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[Hemodynamic and clinical effects and treatment tolerance with low-dose iv amrinone in patients with refractory heart failure: a multicenter study. The Group for Research on Amrinone in the Treatment of Refractory Heart Failure].

We report the results of a multicenter study performed on 70 patients with severe congestive heart failure of different etiology (ischemic, idiopathic, alcoholic, valvular and secondary to antiblastic drugs) to evaluate the clinical and hemodynamic effects and tolerability of low dose amrinone iv (0.75 mg bolus followed by a continuous 48-hour infusion at the dose of 5-10 mcg/kg/min). Forty-one patients underwent invasive hemodynamic monitoring with right heart Swan-Ganz catheterization. Heart rate (HR), systolic (SBP) and diastolic blood pressure (DBP), mean arterial pressure (MAP), cardiac index (CI), stroke volume index (SVI), stroke work index (SWI), right atrial pressure (RAP), pulmonary wedge pressure (PWP), mean arterial pulmonary pressure (PAP), systemic vascular resistance (SVR), pulmonary vascular resistance (PVR) and total pulmonary resistance (TPR) were evaluated before and after 1, 4, 6, 24 and 48 hours of amrinone infusion and 2 and 4 hours after amrinone withdrawal. Clinical parameters (dyspnea, orthopnea, pulmonary congestion) were quantitated using a score; diuresis was assessed hourly; hematochemical parameters were evaluated before and 48 hours after amrinone infusion. HR and MAP were not significantly changed; CI, SVI and SWI presented, respectively, a significant 31.6, 55.1 and 72% increment, which peaked 48 hours after amrinone infusion. Concomitantly RAP, PAP, PWP, SVR, PVR and TPR were significantly reduced to 36.6, 22, 23.6, 9.4, 39.2 and 37.7% of the basal values, respectively. Two and 4 hours after amrinone withdrawal, hemodynamic changes similar to those observed acutely, were still present. Diuresis increased from 58.25 ml/hr to 113.18 ml/hr after 24 hours (+95%) and to 88.9 ml/hr (+53%) after 48 hours.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Dobutamine potentiates amrinone's beneficial effects in moderate but not in advanced heart failure. 31P-MRS in isolated hamster hearts.

There is controversy as to whether potent inotropic agents are beneficial or detrimental in moderate to severe heart failure. Accordingly, we studied the effects of amrinone, amrinone plus dobutamine, and dobutamine alone on mechanical performance, myocardial oxygen consumption, and high energy phosphate metabolism in different stages of congestive heart failure in the cardiomyopathic Syrian hamster. In hearts with moderate heart failure, administration of amrinone, amrinone plus dobutamine, and dobutamine alone increased developed pressure significantly, whereas the phosphorylation potential increased significantly only with amrinone and amrinone plus dobutamine. In hearts with advanced heart failure, administration of amrinone and amrinone plus dobutamine increased developed pressure significantly, whereas dobutamine alone had no effect. The phosphorylation potential improved significantly only with amrinone. Thus, amrinone improved mechanical performance and mitochondrial activity in both heart failure states. Dobutamine potentiated amrinone's beneficial effects in moderate heart failure, but negated the positive inotropic effect of amrinone in advanced heart failure. Therefore, hearts responded differently to potent inotropic agents depending on the severity of heart failure.

Amrinone

The biphasic effect of amrinone on tension development in newborn mammalian myocardium.

The effect of the bipyridine compound, amrinone, on tension generation in neonatal and adult myocardium was studied over the concentration range 30-500 micrograms/mL. Increasing concentrations of amrinone caused a monotonic increase in twitch tension and the rate of tension development in adult papillary muscles. In contrast, lower concentrations of amrinone (30 and 100 micrograms/mL) caused a decrease in twitch tension and dP/dt in newborn papillary muscles, whereas 500 micrograms/mL amrinone caused a significant increase in both parameters in the younger age group. Lactic acid, used to dissolve amrinone, was shown to have no effect on tension development. Half relaxation time was decreased in adult preparations at all concentrations of amrinone. In comparison, the decrease in half relaxation time produced by amrinone in the newborn was significant only at a concentration of 500 micrograms/mL. Action potential duration in the newborn was significantly shortened by 30 micrograms/mL amrinone. In voltage clamp experiments, 30 micrograms/mL amrinone was shown to have no effect on tension accompanying two second voltage clamp steps to the plateau potential in newborn myocardium. Developed tension at 400 ms into the clamp step, final tension, and the ratio of early peak tension to final tension were all unchanged by the low concentration of amrinone. In contrast, 500 micrograms/mL amrinone in the newborn increased tension at 400 ms and final tension but had no effect on the ratio of early peak tension to final tension. These results suggest that the negative inotropic effect of lower concentrations of amrinone on neonatal myocardium is the result of changes in action potential configuration and not a true alteration in basic mechanisms of intracellular Ca2+ regulation.(ABSTRACT TRUNCATED AT 250 WORDS)

Action Potentials

[Amrinone (Wincoram)--a new positive inotropic and vasodilator agent].

