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Biomedical subjects

H Drexler

Publications and source records attributed to H Drexler.

At least 181 records · Page 10Linked to original sources

[The value of ACE inhibitors in heart failure (mechanism of action)].

ACE-inhibitors improve symptoms and prognosis in patients with heart failure. The V-Heft II trial has demonstrated that the beneficial effect of these agents is superior to unspecific vasodilators. Besides sustained arterial and venous vasodilation the inhibition of the neurohumoral axis is thought to play an important role. Angiotensin II and catecholamines not only exert vasoconstrictor effects, but might also contribute to vascular and myocardial growth. Thus, it may not be surprising that the beneficial effects of ACE inhibitors in heart failure only emerge during long-term therapy rather than after short-term administration. It has been shown that these agents improve blood flow to skeletal muscle during exercise after chronic therapy (not acutely), and there is some preliminary evidence that improvement of endothelial function might be involved in this effect, i.e., by reducing the degradation of bradykinin, an endothelial vasodilator. ACE inhibitors reduce LV hypertrophy, an important risk factor for cardiovascular disease and prognosis. Moreover, there is experimental evidence that ACE inhibitors can prevent and even reverse interstitial fibrosis in the left ventricle. Although the plasma renin activity may be normal in patients with chronic heart failure, recent data using polymerase chain reaction indicate that the tissue cardiac renin angiotensin system is activated in the failing human heart as assessed by measurements of angiotensin converting enzyme mRNA and angiotensinogen mRNA which may be an important target for ACE-inhibition.

Angiotensin-Converting Enzyme Inhibitors↗

Left ventricular remodeling after myocardial infarction: does the cardiac renin-angiotensin system play a role?

Possible cardioprotective effects are one of the most intriguing aspects of the expanding spectrum of clinical indications for the use of converting-enzyme inhibitors. Among them, the prevention of postinfarction ventricular remodeling--a deleterious process leading to eccentric cardiac hypertrophy and, eventually, to congestive heart failure--has attracted particular interest and attention. This communication examines the possible role of the endogenous cardiac renin-angiotensin system in the pathophysiology of ventricular remodeling. Although much of the evidence is indirect, there are several lines of investigation that strongly support the causative participation of the cardiac renin-angiotensin system in ventricular remodeling.

Angiotensin-Converting Enzyme Inhibitors↗

Arterial dilatory reserve in congestive heart failure.

AIM: The purpose of this study was to determine whether there are abnormalities in flow-mediated large vessel relaxation in patients with congestive heart failure (CHF). METHODS: The radial arterial diameter and flow responses upon the release of 10 min of forearm arterial occlusion (reactive hyperemia) were measured with ultrasound and Doppler devices. RESULTS: In patients with CHF there was a 26% reduction in peak blood flow (P = 0.09) compared to age-matched controls. However, the increase in arterial diameter that followed the peak blood flow was reduced by 49% in CHF (P < 0.01). CONCLUSIONS: The causes of the abnormal flow-mediated large artery relaxation in CHF are unclear; both structural and endothelial abnormalities may contribute.

Blood Flow Velocity↗

Adaptive changes in the periphery and their therapeutic consequences.

Systemic vasoconstriction in chronic heart failure is due to several compensatory mechanisms with different time courses. Peripheral vasoconstriction mediated by increased sympathetic tone and activation of the plasma renin-angiotensin system may act primarily for short-term control. The effects of the vascular renin-angiotensin system, impaired flow-dependent, endothelium-mediated dilation (resulting from chronically reduced flow) and structural alterations of the vessel wall slowly emerge with time. In addition, fluid retention may contribute to increased vascular stiffness in chronic heart failure. Improved cardiac output with acute administration of vasodilators and inotropes is not immediately translated into increased blood flow to skeletal muscle, because (1) the reversal of the peripheral alterations described develops slowly over time (in fact, vasodilators and inotropes given acutely may cause redistribution of blood flow in skeletal muscle without improving oxygen availability); and (2) intrinsic abnormalities of skeletal muscle exist in chronic heart failure (e.g., due to chronic deconditioning, resulting in reduced oxidative capacity of skeletal muscle, as suggested by ultrastructural analysis and nuclear magnetic resonance spectroscopy). Drugs that interfere with the underlying compensatory mechanisms (e.g., renin-angiotensin system) without development of tolerance during long-term therapy exert beneficial effects after long-term treatment (e.g., the beneficial effects of angiotensin-converting enzyme inhibitors are, in part, due to peripheral mechanisms--the inability of the peripheral vessels to dilate--and to improvement of peripheral oxygen extraction).

