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Biomedical subjects

M F Rousseau

Publications and source records attributed to M F Rousseau.

At least 19 recordsLinked to original sources

Contractile state is the major determinant of functional outcome in patients with left ventricular dysfunction treated with enalapril.

Large-scale drug trials have focused primarily on mortality and morbidity and less on the functional state of the myocardium. A model was developed to assess myocardial contractile state in patients with left ventricular (LV) dysfunction and to address the questions of differences in function between patients with and without overt heart failure, effects of enalapril, and best predictors of functional outcome. Pressure-angiographic data were obtained from 16 patients with overt heart failure and 47 without heart failure. Repeat studies were conducted in 41 patients following 1 year's treatment with enalapril or placebo. Left ventricular silhouettes were divided into 18 segments to estimate regional ejection fraction, wall stress and myocardial damage (% myocardial damage). Contractile state was assessed and ranked by ejection rate-preload-afterload relationships and by a score method based on 10 myocardial and ventricular function parameters. End-diastolic and end-systolic volumes (EDV, ESV) were significantly greater (P < 0.001), ejection fraction (EF) lower (P < 0.009), % myocardial damage greater (P < 0.008) and contractile state more depressed in patients with overt heart failure. Changes in EDV and ESV (delta placebo vs delta enalapril) were significant (delta EDV, P < 0.003; delta ESV, P < 0.014). Directional shifts in the diastolic pressure-volume relationships with enalapril or placebo depended primarily on the basal contractile state and diastolic volume range. The best single predictors of post-treatment EF were the score index (a surrogate parameter for the contractile state) and ESV. Added benefits of enalapril include the prevention of further dilatation in patients with less depressed contractile state and delay in the onset of heart failure. Asymptomatic patients with LV dysfunction should also be considered for angiotensin converting enzyme (ACE) inhibitor therapy.

Blood Pressure

Progression of left ventricular dysfunction secondary to coronary artery disease, sustained neurohormonal activation and effects of ibopamine therapy during long-term therapy with angiotensin-converting enzyme inhibitor.

Left ventricular function and neurohormonal status in patients with heart failure remaining symptomatic during therapy with angiotensin-converting enzyme inhibitors were assessed, and the effects of dopaminergic receptor stimulation in this setting were determined. Neurohormonal and left ventricular function (radionuclide angiography) data were obtained in 19 patients with symptomatic ischemic heart failure. Measurements were repeated after 4 to 6 weeks of therapy with the dopamine agonist ibopamine (100 mg, 3 times/day) or placebo administered in a double-blind, randomized, parallel group design. At baseline, despite therapy with enalapril, the angiotensin II levels (mean 39.4 pg/ml; p < 0.01 vs controls) were significantly increased, as were plasma norepinephrine (497 +/- 240 pg/ml; p < 0.01 vs controls), endothelin-1, atrial natriuretic peptide and arginine vasopressin. Moreover, in comparison with pretreatment values, left ventricular ejection fraction had decreased substantially (-9.1%) in patients with plasma norepinephrine > or = 600 pg/ml, but not in those with lower values of norepinephrine. With ibopamine, plasma norepinephrine decreased from 516 +/- 241 to 391 +/- 208 pg/ml (n = 8; p < 0.025 vs placebo), whereas it increased with placebo. In conclusion, the neurohormonal control provided by an angiotensin-converting enzyme inhibitor is reduced in a large subset of patients during prolonged therapy; ibopamine appears to be a potentially useful drug to improve neurohormonal control in this setting.

Aged

Effects of ranolazine on left ventricular regional diastolic function in patients with ischemic heart disease.

