliliter) were drawn from the right atrium. RESULTS: Five patients had to be excluded from data analysis for technical reasons. The remaining 23 patients had the following hemodynamic measurements (mean +/- SD): RA mean pressure 7+/-5 mm Hg, pulmonary artery mean pressure 28+/-10, pulmonary capillary wedge pressure 21+/-8 mm Hg, and cardiac index 2.9+/-1.4 (L/min/m2), respectively. Plasma ANP levels were significantly elevated at 162+/-117 (normal range 20 to 65 pg/ml, p < 0.05), as were LA and RA volumes compared with healthy controls (RA volume 128+/-64 ml vs 82+/-25 ml, p < 0.05; LA volume 157+/-54 ml vs 71+/-24 ml, p < 0.01, respectively). ANP showed a stronger relation with atrial volumes (RA volume, r = 0.91, p = 0.0001; LA volume, r = 0.80, p = 0.001) than with atrial pressures (RA mean pressure, r = 0.45, p = 0.03; pulmonary capillary wedge pressure, r = 0.67, p = 0.001). A subgroup analysis of patients with increased RA or LA volumes (>1 SD of mean of controls) revealed a stronger relation between ANP and RA volumes than between ANP and LA volumes. CONCLUSIONS: These data suggest that increased right heart volume with subsequent increased atrial stretch is the major determinant for ANP release in patients with stable CHF.

Adult↗

Circulating tumor necrosis factor-alpha levels in chronic heart failure: relation to its soluble receptor II, interleukin-6, and neurohumoral variables.

The cytokines tumor necrosis factor-alpha (TNF-alpha) and interleukin-6 (IL-6) are increased in the circulation of patients with chronic heart failure. However, their correlation with left ventricular dysfunction has not yet been thoroughly evaluated, and their interrelation with other neurohumoral systems, such as the adrenergic system and endothelin, is unclear. Therefore TNF-alpha, its soluble receptor II, IL-6, big endothelin, and noradrenaline levels were simultaneously measured in venous blood from 65 patients with heart failure in New York Heart Association (NYHA) class II to IV during therapy with digitalis, furosemide, and enalapril. TNF-alpha plasma levels were 3.2+/-0.2 SEM pg/ml in 38 patients in NYHA function class II, 4.0+/-0.3 SEM pg/ml in 16 patients in NYHA function class III, and 5.3+/-0.9 SEM pg/ml in 11 patients in NYHA function class IV (p < 0.001 vs NYHA function class II). IL-6 plasma levels were 3.1+/-0.6 SEM pg/ml in 38 patients in NYHA function class II, 5.2+/-0.8 SEM pg/ml in 16 patients in NYHA function class III, and 13.3+/-3.9 SEM pg/ml in 11 patients in NYHA function class IV (p < 0.0001 vs NYHA function class II andp < 0.0001 vs NYHA class III). Thus both cytokines increased with increasing severity of heart failure, but only IL-6 plasma levels were different in patients in the more severe function classes. TNF-alpha correlated closely with TNF soluble receptor II (r = 0.8, p < 0.0001) and modestly with serum creatinine (r = 0.6, p < 0.0001), whereas IL-6 plasma levels were not statistically related to kidney function. Significant modest correlations were also found among TNF-alpha and IL-6 (r = 0.3, p < 0.01), big endothelin (r = 0.3, p < 0.01), and noradrenaline levels (r = 0.4, <0.001). This study supports the hypothesis that in heart failure both cytokines, TNF-alpha, and IL-6, as well as neurohumoral factors, play a role in the clinical progression of the disease. Thereby levels of TNF-alpha but not IL-6 seem to be related to concomitant kidney dysfunction.

Adrenergic Agonists↗

[Significance of neuroendocrine parameters in heart failure].