Adaptation, Physiological↗

Assessment of coronary vasomotor tone in humans.

The assessment of endothelium-mediated modulation of coronary vasomotor tone in the intact human circulation under physiologic conditions requires very precise determination of both epicardial artery diameters, reflecting effects within the conduit vessels, as well as coronary blood flow, reflecting effects within the resistance vasculature during cardiac catheterization. In the present report, the accuracy and limitations of quantitative approaches to assess arterial dimensions from coronary angiograms are discussed. Using state-of-the-art image-processing techniques and x-ray imaging, epicardial artery diameter changes within the range of 8-10% can be reliably detected by quantitative coronary angiography. In addition, advances in interventional techniques do provide a means to selectively assess intracoronary blood-flow velocities using intracoronary Doppler catheters. Combining epicardial artery diameter measurements and intracoronary blood-flow velocity parameters allows for a reasonably accurate instantaneous estimate of coronary arterial blood flow. The advantages and limitations of the intracoronary Doppler technique compared to other techniques are discussed.

Coronary Angiography↗

Coronary hemodynamic determinants of epicardial artery vasomotor responses during sympathetic stimulation in humans.

Sympathetic stimulation by cold-pressor testing induces a complex interplay between adrenergic receptor stimulation, humoral and local metabolic factors, and alterations in coronary perfusion pressure. Since the endothelium importantly modulates the effect of neurohumoral stimulation, we evaluated the coronary hemodynamic determinants of epicardial artery vasomotor responses to cold-pressor testing in 12 normal patients with intact endothelial function, and in 20 patients with early atherosclerosis, demonstrating a dysfunctional endothelium. Endothelial function was assessed by intracoronary infusion of the endothelium-dependent dilator acetylcholine. Vasomotor responses were examined by quantitative coronary angiography and continuous intracoronary flow velocity measurements using a Doppler catheter. All coronary artery segments demonstrating a dilator response to intracoronary acetylcholine also vasodilated in response to cold-pressor testing by 19.7 +/- 8.2% (mean +/- 1 SD). In contrast, all arteries with evidence of atherosclerosis demonstrated a vasoconstrictor response during cold pressor testing with an area reduction by 18.4 +/- 7.5%. The systemic hemodynamic variables heart rate and mean aortic pressure increased by comparable amounts in both groups of patients during cold pressor testing, indicating comparable increases in myocardial workloads. There was a significant positive relation between increases in blood flow and changes in arterial luminal area. Increases in blood flow were closely related to increases in mean aortic pressure in normal epicardial vessels, but this relation was blunted in vessels with a dysfunctional endothelium. Estimated shear stress changes within the epicardial conductance vessels were significantly lower in normal compared to atherosclerotic arteries. Thus, the increase in coronary blood flow is an important hemodynamic determinant of epicardial artery dilation in normal arteries during cold pressor testing. On the other hand, the vasodilator response limits increases in shear stress for a given increase in blood flow. In contrast, the failure of atherosclerotic arteries to dilate, despite increased myocardial demands, exaggerates increases in local shear stress in relation to changes in flow.

Acetylcholine↗

Progression of coronary endothelial dysfunction in man and its potential clinical significance.

Endothelial injury represents an important factor in the initiation of atherosclerosis and is associated with abnormal vasomotor responses (= dysfunctional endothelium) to a variety of stimuli. Therefore, the evaluation of endothelial function may provide a means to detect early vascular alteration preceding overt atherosclerotic lesions. To test this clinically important hypothesis, we studied the coronary vasomotor responses to three different endothelium-dependent stimuli in patients with different early stages of coronary artery disease: first, increasing doses of intracoronary infusion of acetylcholine (ACH) (10(-8), 10(-7), 10(-6) M); second, transient increases in coronary flow causing flow-dependent dilation by injection of papaverine into the midportion of the left descending artery (exposing the proximal segment of this vessel to increased flow, but not to papaverine); and third, sympathetic stimulation by cold pressor test. Coronary diameters were assessed by repeated coronary angiography and quantitative angiography, blood flow velocity (and subsequent calculation of blood flow) was obtained by intracoronary Doppler. In normal individuals, all three stimuli elicited epicardial artery dilation. In patients with smooth coronary arteries, but hypercholesterolemia, a substantial vasoconstriction was observed in response to ACH, whereas the response to cold pressor test and increases in flow was normal, that is, vasodilation occurred. In patients with angiographically visible atherosclerosis, acetylcholine and cold pressor test exerted coronary vasoconstriction. Moreover, flow-dependent, endothelium-mediated dilation was attenuated in those patients demonstrating visible luminal irregularities in the vessel under study. In patients with hypercholesterolemia, substantial endothelial dysfunction (as assessed by attenuated blood-flow increase in response to acetylcholine) was demonstrated in the coronary microcirculation. Thus, progression of endothelial dysfunction occurs during the early course of development of coronary atherosclerosis. Utilizing quantitative coronary angiography and the intracoronary Doppler technique, these early functional alterations can be identified safely at a stage when atherosclerotic lesions are not detectable by angiography. This may be useful in designing early effective interventions which restore endothelial function and prevent the occurrence of overt atherosclerosis.