To assess the effects of ranolazine, a new antiischemic drug, on regional myocardium of the left ventricle, left ventricular (LV) hemodynamic and angiographic data were obtained in 15 patients with previous transmural myocardial infarction before and after intravenous infusion of ranolazine (200 or 500 micrograms/kg body weight). LV angiogram was analyzed by the area method and was divided into six segments. Regional LV segments were classified as normal (perfused by intact coronary vessels, n = 20), ischemic (perfused by stenotic vessels but without ECG evidence suggesting myocardial necrosis, n = 25), or infarcted (total coronary occlusion and with the ECG evidence for necrosis, n = 45). Regional area fractional shortening, peak filling rate, and segmental wall motion during isovolumic relaxation period were analyzed. After ranolazine, regional area fractional shortening was unchanged in all segments. However, regional peak filling rate was decreased in the normal segments (1499 +/- 315 to 1368 +/- 303 mm2/sec, p < 0.05). In the ischemic segments, by contrast, the administration of ranolazine significantly increased the regional peak filling rate (1050 +/- 410 to 1133 +/- 439 mm/sec, p < 0.05) and regional wall lengthening during the isovolumic relaxation period (0.9 +/- 4.1% to 2.8 +/- 5.7% of end-diastolic segmental area, p < 0.05), which indicates an improvement of regional diastolic function. Infarct segments were little affected by ranolazine. Thus, ranolazine improves diastolic function of the noninfarcted myocardium under chronic ischemic conditions and also may exert a mild negative lusitropic effect on the normal myocardium, although the former beneficial effect appears to be more clinically important.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetanilides

Neurohormones in patients with ischemic left ventricular dysfunction.

Measurements of plasma neurohormones in patients with left ventricular dysfunction are generally performed for research purpose rather than for diagnostic purpose or to guide therapy. These studies have shown that in patients with left ventricular dysfunction, several neurohormonal systems were activated, even in the absence of symptoms of congestive heart failure. This suggested that the cardiovascular system was not in a steady state and pointed out potential culprits for the progression of the disease. It has also been shown that the levels of several of these markers, particularly plasma norepinephrine, had an important prognostic value. Another value of neurohormonal studies obviously is the design of new therapeutic approaches aimed at improving symptoms and prognosis. In this respect, important therapeutic successes have been obtained with agents that interfere with the actions of some of these neurohormonal systems, such as with the use of the angiotensin-converting enzyme (ACE) inhibitors, particularly captopril and enalapril, and to a lesser extent, with beta-blockers. It can therefore be expected that, in the future, most patients with severe ischemic dysfunction will be treated with an ACE inhibitor. Nonetheless, neurohormonal control is not complete with these drugs; powerful vasoconstrictor forces, such as endothelin-1, remain activated, and an escape of angiotensin II from the control of ACE inhibition may exist. Thus, morbidity (e.g., progression towards congestive heart failure and angina pectoris) and mortality remain high despite treatment with ACE inhibitors. In the search for future improvements, the new generation of long-acting dihydropyridines is worth considering. Their afterload reducing action, coupled with powerful coronary vasodilation, might hypothetically delay the progression of ischemic LV dysfunction.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors

Effects of nisoldipine therapy on myocardial perfusion and neuro-hormonal status in patients with severe ischaemic left ventricular dysfunction.

The effects of nisoldipine on regional myocardial perfusion and neuro-hormonal status were assessed in a double-blind, placebo-controlled study of 32 patients. All patients had ischaemic left ventricular dysfunction, with a left ventricular ejection fraction between 25% and 35%; per protocol, they were stratified according to concomitant use of ACE inhibitors. After baseline measurements at rest, including single photon emission computed tomography (SPECT) with Tc-MIBI, plasma neuro-hormones (norepinephrine, renin, arginine vasopressin, atrial natriuretic peptide) and echocardiography, the patients were randomized to nisoldipine (core coat tablet, 20 mg once daily; n = 16) or placebo (n = 16). Measurements were repeated after 8 weeks. SPECT data were analysed qualitatively (visual comparison by blinded observer) and quantitatively to derive an index of hypoperfusion representing the percentage of the left ventricular mass with Tc-MIBI activity below normal. At baseline, all patients had left ventricular areas with reduced Tc-MIBI uptake and 29 patients also had increases in plasma neuro-hormones. With nisoldipine, the extent of hypoperfusion (quantitative analysis) was reduced in 8/14 patients vs only 2/14 patients with placebo (P = 0.046, 2-tailed test). The benefit of nisoldipine was similar in patients with or without ACE inhibitor therapy and was also confirmed by the visual analysis of the data. Further, none of the neuro-hormones examined was significantly modified by nisoldipine. Thus, chronically underperfused areas are present at rest in patients with ischaemic left ventricular dysfunction, and nisoldipine significantly improved Tc-MIBI uptake in these areas without evidence of detrimental changes in plasma neuro-hormones.(ABSTRACT TRUNCATED AT 250 WORDS)

Arginine Vasopressin

Intracardiac angiotensin-converting enzyme inhibition improves diastolic function in patients with left ventricular hypertrophy due to aortic stenosis.