The bipyridine derivative amrinone is a specific phosphodiesterase III blocking agent. In vitro and in vivo studies show a dose-dependent increase in myocardial contractility induced by amrinone. In patients with congestive heart failure, the inotropic and vasodilator effects of amrinone contribute to cardiac improvement. When amrinone is used, the increase in myocardial oxygen consumption due to increased contractility is offset by the reductions in preload and afterload. In hearts with very high wall tension, myocardial oxygen consumption may even decrease with amrinone. Amrinone therapy is not accompanied by significant increases in heart rate. Tachyphylaxis has not been observed. The elimination half-life ranges between 2.5 and 3.5 h. A large quantity of amrinone is excreted unchanged, and therefore in cases of renal impairment the possibility of cumulation exists. The main adverse reaction of amrinone is a reversible thrombocytopenia induced by a dose-dependent decrease in platelet survival time. Therefore, frequent platelet counts are necessary when amrinone is administered. Numerous studies in patients with chronic congestive heart failure confirmed the beneficial hemodynamic effects of amrinone. Experience in the treatment of acute perioperative heart failure with amrinone are still limited, but the present results are encouraging; an additive effect of amrinone to catecholamines seems especially promising in the therapy of severe postoperative low-cardia-output syndrome.

Amrinone

Effects of amrinone on thrombin-induced platelet-derived growth factor-like protein secretion from endothelial cells.

Endothelial cells (EC) secrete platelet-derived growth factor (PDGF)-like protein, which is a potent mitogen to smooth muscle and connective tissue cells. The purpose of this study was to determine if amrinone, a phosphodiesterase inhibitor, could inhibit PDGF-like protein secretion on the basis of its ability to increase cAMP. Human umbilical artery endothelial cells (HUAEC) (n = 7) were preincubated for 4 h with amrinone (10 micrograms/mL) before coincubation with thrombin (10 IU/mL) and amrinone (10 micrograms/mL) for 18 h. The supernatant was then assayed for the presence of both PDGF-like protein by using a competitive 125I-PDGF radioreceptor inhibition assay, and cAMP by using an RIA. Thrombin-induced PDGF-like protein secretion from HUAEC was significantly inhibited by amrinone (7.8 +/- 1.6 fmol/10(6) EC) when compared with thrombin alone (12.1 +/- 2.4 fmol/10(6) EC) (p less than 0.05). Amrinone alone had no effect on baseline PDGF-like protein secretion. Amrinone inhibition of thrombin-induced PDGF-like protein secretion was comparable whether amrinone was added to HUAEC 4 or 0 h before thrombin, and it was dose dependent with a maximal inhibition of 82.7% by amrinone (160 micrograms/mL). In contrast, IL-1 alpha (10 micrograms/mL) and tumor necrosis factor (100 ng/mL) induced less secretion of PDGF-like protein from HUAEC, and this secretion was not inhibited by amrinone. Amrinone (10 micrograms/mL) significantly increased secretion of cAMP from HUAEC from a baseline value of 6.4 +/- 0.4 pmol/10(6) EC to 10.6 +/- 0.1 pmol/10(6) EC (p less than 0.01). We conclude that amrinone inhibits thrombin-induced PDGF-like protein secretion from HUAEC.(ABSTRACT TRUNCATED AT 250 WORDS)

Amrinone

Pharmacokinetics and hemodynamics of amrinone in patients with chronic cardiac failure of diverse etiology.