Heart failure is defined as a malfunction of the cardiac muscle. The ongoing interaction between pump failure and the vasculature, however, results in symptoms due to malperfusion of the pulmonary and systemic circuit. As a consequence, biologic systems of pressure and volume control are activated. In the neurohumoral heart failure model the sympathetic nervous system, the renin system and endothelin all develop their own pathologic contribution to the disease process. Thereby the role of endothelin seems to be special since its production is particularly increased in advanced disease. Like angiotensin, endothelin has major proliferative properties to promote adverse vascular and myocardial growth. The finding of increasing neurohumoral activation as heart failure progresses and the role of plasma levels of neurohormones as predictors of mortality has rearranged the primary goal of therapy to suppress these deleterious neurohumoral systems as completely as possible. Though angiotensin converting enzyme inhibitors are currently first line therapy of heart failure, uncertainties remain concerning their mechanisms of action and - associated to that - optimal dosing.

Angiotensin II↗

Effects of atenolol as add-on therapy to fosinopril in heart failure.

Several trials have demonstrated functional benefit with beta-blockers in patients with chronic heart failure. The aim of this observational study was to investigate if additional beneficial effects can be obtained from beta-blockade in a heart failure population that is already receiving high-dose ACE-inhibitor therapy. Atenolol is a long-acting cardioselective beta-blocking agent and is devoid of additional vasodilatory properties. Twenty-five male patients with class II or III heart failure and background therapy of digitalis, furosemide and 20 mg fosinopril per day were treated with 40 mg fosinopril per day and additional 75 mg atenolol per day (beta-blocker group) or with 40 mg fosinopril per day alone (control group). At the end of one year, changes in left ventricular function, exercise parameters and plasma neurohumoral variables reflecting vasoconstriction (noradrenaline, big endothelin) were measured and compared in the two treatment groups. Nineteen patients completed the study. Drop-outs were due to death (4 patients) and non-compliance (2 patients) with no significant difference between the groups. There was a beta-blocker related improvement in left ventricular ejection fraction (p < 0.05 between groups) and an increase in peak oxygen consumption in the control group only (p < 0.05 between groups). Thus, in a heart failure population receiving high-dose ACE inhibitor background therapy beta-blockade with atenolol produced additional benefit by reversing left ventricular dysfunction.

Adrenergic beta-Antagonists↗

Effect of prostaglandin E1 infusion in severe chronic heart failure.

Prostaglandin E1 (PGE1, alprostadil) is a potent vasodilating agent that is frequently used to resolve cardiogenic pulmonary hypertension. To investigate the effect of PGE1 in refractory chronic heart failure in a double-blind trial, twenty patients (17 men, 3 women, 58 +/- 2 years, cardiac index < or = 2.5 l/min/m2, pulmonary capillary wedge pressure > or = 20 mmHg), who were in NYHA functional class IV on optimized treatment with ACE inhibitors and furosemide were infused with 30 ng/kg/min PGE1 or placebo through 48 hours. All patients received a concomitant therapy with standardized catecholamine infusions which were given 24 hours in advance and were continued throughout the study. There was no difference in baseline values between the randomized groups before PGE1 or placebo was added. PGE1 resulted in decrements in pulmonary artery pressure (from 37 +/- 4 to 30 +/- 4 mmHg; p < 0.01), pulmonary capillary wedge pressure (from 26 +/- 4 to 19 +/- 3 mmHg p < 0.001) systemic vascular resistance index (from 2048 +/- 213 to 1506 +/- 13 dyn.sec/cm5.m2, p < 0.05) and in increments in cardiac index and stroke volume index (from 2.2 +/- 0.1 to 2.8 +/- 0.2 l/min.m2; p < 0.05 and from 23 +/- 2 to 28 +/- 2 l/m2; p < 0.05, respectively). Moreover, creatinine clearance increased (p < 0.05). Placebo infusions did not result in any hemodynamic or renal effect. Between groups percentage hemodynamic changes differed with respect to pulmonary artery pressure (p < 0.01), cardiac index (p < 0.05), stroke volume index (p < 0.05) and pulmonary vascular resistance index (p < 0.05). It is concluded that intravenous infusions with PGE1 may add further substantial benefit to the hemodynamic state in refractory heart failure patients who are already stabilized on i.v. inotropic support with catecholamines.

Aged↗

Prostaglandin E1--bridge to cardiac transplantation. Technique, dosage, results.