BACKGROUND: Cardiac hypertrophy is associated with elevated intracardiac angiotensin-converting enzyme activity, which may contribute to diastolic dysfunction. METHODS AND RESULTS: We infused enalaprilat (0.05 mg/min) for 15 minutes into the left coronary arteries of 20 adult patients with left ventricular (LV) hypertrophy due to aortic stenosis (mean aortic valve area, 0.7 +/- 0.2 cm2) and 10 patients with dilated cardiomyopathy (mean ejection fraction, 35 +/- 4%) and assessed (1) simultaneous changes in LV micromanometer pressure and dimensions, (2) LV regional wall motion analyzed by the area method, and (3) Doppler flow-velocity profiles. Systemic neurohormonal activation did not occur with the selective left coronary artery infusion; there were no changes in plasma renin activity, angiotensin-converting enzyme activity, or atrial natriuretic peptide. In patients with aortic stenosis, LV end-diastolic pressure declined from 25 +/- 2 to 20 +/- 2 mm Hg (P < .05). LV pressure-volume and LV pressure-dimension relations showed downward shifts by ventriculography and echocardiography, respectively, indicating improved diastolic distensibility. Regional area change during isovolumic relaxation increased in the anterior segments perfused with enalaprilat but decreased in the inferior segments, indicating acceleration of isovolumic relaxation in the anterior segments and reciprocal shortening in the inferior segments. Regional peak filling rate increased in the anterior segments but not in the inferior segments, and the regional area stiffness constant decreased in the anterior segments but not in the inferior segments. There were no changes in heart rate, cardiac output, or right atrial pressure, excluding alterations in right ventricular/pericardial constraint. In contrast, in the patients with dilated cardiomyopathy the decrease in LV end-diastolic pressure from 22 +/- 2 to 18 +/- 2 mm Hg (P < .05) was accompanied by a significant fall in right atrial pressure (9 +/- 1 to 6 +/- 1 mm Hg), implicating alterations in pericardial constraint. The patients with dilated cardiomyopathy showed no improvement in regional diastolic relaxation, filling, or distensibility. CONCLUSIONS: Intracoronary enalaprilat at a dosage that did not cause systemic neurohormonal activation improved LV diastolic chamber distensibility and regional relaxation and filling in patients with LV hypertrophy due to aortic stenosis. In contrast, these effects of intracoronary enalaprilat on diastolic function were not observed in patients with dilated cardiomyopathy who did not have concentric hypertrophy. These observations support the hypothesis that the cardiac renin-angiotensin system is activated in patients with concentric pressure-overload hypertrophy and that this activation may contribute to impaired diastolic function.

Aged

Effects of long-term enalapril therapy on left ventricular diastolic properties in patients with depressed ejection fraction. SOLVD Investigators.