Coronary Artery Disease↗

Endogenous atrial natriuretic factor is involved in the natriuresis following sodium loading in rats with chronic heart failure.

STUDY OBJECTIVE: Plasma levels of atrial natriuretic factor are increased in chronic heart failure; however, it is still controversial whether these raised levels contribute to the diuresis and natriuresis in this setting. To address this issue the potential contribution of endogenous atrial natriuretic factor in the renal excretion of a moderate oral sodium load in a rat model of chronic heart failure was studied. DESIGN: A monoclonal antibody against atrial natriuretic factor was used for specific antagonisation of its in vivo effects. Animals were subjected to oral sodium loading (30 ml.kg-1 0.9% NaCl, 2.5% dextrose) at baseline, immediately after, and 5 d after injection of monoclonal antibody or control solvent. EXPERIMENTAL MATERIAL: Sham operated rats and rats with chronic heart failure due to myocardial infarction (infarct size 35(SEM 4)% of left ventricle) were studied 4-5 weeks after surgery. MEASUREMENTS AND MAIN RESULTS: The renal excretion of cyclic guanosine monophosphate (cGMP), which represents a specific marker for the activation of the atrial natriuretic factor system, was markedly increased in infarcted rats, at 17.9(SEM 3.4) vs 5.8(1.2) nmol.kg-1, p less than 0.01. Atrial natriuretic factor antibody given immediately before sodium loading reduced the natriuretic response (0-4 h period) in infarcted rats from 1270(171) to 805(76) mumol.kg-1 (p less than 0.01) but not in sham operated animals. Similarly, the excretion of cGMP was only decreased by atrial natriuretic factor antibody in infarcted rats, from 29.8(6.3) to 20.7(3.7) nmol.kg-1. The reduction in sodium and cGMP excretion in infarcted rats was confirmed with a purified antibody preparation. CONCLUSIONS: Endogenous atrial natriuretic factor appears to be involved in the natriuresis following a moderate oral volume load in chronic heart failure. Thus the raised concentrations found in chronic heart failure may contribute to the regulation of urinary sodium excretion under these conditions despite the fact that the diuretic effects of exogenous atrial natriuretic factor are attenuated in chronic heart failure.

Animals↗

Reduced exercise tolerance in chronic heart failure and its relationship to neurohumoral factors.

There is some evidence that exercise intolerance in chronic heart failure is linked to the activity of compensatory mechanisms, including neurohumoral factors. However, there is a lack of correlation between exercise capacity and the degree of LV-dysfunction in this setting. Impaired skeletal muscle perfusion during exercise appears to be involved in reduced exercise capacity in patients with heart failure. The peripheral vasoconstriction mediated by increased sympathetic tone and activated plasma renin-angiotensin-aldosterone system (RAAS) may act primarily for short-term control and its short-term inhibition does not restore exercise capacity. The effects of the vascular RAS, impaired flow-dependent endothelium-mediated dilation (e.g. due to chronically reduced flow) and structural alterations of the vessel wall only slowly emerge over time. In addition, fluid retention may contribute to increased vascular stiffness in chronic heart failure. Improved cardiac output with acute administration of vasodilators and inotropes is not immediately translated into increased flow to skeletal muscle, because (1) the reversal of the above delineated peripheral alterations develops slowly over time; such agents given acutely may cause redistribution of blood flow in skeletal muscle without improving oxygen availability, (2) intrinsic abnormalities of skeletal muscle exist in chronic heart failure; e.g. due to chronic deconditioning, resulting in reduced oxidative capacity of skeletal muscle, as suggested by ultrastructural analysis and NMR-spectroscopy.(ABSTRACT TRUNCATED AT 250 WORDS)

Exercise↗

Mechanisms involved in the response to prolonged infusion of atrial natriuretic factor in patients with chronic heart failure.