BACKGROUND: Heart transplantation candidates who remain severely symptomatic despite therapy are normally hospitalized. Continuous infusion of intravenous drugs from a portable pump may allow such patients to live a fairly active life until a donor heart is found. AIM: To investigate in an open pilot study if heart transplantation can be safely accomplished if these patients are continuously bridged with various regimens including inotropic support with low-dose dobutamine in conjunction with dopamine and prostaglandin E1. METHODS: We report on 5 years' experience with prostaglandin E1, a potent vasodilator with proven efficacy in severe heart failure when coupled with catecholamines. From 1990 to 1995 54 heart transplantation candidates were bridged with prostaglandin E1 in addition to dobutamine 5 micrograms.kg-1. min-1 and dopamine 3 micrograms.kg-1 min-1 (group A; n = 32) or in addition to 3 micrograms.kg-1 min-1 dopamine alone (group B; n = 22), and 11 heart transplantation candidates were bridged with dobutamine 5 micrograms.kg-1. min-1 and dopamine 3 micrograms.kg-1 min-1 only (group C; n = 11). In an initial dose-ranging test, prostaglandin E1 was uptitrated to side effect limit (29 +/- 1 ng.kg-1.min-1). Haemodynamics, except for stroke volume index, were similar in all patients at baseline and a sufficient haemodynamic response (20% increase in stroke volume) was observed during the acute study. Fifty percent of the peak dose was used for initiating chronic therapy; the dose of prostaglandin E1 was further reduced if side effects recurred. RESULTS: Twenty-nine (54%) patients in groups A and B and six in group C could be discharged home with chronic therapy via a Hickman catheter connected to a portable pump. After 4 weeks in six patients in group A and in 13 patients in group B, when prostaglandin E1 had been reduced from 15 +/- 2 ng.kg-1.min-1 to 8 +/- 1 ng.kg-1 min-1 increases in cardiac index and decreases in systemic vascular resistance were sustained, and a permanent decrease in pulmonary vascular resistance index was observed in group B. Intravenous therapy was changed in nine patients (3/1/5) because of side effects and worsening heart failure. Prostaglandin E1 was withdrawn in three of these patients because of an increase in serum creatinine (3 mg.100 ml-1), and in one because of noncompliance. In total, there were 17 cardiac deaths (9/6/2), 42 heart transplants (22/14/6) and six (1/2/3) weaned survivors (including one non-cardiac death) in this study. Overall outcome was similar in groups A and B, but distribution after 2 months appeared to be different (P < 0.05) based on more transplantations in group A. CONCLUSION: We concluded that chronic infusions with prostaglandin E1 at reduced dosages is a feasible and safe therapeutic adjunct to bridge end-stage heart failure patients and may yield desirable effects in a subset of patients in the absence of inotropic support by dobutamine.

Alprostadil↗

PR interval adaptation in the denervated transplanted heart.

In the present study, the dynamic PR response upon standardized treadmill exercise was investigated in 21 transplant recipients (recipient age 48 +/- 17 years, donor age 31 +/- 12 years, > 1 year after transplantation). HR and PR interval were measured at rest and at the end of each 25-W increase in workload till peak exercise. In 17 cases norepinephrine (NE) was assessed at rest, and at the end of each workload the HR increased from 99.3 +/- 14 to 143.4 +/- 25 beats/min at individual peak exercise, and NE increased from 1,307 +/- 1,163 to 3,688 +/- 2,036 pg/mL, while the PR interval shortened from 149.2 +/- 13 to 119.3 +/- 20 ms. On average, PR decreased by 3.4 ms for a 10-beat increase in HR, and the HR-PR interval relationship was described by a linear regression (y = 176.8-0.3469x, P = 0.0001). One patient who was unable to increase his NE levels upon exercise showed virtually no decrease in the PR interval and no HR increase. Both recipient age and donor age were moderately and significantly related to the minimum PR interval achieved at peak exercise (r = 0.6, P = 0.008 and r = 0.51. P = 0.049, respectively). These data show the following: (1) adaptation of the PH interval upon exercise does occur in the denervated transplanted heart; (2) the HR-PR relation is similar to that reported in the innervated heart; (3) the overall decline in PR interval is blunted, since denervated patients start at shorter resting PR intervals and achieve relatively longer PR intervals at peak exercise when compared to their innervated counterparts; (4) these exercise induced changes of the PR interval may be explained by circulating NE; and (5) NE levels achieved at peak exercise and the sensitivity of the AV node to NE seem to be age related.