BACKGROUND: The aim of the present study was to analyze the changes in left ventricular diastolic function that occur in patients with chronic severe left ventricular systolic dysfunction in the absence or presence of prolonged therapy with an angiotensin converting enzyme inhibitor. METHODS AND RESULTS: Left ventricular function data (cineangiography plus Millar, frame-by-frame analysis) and right ventricular volumes (radionuclide angiography) were obtained at baseline and after an average follow-up of 12.4 months in 42 patients with a left ventricular ejection fraction of 35% or less. After baseline measurements, the patients were randomized to placebo (n = 16) or enalapril (10 mg BID, n = 26). In the placebo group, the changes in left ventricular function were characterized by increases in end-diastolic (159 +/- 43 to 170 +/- 44 mL/m2) and end-systolic (119 +/- 38 to 128 +/- 49 mL/m2) volumes accompanied by a downward and rightward shift of the diastolic pressure-volume relation. In contrast, decreases in end-diastolic (166 +/- 43 to 156 +/- 47 mL/m2) and end-systolic (125 +/- 43 to 111 +/- 42 mL/m2) volumes accompanied by a slight upward and leftward shift of the diastolic pressure-volume relation were noted in the enalapril group. These changes in left ventricular volumes were significantly different between groups (both P < .005) but were not attended by changes in left ventricular end-diastolic pressure, in time constant of isovolumic pressure decrease, or in right ventricular volumes. However, the chamber stiffness constant beta decreased from 0.044 +/- 0.027 to 0.032 +/- 0.019 mL-1/m2 in the placebo group, whereas it increased insignificantly in the enalapril group (0.040 +/- 0.028 to 0.041 +/- 0.028 mL-1/m2). These changes in chamber stiffness constant beta between baseline and follow-up were significantly different between placebo and enalapril groups (P < .05). Another index of chamber compliance, delta V/delta P, also confirmed the presence of opposite changes in left ventricular chamber compliance in the placebo group and in the enalapril group. The mean diastolic wall stress increased with placebo but not with enalapril (+51 versus -13 kdyn/cm2; P < .04) whereas left ventricular mass and the indexes of left ventricular sphericity tended to improve in the enalapril group. The changes in plasma levels of norepinephrine, atrial natriuretic peptide, and arginine vasopressin were, however, comparable in both groups. CONCLUSIONS: The data indicate that in patients with severe systolic left ventricular dysfunction, the progressive left ventricular dilatation was accompanied by a decrease in left ventricular chamber stiffness; enalapril therapy was able to prevent or partially reverse these changes and tended to reduce left ventricular mass and ventricular sphericity. Those changes were suggestive of partial reversal of left ventricular remodeling by enalapril administration.

Adult

Diastolic function of the nonfilling human left ventricle.

OBJECTIVES: To investigate an early-diastolic left ventricular suction effect in humans, tip-micromanometer left ventricular pressure recordings were obtained in patients with mitral stenosis at the time of balloon inflations during percutaneous mitral valvuloplasty performed with a self-positioning Inoue balloon, which fits tightly in the mitral orifice. BACKGROUND: When mitral inflow was impeded in anesthetized dogs, left ventricular pressure decayed to a negative asymptote value. This negative asymptote value was consistent with an early diastolic suction effect. METHODS: Tip-micromanometer left ventricular pressure recordings were obtained in 23 patients with symptomatic mitral stenosis at the time of balloon inflations during percutaneous mitral valvuloplasty performed with a self-positioning Inoue balloon. RESULTS: The left ventricular diastolic asymptote pressure (P(asy)) was determined in 47 nonfilling beats with a sufficiently long (greater than 200 ms) diastolic time interval (that is, the interval from minimal first derivative of left ventricular pressure to left ventricular end-diastolic pressure) and equaled 2 +/- 3 mm Hg for beats with normal intraventricular conduction and 3 +/- 2 mm Hg for beats with aberrant intraventricular conduction. Left ventricular angiography was performed in five patients during the first inflation of the Inoue balloon at the time of complete balloon expansion. Left ventricular end-diastolic volume of the nonfilling beats averaged 38 +/- 14 ml and was comparable to the left ventricular end-systolic volume (39 +/- 19 ml) measured during baseline angiography before mitral valvuloplasty. Time constants of left ventricular pressure decay were calculated on 21 nonfilling beats with a diastolic time interval greater than 200 ms, normal intraventricular conduction and peak left ventricular pressure greater than 50 mm Hg. Time constants (T0 and TBF) derived from an exponential curve fit with zero asymptote pressure and with a best-fit asymptote pressure were compared with a time constant (T(asy)) derived from an exponential curve fit with the measured diastolic left ventricular asymptote pressure. The value for T(asy) (37 +/- 9 ms) was significantly smaller than that for TBF (68 +/- 28 ms, p less than 0.001) and the value for the measured diastolic left ventricular asymptote pressure (2 +/- 4 mm Hg) was significantly larger than that for the best-fit asymptote pressure (-9 +/- 11 mm Hg, p less than 0.001). T0 (44 +/- 20 ms) was significantly (p less than 0.01) different from TBF but not from T(asy). CONCLUSIONS: During balloon inflation of a self-positioning Inoue balloon, left ventricular pressure decayed continuously toward a positive asymptote value and left ventricular cavity volume was comparable to the left ventricular end-systolic volume of filling beats. In these nonfilling beats, the best-fit asymptote pressure was unrelated to the measured asymptote pressure and T0 was a better measure of T(asy) than was TBF. Reduced internal myocardial restoring forces, caused by different extracellular matrix of the human heart, reduced external myocardial restoring forces caused by low coronary perfusion pressure during the balloon inflation and inward motion of the balloon-occluded mitral valve into the left ventricular cavity could explain the failure to observe significant diastolic left ventricular suction in the human heart.