We examined the mechanisms involved in the cardiovascular and renal response to prolonged infusion of atrial natriuretic factor (ANF) in patients with chronic heart failure. ANF infusion was titrated to produce a 30% decrease in pulmonary capillary wedge pressure or a 20% increase in cardiac output, and this dose (average, 75 +/- 4 ng/kg/min) was then administered for 20 hours. The short-term response to ANF included significant reductions in central filling pressures, increases in cardiac output, modest increases in diuresis and glomerular filtration rates, significant reduction in plasma aldosterone levels, and a 3.6-fold increase in plasma cyclic GMP levels. During prolonged infusion, plasma cGMP levels and cardiac output gradually returned to baseline. Similarly, the initially increased diuretic effects were completely abolished during prolonged ANF infusion, although plasma alpha-hANF levels remained consistently elevated above baseline values (control, 198 +/- 38; titration, 2,760 +/- 596; 20 hours, 3,499 +/- 659 pg/ml). Four hours after beginning the ANF infusion, marked increases in hematocrit levels were noted (42.5 +/- 1.0% versus 45.3 +/- 1.4%, control and infusion, respectively, p less than 0.05); during this time, no change in total plasma protein concentration occurred, indicating extravascular shift of fluid and plasma proteins. No evidence was noted for activation of vasoconstrictor hormones during prolonged ANF infusion, although mean arterial pressure was significantly reduced throughout the infusion period. Plasma pro-ANF (31-67) levels, determined as a marker for endogenous ANF secretion, were significantly suppressed as were the reductions of central filling pressures. After ANF discontinuation, heart rate and pulmonary capillary wedge pressure increased significantly above baseline values without evidence for sympathetic stimulation. We conclude that 1) prolonged infusion of ANF causes only transient increases in plasma cGMP levels but a sustained reduction of the cardiac release of ANF and that 2) the beneficial hemodynamic effects of ANF, that is, unloading of the ventricles, may be associated with or, in part, may be secondary to a shift of plasma constituents into the extravascular space. The latter may limit the therapeutic potential of ANF for long-term treatment.

Atrial Natriuretic Factor↗

Modulation of coronary vasomotor tone in humans. Progressive endothelial dysfunction with different early stages of coronary atherosclerosis.

The endothelium plays a critical role in the control of vasomotor tone by the release of vasoactive substances. Because endothelial injury or dysfunction is considered important very early in atherogenesis, we hypothesized that abnormal endothelial function precedes the angiographic detection of coronary atherosclerosis in the human coronary circulation. The coronary vasomotor responses to three different endothelium-mediated stimuli (intracoronary infusion of acetylcholine 10(-8) to 10(-6) M, increase in blood flow to induce flow-dependent dilation, and sympathetic stimulation by cold pressor testing) were assessed by quantitative angiography and subselective intracoronary Doppler flow velocity measurements within the left anterior descending coronary artery in 38 patients. All three stimuli elicited epicardial artery dilation in all 11 patients with smooth coronary arteries and absence of risk factors for coronary artery disease (group 1). All nine patients with smooth coronary arteries but with hypercholesterolemia (group 2) demonstrated a selective impairment in endothelial function with vasoconstriction (35 +/- 12.7% decrease in mean luminal area) in response to acetylcholine but showed a preserved flow-dependent dilation (15.5 +/- 4.4% increase in mean luminal area) and vasodilation in response to cold pressor testing (14.2 +/- 4.6% increase in mean luminal area). In all nine patients with an angiographically defined smooth coronary artery segment but with evidence of atherosclerosis elsewhere in the coronary system (group 3), both acetylcholine and cold pressor testing induced vasoconstriction (26.2 +/- 8.7% and 18.7 +/- 7.9% decrease in mean luminal area, respectively), whereas flow-dependent dilation was preserved (20.4 +/- 8.7% increase in mean luminal area). In the nine patients with angiographic evidence of wall irregularities (group 4), flow-dependent dilation was also abolished and vasoconstriction occurred in response to acetylcholine and cold pressor testing (34.5 +/- 10.7% and 19.9 +/- 6.3% decrease in mean luminal area, respectively). All coronary artery segments dilated in response to nitroglycerin, suggesting preserved function of vascular smooth muscle. Despite similar reductions in coronary vascular resistance in response to the smooth muscle relaxant papaverin, patients with hypercholesterolemia demonstrated a selective impairment of vasodilation of the resistance vasculature in response to acetylcholine (p less than 0.05 versus groups 1, 3, and 4). Thus, there is a progressive impairment of endothelial vasoactive functioning in coronary arteries of patients with different early stages of atherosclerosis, beginning with a selective endothelial dysfunction in angiographically defined normal arteries in patients with hypercholesterolemia and progressively worsening to a complete loss of endothelium-mediated vasodilation in angiographically defined atherosclerotic coronary arteries.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetylcholine↗