Adaptation, Physiological↗

Dose-effect relationships of prostaglandin E1 in severe endstage chronic heart failure.

UNLABELLED: Prostaglandin E1 is a potent vasodilator in severe chronic heart failure. To evaluate the time sequence and magnitude of prostaglandin E1's hemodynamic effects a dose finding study was performed in 24 patients. Right heart catheterization was performed and prostaglandin E1 was administered via a central venous line in incremental doses of 2.5, 10, 20, 30 and 40 ng/kg/min, each dose, lasting 15 min before hemodynamic evaluation. The first significant change was a approximately 20% decrease in systemic vascular resistance index accompanied by a approximately 18% increase in cardiac index at an infusion rate of 2.5 ng/kg/min of prostaglandin E1, which was sustained at 5 ng/kg/min in all patients. A dose response-curve with cumulative doses ranging from 2.5 to 25 ng/kg/min of prostaglandin E1 was established in a subset of 14 patients due to 10 drop-outs at lower dosages. At 2.5 and 5 ng/kg/min of prostaglandin E1, cardiac index increased by 18% (p < 0.05) and peripheral resistance decreased by 18% (p < 0.01). These changes were sustained up to a maximal dose of 25 ng/kg/min, which was tolerated by all patients in this group. At 15 and 20 ng/kg/min of prostaglandin E1 a significant decrease in blood pressure of -4 mmHg (p < 0.05) was observed which was reversed at the next dose step. In a second analysis maximal tolerated dosages of prostaglandin E1 were evaluated in all 24 patients (group A, 26 +/- 2 ng/kg/min), and in two subsets using a maximum tolerated dose of 20 ng/kg/min as a cutpoint (B: 14 patients, 34 +/- 2 ng/kg/min; C: 10 patients, 15 +/- 2 ng/kg/min) Then the respective peak dosages were halved for continuous infusion through 12 hours. In the acute study pulmonary capillary wedge pressure (by A: -11%, p < 0.01; B: -4%, p < 0.01; C: -22%, p < 0.01) and systemic vascular resistance (by A: -32%, p < 0.0001; B: -25%, p < 0.001; C: -43%, p < 0.001) decreased significantly in all three groups and cardiac index increased (by A: +38%, p < 0.0001; B: +33%, p < 0.0001; C: +59%, p < 0.0001). In the chronic study these changes were sustained. Furthermore, mean arterial pressure (by A: -14%, p < 0.0001; B: -13%, p < 0.001; C: -13%, p < 0.05), right atrial pressure (by A: -36%, p < 0.0001; B: -36%, p < 0.01; C: -30%, p < 0.01), pulmonary artery pressure (by A: -16%, p < 0.0001; B: -16%, p < 0.01; C: -19%, p < 0.01) and pulmonary vascular resistance (by A: -28%, p < 0.01; B: -31%, p < 0.01; C: -25%, p < 0.01) were significantly reduced after 12 hours. CONCLUSION: These results demonstrate potent hemodynamic effects of low-dose prostaglandin E1 in severe heart failure. While systemic effects appear rapidly, a slow onset of the pulmonary effects was observed.

Adult↗

Hemodynamic and neurohumoral effects of long-term prostaglandin E1 infusions in outpatients with severe congestive heart failure.