Adult

Analysis of the mechanisms underlying the changes in left ventricular filling dynamics during oral nisoldipine therapy in patients with anterior myocardial infarction.

The aim of this study was to clarify the mechanisms responsible for the increase in early filling rate observed during oral nisoldipine therapy in patients with ischaemic left ventricular (LV) dysfunction. For that purpose, the global and regional LV function was analysed before and after 2 months of double-blind monotherapy with nisoldipine (10 mg twice daily) or a placebo, in 17 patients with a previous anterior myocardial infarction. The baseline LV ejection fraction ranged from 34-51% and no patient had heart failure. Compared to the placebo, nisoldipine significantly lowered LV systolic pressure and end-diastolic pressure (-3 mmHg vs +6 with the placebo; P less than 0.01) and the LV pressure at the time of mitral opening (-2.0 +/- 3.4 mmHg vs +3.5 +/- 3.0; P less than 0.01). Despite this reduction in driving pressure, the global LV early peak filling rate improved with nisoldipine only and this improvement was related to a selective increase in expansion rate of the anterior areas, from 1010 +/- 360 to 1339 +/- 496 mm2.s-1 (P less than 0.001). The time to regional peak filling rate (-8%; P less than 0.01), the asynchrony of diastolic wall motion and the regional ejection fraction (33 +/- 10 to 38 +/- 12%; P less than 0.001) also improved in the anterior areas with nisoldipine but not with the placebo. In contrast, in the inferior, control zones, the regional ejection fraction and filling rate remained unchanged, both when compared to baseline and to the placebo.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Effects of intravenous epinine administration on left ventricular systolic performance, coronary hemodynamics, and circulating catecholamines in patients with heart failure.

Twenty-six patients with mild to moderate heart failure were studied to determine the effects of epinine infusion (at a rate producing plasma levels similar to those measured after oral administration of 100 mg of the prodrug ibopamine) on left ventricular (LV) function (14 patients), and coronary flow and circulating catecholamines (12 patients). The only significant hemodynamic change at an infusion rate of 0.5 microgram/kg/min was a 9% (p less than 0.05) decrease in systemic vascular resistance (SVR). At an infusion rate of 1 microgram/kg/min (mean free epinine plasma levels 14.3 +/- 3.7 ng/ml), heart rate (HR), dP/dtmax (1,405 +/- 255 to 1,490 +/- 320 mm Hg, NS), (dP/dt)/DP40, and the relaxation rate remained unchanged, but the ejection fraction (EF) increased from 32 to 38% (p less than 0.001), cardiac output (CO) increased, and SVR decreased by 22% (p less than 0.05). In a separate group of 12 patients, epinine infusion at rates of 0.5-1 microgram/kg/min produced no significant changes in coronary blood flow or myocardial oxygen uptake. At these infusion rates, arterial norepinephrine (NE) and dopamine (DA) levels decreased slightly and arterial and coronary sinus epinephrine increased. In conclusion, epinine, at concentrations similar to those achieved during therapeutic use of ibopamine, had negligible effect on myocardial contractility and relaxation rate in heart failure patients. Cardiac pump function was improved by a decrease in SVR rather than by inotropic stimulation. The data also suggest that these low concentrations of epinine may modulate the sympathetic nervous system, but further studies are needed to determine whether this effect could have clinical significance.