Endothelial dysfunction of the coronary microvasculature is associated with coronary blood flow regulation in patients with early atherosclerosis.

BACKGROUND: The vascular endothelium is capable of regulating tissue perfusion by the release of endothelium-derived relaxing factor to modulate vasomotor tone of the resistance vasculature. METHODS AND RESULTS: To test whether atherosclerosis is associated with a functional abnormality of endothelium-mediated microvascular relaxation affecting coronary blood flow regulation, we compared coronary blood flow responses with cold pressor testing with the response of the coronary vasculature to acetylcholine (an endothelium-dependent vasodilator) and to papaverin (a direct dilator of vascular smooth muscle) in 12 normal control patients and in 19 patients with non-flow-limiting epicardial atherosclerosis (CAD). The drugs were subselectively infused into the left anterior descending coronary artery via a Doppler catheter, and the response in coronary blood flow was assessed by measuring intracoronary blood flow velocity and cross-sectional arterial area (quantitative angiography). Coronary vascular resistance decreased in all normal control patients by -24.1 +/- 5.5% (mean +/- SD) during the cold pressor test, whereas the CAD patients demonstrated a variable coronary vascular resistance response to cold pressor testing despite comparable changes in the rate-pressure product. The slopes of the acetylcholine dose-blood flow response (percent change in coronary blood flow/dosage of acetylcholine) were significantly reduced in the CAD patients with 38.5 +/- 24.8 compared with the normal patients (80.8 +/- 28.1; p less than 0.001). Although coronary blood flow responses to papaverin were slightly but significantly (p less than 0.05) reduced in the CAD patients, the response to the endothelium-dependent dilator acetylcholine was considerably out of proportion to the papaverin response in these patients compared with the normal patients. The capacity of the coronary system to increase blood flow in response to acetylcholine expressed as relative proportion of the maximal papaverin response was 52.5 +/- 18.2% in the normal control patients but only 33.6 +/- 23.6% in the CAD patients (p less than 0.025 versus normals). There was a significant negative correlation (r = -0.69; p less than 0.0001) between cold pressor test-induced changes in coronary vascular resistance and the capacity of the coronary system to increase blood flow in response to acetylcholine. CONCLUSIONS: Early stages of epicardial atherosclerosis are associated with an impairment in endothelium-dependent dilation of the coronary microvasculature, indicating that the pathophysiological consequences of atherosclerosis may extend into the human coronary microcirculation. The correlation between cold pressor test-induced coronary vascular resistance changes and the extent of endothelial dysfunction suggests a relation between endothelial function of the microvasculature and coronary blood flow regulation during sympathetic stimulation associated with increased myocardial work.

Acetylcholine↗

Endothelial function in human coronary arteries in vivo. Focus on hypercholesterolemia.

To examine whether and to what extent hypercholesterolemia may affect the vasoactive role of the endothelium before the onset of angiographically visible atherosclerosis in the coronary circulation, we studied normal subjects (group 1, n = 11), individuals with elevated low density lipoprotein plasma values but angiographically smooth coronary arteries (group 2, n = 8), and patients with hypercholesterolemia and minimal disease of the vessel under study (group 3, n = 8). Coronary vasomotor function was evaluated by three interventions: subselective intracoronary infusion of acetylcholine (0.036, 0.36, and 3.6 micrograms/min) with a 3F Doppler catheter in the left anterior descending artery, 0.3 mg intracoronary nitroglycerin ("endothelium-independent"), and increase in blood flow (assessment of flow-dependent, endothelium-mediated coronary dilation). In group 1, all interventions caused coronary dilation of the left anterior descending artery as assessed by automatic quantification of digitized cineframes. However, in group 2, acetylcholine elicited substantial coronary vasoconstriction, and the vasodilator response to nitroglycerin and to increases in flow (flow-dependent dilation) was preserved. In group 3, the acetylcholine-induced coronary vasoconstriction was even more pronounced, and the flow-dependent dilation was impaired (+5.1 +/- 1% versus +10.5 +/- 1.1% [group 1], p less than 0.05). The coronary flow reserve (derived from Doppler flow velocity measurements) in response to papaverine was not significantly different in normal and hypercholesterolemic individuals (groups 2 and 3). However, the increase in coronary flow exerted by acetylcholine was substantially depressed in patients with hypercholesterolemia (groups 2 and 3) as compared with normal individuals (+48 +/- 8.3% and +49 +/- 25% versus +220 +/- 28.5%, respectively, p less than 0.01). Thus, hypercholesterolemia elicits endothelial dysfunction in coronary conduit and resistance vessels in humans that precedes angiographically visible atherosclerotic lesions in large coronary arteries. Conceivably, these vascular alterations contribute to increased coronary vasomotor tone within the coronary circulation and may predispose these patients to myocardial ischemia.