BACKGROUND: Prostaglandins of the E type are potent endogenous vasodilators that also interfere with the activity of the sympathetic nervous system. Thus treating patients with end-stage heart failure with prostaglandin E1 (PGE1) infusions seems to accord well with the hypothesis that neurohumoral imbalance rather than hemodynamic derangements should be the priority in the treatment of heart failure. METHODS: We sought to investigate neurohumoral in addition to hemodynamic changes during long-term PGE1 infusion and determined plasma renin activity, atrial natriuretic peptide, norepinephrine, and big endothelin plasma levels in 13 male patients with heart failure whose symptoms remained severe in spite of optimized oral therapy with digitalis, nitrates, furosemide (185 +/- 72 mg/d) and enalapril (33 +/- 3 mg/d). PGE1 infusion rate was started with 2.5 ng/kg/min and stepwise increased to the maximum tolerated dose (26 +/- 4 ng/kg/min), which was halved for continuous infusion through the following 12 hours and further stepwise reduced to an average dose of 8 +/- 1 ng/kg/min. Right heart catheterization was performed for acute hemodynamic studies and after 4 weeks. All patients were discharged with a catheter that was connected to a portable pump for home therapy. RESULTS: Acute effects of PGE1 were reductions in systemic blood pressure, (p < 0.05), right atrial pressure (p < 0.001), pulmonary artery pressure (p < 0.05), pulmonary capillary wedge pressure (p < 0.01), systemic and pulmonary vascular resistance index (both p < 0.01) and an increase in cardiac and stroke volume index (both p < 0.001) without a change in heart rate. After 4 weeks a persistent increase from baseline in cardiac index (from 1.9 +/- 0.1 to 2.5 +/- 0.2 L/min/m2; p < 0.01) and in pulmonary vascular resistance index (from 479 +/- 50 to 331 +/- 29 dynes x sec/cm5 x m2; p < 0.05) was observed. Atrial natriuretic peptide (p < 0.05) decreased, and norepinephrine and big endothelin showed a tendency to a lower level. Concomitantly, New York Heart Association functional class changed (p = 0.0001), with one patient's condition remaining class IV, the conditions of seven patients decreasing to class II, and the conditions of five patients decreasing to class III. CONCLUSION: Thus long-term parenteral home therapy with PGE1 infusions in patients with severe end-stage heart failure elicited beneficial clinical and hemodynamic effects without activating neurohumoral counterregulatory systems.

Alprostadil↗

Prostaglandin E1 infusion compared with prostacyclin infusion in patients with refractory heart failure: effects on hemodynamics and neurohumoral variables.

Prostaglandin E1 or prostacyclin were randomly infused in 18 patients with severe chronic heart failure who did not respond to oral treatment. Maximally tolerated dosages of both agents increased cardiac index; however, only prostacyclin decreased mean arterial pressure and increased plasma norepinephrine significantly. Twelve hours after 50% peak dose reduction, atrial natriuretic peptide levels, right atrial pressure, mean pulmonary artery pressure, and mean arterial pressure continued to decrease with prostaglandin E1, whereas the increase in cardiac index was sustained; in contrast, at 50% prostacyclin dose reduction, cardiac index decreased toward baseline, suggesting that, with reduced dosages for chronic infusions, desired hemodynamic changes seem to be sustained with prostaglandin E1 only.

Alprostadil↗

Cyclosporine may affect improvement of cognitive brain function after successful cardiac transplantation.

BACKGROUND: The effects of cardiac transplantation on cognitive brain function are uncertain. METHODS AND RESULTS: We measured cognitive brain function and quality of life in out-of-hospital cardiac transplant candidates (n = 55; ejection fraction, 19.9%; age, 54.8 years [means]). After transplantation, the patients were serially reevaluated at 4 months (n = 25) and at 12 months (n = 19). Brain function was measured objectively by cognitive P300 evoked potentials. Additionally, standard psychometric tests (Trail Making Test A, Mini-Mental State Examination, and Profile of Mood State test) were performed. Cognitive P300 evoked potentials were impaired in cardiac transplant candidates (359 ms, recorded at vertex) compared with 55 age- and sex-matched healthy subjects (345 ms, P < .01). Trail Making Test A was also abnormal (45 versus 31 seconds in 55 healthy subjects, P < .01). After transplantation, P300 measures were normalized at 4 months (345 ms, P < .05 versus before transplantation) but declined again at 12 months (352 ms, P = NS versus before transplantation). Stepwise multiple regression analysis revealed that cumulative cyclosporine dosage was the only predictor of individual cognitive brain function 4 months (753 mg/kg body wt, P < .05) and 12 months (2006 mg/kg body wt, P < .01) after transplantation, respectively. CONCLUSIONS: Objective cognitive P300 auditory evoked potential measurements indicate that cognitive brain function is significantly impaired in patients suffering from stable end-stage heart failure. Successful cardiac transplantation is effective to fully normalize impaired brain function. Subsequent relative long-term decline of cognitive brain function after successful cardiac transplantation is strongly suggested to be related to cumulative cyclosporine neurotoxicity.