Adult

Effects of the angiotensin converting enzyme inhibitor enalapril on the long-term progression of left ventricular dysfunction in patients with heart failure. SOLVD Investigators.

BACKGROUND: In patients with heart failure, activation of the renin-angiotensin system is common and has been postulated to provide a stimulus for further left ventricular (LV) structural and functional derangement. We tested the hypothesis that chronic administration of the angiotensin converting enzyme (ACE) inhibitor enalapril prevents or reverses LV dilatation and systolic dysfunction among patients with depressed ejection fraction (EF) and symptomatic heart failure. METHODS AND RESULTS: We examined subsets of patients enrolled in the Treatment Trial of Studies of Left Ventricular Dysfunction (SOLVD). Fifty-six patients with mild to moderate heart failure underwent serial radionuclide ventriculograms, and 16 underwent serial left heart catheterizations, before and after randomization to enalapril (2.5-20 mg/day) or placebo. At 1 year, there were significant treatment differences in LV end-diastolic volume (EDV; p less than 0.01), end-systolic volume (ESV; p less than 0.005), and EF (p less than 0.05). These effects resulted from increases in EDV (mean +/- SD, 136 +/- 27 to 151 +/- 38 ml/m2) and ESV (103 +/- 24 to 116 +/- 24 ml/m2) in the placebo group and decreases in EDV (140 +/- 44 to 127 +/- 37 ml/m2) and ESV (106 +/- 42 to 93 +/- 37 ml/m2) in the enalapril group. Mean LVEF increased in enalapril patients from 0.25 +/- 0.07 to 0.29 +/- 0.08 (p less than 0.01). There was a significant treatment difference in LV end-diastolic pressure at 1 year (p less than 0.05), with changes paralleling those of EDV. The time constant of LV relaxation changed only in the placebo group (p less than 0.01 versus enalapril), increasing from 59.2 +/- 8.0 to 67.8 +/- 7.2 msec. Serial radionuclide studies over a period of 33 months showed increases in LV volumes only in the placebo group. Two weeks after withdrawal of enalapril, EDV and ESV increased to baseline levels but not to the higher levels observed with placebo. CONCLUSIONS: In patients with heart failure and reduced LVEF, chronic ACE inhibition with enalapril prevents progressive LV dilatation and systolic dysfunction (increased ESV). These effects probably result from a combination of altered remodeling and sustained reduction in preload and afterload.

Angiotensin-Converting Enzyme Inhibitors

Effects of prolonged nisoldipine administration on the "hibernating" myocardium.

To assess the effects of nisoldipine on chronically underperfused myocardial areas ("hibernating myocardium"), the global and regional left ventricular (LV) function was analyzed before and after 2 months of double-blind monotherapy with nisoldipine (10 mg twice daily) or placebo in 17 patients with a previous anterior myocardial infarction. The baseline LV ejection fraction ranged from 34 to 51%, and no patient had heart failure. Compared to placebo, nisoldipine significantly lowered the LV systolic pressure and end-diastolic pressure (-3 vs. +6 mmHg with placebo; p < 0.01) and the LV pressure at the time of mitral valve opening (-2.0 +/- 3.4 vs. +3.5 +/- 3.0 mm Hg; p < 0.01). Despite this reduction in driving pressure, the global LV early peak filling rate improved only with nisoldipine and this improvement was related to a selective increase in the expansion rate of the anterior areas, from 1,010 +/- 360 to 1,339 +/- 496 mm2/s (p < 0.001). The time to regional peak filling rate (-8%; p < 0.01), the asynchrony of diastolic wall motion, and the regional ejection fraction (33 +/- 10 to 38 +/- 12%; p < 0.001) also improved in the anterior areas with nisoldipine but not with placebo. In contrast, in the inferior control zones, the regional ejection fraction and filling rate remained unchanged, both when compared to baseline and to placebo. In conclusion, prolonged nisoldipine therapy had no significant effect on the normal myocardium but improved systolic and diastolic function in hypokinetic areas.(ABSTRACT TRUNCATED AT 250 WORDS)

Double-Blind Method

Effects of a new metabolic modulator, ranolazine, on exercise tolerance in angina pectoris patients treated with beta-blocker or diltiazem.