Acetylcholine↗

Cilazapril in congestive heart failure. A pilot study.

The haemodynamic effects of a single dose of cilazapril 2.5 or 5 mg were studied in 33 patients with stable chronic congestive heart failure who were receiving digitalis and diuretics. Subsequently, a double-blind comparison of the haemodynamic and clinical effects of 3 months' treatment with cilazapril 1.25 to 5 mg daily or placebo in 24 evaluable patients revealed that the acute haemodynamic improvement produced by a single dose of cilazapril was maintained in patients receiving repeated administration of the drug, but not in those randomly allocated the placebo. Acute cilazapril significantly decreased mean arterial pressure, systemic vascular resistance, pulmonary capillary wedge pressure, pulmonary artery pressure and right atrial pressure, while cardiac index and stroke volume index increased at rest and during submaximal exercise. After 3 months' treatment 11 of 13 cilazapril recipients improved their New York Heart Association (NYHA) class compared with 2 of 11 patients treated with placebo. This functional improvement was paralleled by a patient-perceived improvement in general well-being.

Adult↗

[Peripheral adaptation in chronic heart failure: therapeutic implications].

Systemic vasoconstriction is a hallmark in chronic heart failure and due to several compensatory mechanisms such as neural, humoral and local vascular factors. Peripheral vasoconstriction mediated by increased sympathetic tone and activated plasma renin-angiotensin system (RAS) may act primarily for short-term control. The effects of the vascular RAS, impaired endothelium-mediated dilation (possibly due to chronically reduced flow) and structural alterations of the vessel wall slowly emerge over time. In addition, fluid and sodium retention may contribute to increase vascular stiffness in chronic heart failure. Improved cardiac output with acute administration of vasodilators and inotropic agents appears to exert redistribution of blood flow without improving blood flow to working muscle during exercise. Even if such agents do improve blood flow to the exercising skeletal muscle with short-term administration, oxygen utilization of the skeletal muscle is not immediately increased because intrinsic abnormalities of skeletal muscle exist in chronic heart failure; e.g. due to chronic deconditioning, resulting in reduced oxidative capacity of skeletal muscle as suggested by ultrastructural analysis and NMR-spectroscopy. The reversal of the above delineated peripheral alterations develop slowly over time. Chronically increased flow may improve impaired endothelium-dependent relaxation of the vessel wall and the oxidative capacity may increase, in part, due to a training effect.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors↗

[ACE inhibition in heart failure and compromised kidney function].

If ACE-inhibitors are considered for therapy in patients with heart failure, the actual renal function has to be taken into account. In patients with reduced intravascular volume, e.g. during therapy with diuretics, the renin-angiotensin system is activated. In this situation, the renin-angiotensin-system contributes to the maintenance of arterial blood pressure and glomerular filtration rate by angiotensin II mediated vasoconstriction in vas efferens and systemic circulation. A sudden complete inhibition of the renin-angiotensin system therefore may cause a pronounced decrease in blood pressure and a reduction in glomerular filtration rate (impaired renal excretory function). In patients with heart failure concomitant chronic renal failure, the use of ACE-inhibitors is without major risk; however, the clinical efficacy may be limited. This does not apply to patients with diabetes, where the risk for impairment of renal function is increased. The potential advantage of short acting ACE-inhibitors such as captopril may clinically be relevant only in patients with very advanced severe heart failure and low arterial pressure. In any case, it is recommended to start ACE-inhibitors with a low dose and withdraw diuretics one or two days before in order to restore the intravascular volume.

Angiotensin-Converting Enzyme Inhibitors↗