Affect↗

Prognostic impact of big endothelin-1 plasma concentrations compared with invasive hemodynamic evaluation in severe heart failure.

OBJECTIVES: This study sought to test the hypothesis that big endothelin-1 plasma levels in advanced heart failure are related to survival. BACKGROUND: In heart failure, production of the potent vasoconstrictor endothelin-1 is increased. Because elevation of immunoreactive endothelin-1 in severe heart failure is primarily related to the precursor "big" endothelin-1, increased big endothelin-1 levels may be associated with a poor prognosis. METHODS: Plasma big endothelin-1 concentrations, in addition to 16 clinical, hemodynamic and neurohumoral variables, were obtained from 113 patients (mean age -=/[SEM] 53 +/- 1 years) with left ventricular ejection fraction <20% and were related to 1-year mortality by a stepwise Cox regression multivariate analysis. RESULTS: Plasma big endothelin-1 concentrations were significantly higher in patients with moderate and severe heart failure than in those with mild heart failure (4.5 +/- 0.4 and 6.0 +/- 0.1 vs. 2.7 +/- 0.1 fmol/ml, p = 0.0001, respectively) and lower in 58 one-year survivors than in 29 nonsurvivors (2.6 +/- 0.1 vs. 5.9 +/- .04 fmol/ml, p = 0.0001) and 26 heart transplant recipients. By univariate analysis, big endothelin-1 plasma concentrations (p < 0.0001), functional class, daily furosemide dose, left ventricular ejection fraction, most hemodynamic variables and plasma atrial natriuretic peptide, sodium renin activity and aldosterone levels were all related to mortality, but only functional class provided additional prognostic information when big endothelin-1 plasma levels were entered into the multivariate model. CONCLUSIONS: In advanced heart failure, plasma big endothelin-1 is strongly related to survival and appears to predict 1-year mortality better than hemodynamic variables and levels of atrial natriuretic peptide, an established neurohumoral prognostic marker in chronic heart failure.

Adult↗

Effects of two different enalapril dosages on clinical, haemodynamic and neurohumoral response of patients with severe congestive heart failure.

Angiotensin converting enzyme inhibitors improve symptoms and prolong life in congestive heart failure, but the dose in the individual patient is uncertain. A randomized, 48-week, double-blind study was performed to investigate the safety and efficacy of 'high' in comparison to continued 'low' angiotensin converting enzyme inhibitor therapy in severe heart failure. Eighty-three patients (56 +/- 1.1 years; 69 men, 14 women) in New York Heart Association functional class III/IV on digoxin, furosemide and 'low' angiotensin converting enzyme inhibitors (captopril < or = 50 mg.day-1 or enalapril < or = 10 mg.day-1) were included. After a > or = 14 day run-in on 10 mg.day-1 enalapril, digitalis and furosemide, right heart catheterization at rest and exercise was performed. All patients presented with atrial pressure > 10 mmHg and/or pulmonary artery pressure > 35 mmHg, and/or cardiac index < 2.5 l.min-1.m-2 at rest. Patients then received enalapril 5 mg twice daily (n = 42), or 20 mg twice daily (n = 41) in random order. Thus, patients randomized to low doses of enalapril actually had no change in therapy from baseline to 48 weeks. Forty-three patients (52%) completed the study, 19 patients on the low dose and 24 patients on the high dose. Both dosages equally influenced survival with 15 (18%) deaths, eight on low dose and seven on high dose. After 48 weeks, functional capacity by New York Heart Association class improved more on the high dose than on the low dose (P = 0.04). In contrast, alterations in invasive haemodynamic variables at rest and exercise as well as maximal exercise capacity were comparable in both groups. Diastolic blood pressure decreased and the change between both groups was statistically significant (P = 0.01). Changes in plasma creatinine levels did not differ between high and low dose treatment and no patients had to be withdrawn because of deterioration in kidney function. With regard to neurohumoral activity, a tendency to a discrepant response to both treatments was observed with a blunted increase in noradrenaline on high versus low enalapril dose. Thus, high-dose enalapril treatment proved superior to low dose as regards symptomatology in severe heart failure after long-term treatment, despite similar effects on haemodynamics and on maximal exercise capacity.

Angiotensin-Converting Enzyme Inhibitors↗