The pharmacokinetics of amrinone and its relationship to ventricular function were assessed in 15 patients with chronic cardiac failure following the administration of a single 100 mg oral dose. Patients examined had Class II (1 patient), Class III (13 patients) and Class IV (1 patient) heart failure as characterized by the New York Heart Association classification. Blood samples were obtained following amrinone administration at selected times for 8 hours following the dose. Cardiac output was assessed serially for 5 hours following amrinone dosing. Mean (SD) peak plasma concentrations of amrinone (2.1 (1.1) mcg/ml) were obtained 0.5 to 2 hours after drug administration. The mean (SD) apparent oral clearance, apparent volume of distribution at steady state and half-life of amrinone were 0.23 (0.13) L/hr/kg, 1.2 (0.4) L/kg, and 4.8 (3.0) hr. Peak increases in cardiac index averaged 50% of baseline values and improvement was maintained at least 5 hours following amrinone dosing when compared to baseline cardiac index (p less than 0.05). Examination of the relationship between cardiac index corrected for baseline and amrinone plasma concentrations within individuals yielded strong and highly significant relationships (r greater than 0.90; p less than 0.025) in five patients, while in the remaining patients, either no relationship existed or insufficient data was available for analysis. When the data from all patients were pooled, a modest though significant relationship (r = 0.67; p less than 0.01) existed between cardiac index corrected for baseline and the post-absorptive, post-distributive amrinone plasma concentration. No difference in response to amrinone as a function of failure etiology or functional aerobic capacity was evident. Evaluation of the relationships between the mean improvement in cardiac index versus amrinone plasma concentration, as well as the time courses of these parameters indicate that the site of action of amrinone may be pharmacokinetically distinguishable from plasma and the tissues in instantaneous equilibrium with plasma.

Acetylation

Dose-related cardiovascular effects of amrinone during enflurane anesthesia in the dog.

The dose-related cardiovascular effects of amrinone, a synthetic cardiotonic and vasodilating drug, were investigated in dogs anesthetized with enflurane (2.2-2.4% end-tidal concentration). Twelve mongrel dogs were divided into two groups of six animals: an enflurane group (E) that received only enflurane, and an amrinone group (A). In the latter group each dog received the following sequential boluses and 30-min infusions: 1) the amrinone solvent alone; 2) amrinone, 1 mg/kg + 5 micrograms X kg-1 X min-1; 3) amrinone, 2 mg/kg + 10 micrograms X kg-1 X min-1; 4) amrinone, 4 mg/kg + 20 micrograms X kg-1 X min-1. Over the course of the experiment, 2.2-2.4% end-tidal enflurane alone resulted in a gradual decrease in cardiac index (CI), stroke volume index (SVI), and the maximum left ventricular dP/dt (LV dP/dtmax), without changes in heart rate (HR), mean arterial pressure (MAP), central venous pressure (CVP), or pulmonary capillary wedge pressure (PCWP) in group E. Significant differences from group E after 30 min of the lowest dose of amrinone included higher CI and SVI with lower systemic vascular resistance (SVR). The medium dose of amrinone, in addition to the effects already observed with the lowest dose of amrinone, decreased MAP and pulmonary vascular resistance (PVR), and increased LV dP/dtmax, when compared to group E only. Furthermore, the highest dose of amrinone caused lower pulmonary artery mean pressure (PAM), PCWP, and higher HR with shortened PR interval. The differences in MAP, CI, LV dP/dtmax, PCWP, PAM, PR interval, SVR, and PVR compared to E were still significant 30 min after the cessation of the highest dose. This study shows that the myocardial depressant effects of enflurane in an unstimulated canine model with a previously healthy heart can be overcome in a dose-related manner by amrinone. In contrast to other vasodilators, no reflex increase in plasma catecholamines was seen.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminopyridines

Additive effects of dobutamine and amrinone on myocardial contractility and ventricular performance in patients with severe heart failure.

The effects of amrinone, dobutamine, and a combination of the two drugs on peak positive left ventricular dP/dt and left ventricular performance were evaluated in 11 patients with chronic congestive heart failure. When administered alone, both dobutamine (10.9 micrograms/kg/min) and intravenous amrinone (1.9 mg/kg/min) significantly increased left ventricular dP/dt and performance. When compared with dobutamine alone, the addition of amrinone resulted in further increases in left ventricular dP/dt and cardiac index (to 1319 +/- 419 from 1202 +/- 376 mm Hg/sec, p less than .002, and to 3.56 +/- 0.78 from 3.04 +/- 0.67 liters/min/m2, p less than .01, respectively). The combination also induced a further reduction in left ventricular end-diastolic pressure (to 15.3 +/- 11.3 from 18.2 +/- 10.3 mm Hg, p less than .05) when compared with amrinone alone. The combination of dobutamine and amrinone increased heart rate slightly when compared with either drug alone, but did not further reduce systemic arterial pressure when compared with amrinone alone. The dose-response curve of left ventricular dP/dt and performance during titration of dobutamine with and without the addition of intravenous amrinone was evaluated in seven patients. The addition of amrinone to any dose of dobutamine produced higher cardiac index and lower systemic vascular resistance than dobutamine or amrinone alone. Thus, when compared with dobutamine alone in patients with chronic congestive heart failure, the addition of intravenous amrinone to dobutamine results in an additive improvement in left ventricular performance throughout the dose range.

Adult

Perioperative experience with amrinone.