Ranolazine (RS 43285) is a new piperazine derivative with anti-ischemic properties attributed to a modulation of myocardial metabolism. Its antianginal action was assessed in 104 patients recruited in a double-blind, crossover, randomized study comparing placebo with a single dose of ranolazine (10, 60, 120, and 240 mg). All patients had chronic stable angina pectoris and remained symptomatic (at least 0.1 mV ST-segment depression and angina during prestudy exercise testing) despite treatment with a beta-blocker or with diltiazem. No significant effects of ranolazine on exercise duration or time to angina were observed after the dose of 10, 60, and 120 mg. After the 240 mg dose, however, significant improvement in exercise duration (+13.1% in the combined group, two-tailed p = 0.002; +14.3% in the beta-blocker group, p = 0.009; +11.9% in the diltiazem group, p = 0.06), in time to angina (+56.8 s, p = 0.008), and in time to 1 mm ST-segment depression was observed. The cumulative proportion of patients who improved their time to angina by at least 30 s above placebo were 25, 42, 50, and 72% with the doses of 10, 60, 120, and 240 mg, respectively. Sixty-seven percent of the patients with ranolazine plasma levels above 500 ng/ml improved their time to angina against 40% at plasma levels below 500 ng/ml and summed ST-segment depression during exercise and recovery was also significantly reduced at these plasma concentrations. Both heart rate and arterial pressure at rest and at peak exercise were unchanged after ranolazine, 240 mg.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetanilides

Difference in mortality between patients treated with captopril or enalapril in the Xamoterol in Severe Heart Failure Study.

The double-blind, placebo-controlled, multinational trial Xamoterol in Severe Heart Failure randomized 290 patients treated with captopril and 217 treated with enalapril to xamoterol or placebo. At the end of the 100-day follow-up period, the cumulative probability of survival in patients with coronary artery disease or with dilated cardiomyopathy decreased in the captopril group (90.3%) when compared with the enalapril group (97.2%). The excess mortality in the captopril group could not be related to the indexes of the severity of heart failure, such as baseline exercise duration, functional class, cardiothoracic ratio, ejection fraction or dose of diuretic drugs. Furthermore, the excess in mortality was seen in all subsets of patients examined as well as across countries. Examination of the dosing regimen used, however, suggests that insufficient daily dosage of captopril or the inadequate schedule of administration, or both, might be responsible for different degrees of angiotensin-converting enzyme inhibition between the enalapril and captopril groups and hence for the difference in mortality. It is important in future clinical trials to determine to what extent complete circadian angiotensin-converting enzyme inhibition is necessary to provide the full benefit of this therapy in heart failure.

Adrenergic beta-Agonists

Dopaminergic drugs in the management of chronic heart failure.

The importance of the dopaminergic system in heart failure is unknown and the therapeutic potential of orally active compounds stimulating dopaminergic receptors has yet to be established. Despite similar acute haemodynamic changes in heart failure and despite a comparable profile of receptor stimulation, oral levodopa (the prodrug of dopamine) and oral ibopamine (the prodrug of epinine) produce opposite effects on plasma norepinephrine and have different pharmacokinetics. Placebo-controlled studies indicate a beneficial effect of ibopamine on exercise tolerance in patients with heart failure, whereas invasive evaluation of left ventricular function indicate that at the doses used in these trials, ibopamine does not act as a positive inotropic drug but rather as a vasodilator. This suggests that DA1 and DA2 receptor stimulation may be beneficial in heart failure. Further studies are, however, needed to specify the exact role of this therapeutic approach in comparison with other agents, such as ACE inhibitors, also able to modulate neuro-humoral activation in heart failure.

Adult