Amrinone is the only phosphodiesterase fraction III inhibitor currently available in the USA for the treatment of perioperative biventricular failure. Patients with chronic congestive heart failure (CHF) show down-regulation of the beta 1-adrenergic receptor with a decrease in receptor density and altered responses to catecholamines. Intravenous administration of amrinone can transiently restore beta 1-adrenergic responses in patients who have CHF. Amrinone's mechanism of vasodilatation, independent of the beta 1-adrenergic receptor, nitrates, and calcium entry blockers, proves an important therapeutic option for pulmonary hypertension. The elimination half-life of amrinone in volunteers is 2.6-4.1 h, and 3.5 h when administered into the cardiopulmonary bypass (CPB) circuit. Different loading and infusion doses have been reported for amrinone. Investigators have demonstrated that increases in cardiac output following amrinone administration are directly related to plasma concentration. In cardiac surgical patients, following a dose of 0.75 mg kg-1 administered into the CPB circuit, plasma concentrations are subtherapeutic after 10 min. We believe that, when using amrinone to facilitate separation from CPB, a bolus dose of 1.5 mg kg-1 or more should be administered. If therapeutic levels need to be maintained in patients with biventricular failure, an infusion should also be administered after the bolus dose. Additive effects have been demonstrated when catecholamines are administered concomitantly with amrinone and other PDE III inhibitors to increase cyclic AMP in cardiac muscle and improve contractility. The use of amrinone with catecholamines is also important clinically, because together they attenuate the vasoconstrictive effects of catecholamines alone, while the catecholamines support perfusion pressure. Amrinone represents a novel drug for managing biventricular dysfunction in cardiac surgical patients.

Amrinone

Stability of amrinone and digoxin, procainamide hydrochloride, propranolol hydrochloride, sodium bicarbonate, potassium chloride, or verapamil hydrochloride in intravenous admixtures.

The stability of amrinone and digoxin, procainamide hydrochloride, propranolol hydrochloride, sodium bicarbonate, potassium chloride, or verapamil hydrochloride in intravenous admixtures was studied. Admixtures of amrinone and digoxin were studied at one concentration. Amrinone admixtures with propranolol hydrochloride, sodium bicarbonate, potassium chloride, and verapamil hydrochloride were studied at two concentrations. In general, 0.45% sodium chloride injection was used as the diluent; 5% dextrose injection was also used for the procainamide hydrochloride experiments. Duplicate solutions of each test admixture and single-drug control admixture were prepared and stored for four hours at 22-23 degrees C under fluorescent light. Samples were analyzed by visual inspection, tested for pH, and assayed by high-performance liquid chromatography. Admixtures containing amrinone 1.25 or 2.5 mg/mL (as the lactate salt) and sodium bicarbonate 37.5 mg/mL precipitated immediately or within 10 minutes. No changes in pH or visual appearance were noted for amrinone admixtures with procainamide hydrochloride, digoxin, propranolol hydrochloride, potassium chloride, and verapamil hydrochloride. Appreciable degradation of both amrinone and procainamide was observed after four hours when the two were mixed in 5% dextrose. No degradation of amrinone or procainamide was seen when the 5% dextrose was replaced by 0.45% sodium chloride. Amrinone and sodium bicarbonate were incompatible in intravenous admixtures. Amrinone was compatible with digoxin, propranolol hydrochloride, potassium chloride, and verapamil hydrochloride. Amrinone and procainamide were compatible in 0.45% sodium chloride injection but not in 5% dextrose injection.

Amrinone

Relative contribution of inotropic and vasodilator effects to amrinone-induced hemodynamic improvement in congestive heart failure.

The relative contribution of inotropic and vasodilator effect to amrinone-induced hemodynamic improvement in congestive heart failure (CHF) is unknown. In 9 patients with CHF, the effects of amrinone and nitroprusside on hemodynamic and radionuclide measurements were compared to determine whether reduced afterload accounts for the amrinone-induced decrease in left ventricular end-systolic volume. In each patient, the end-systolic pressure-volume relation was derived using nitroprusside. After terminating nitroprusside treatment, intravenous amrinone (3 mg/kg) caused end-systolic volume to decrease from 148 +/- 32 ml/m2 (mean +/- standard deviation) to 133 +/- 32 ml/m2 (p less than 0.05), causing an increase in cardiac index from 1.9 +/- 0.8 to 2.7 +/- 0.8 liters/min/m2 (p less than 0.001). Arterial end-systolic pressure decreased in all patients during amrinone administration, from 96 +/- 22 to 84 +/- 19 mm Hg (p less than 0.005), as did systemic vascular resistance. Nitroprusside doses needed to match the decrease in LV end-systolic volume induced by amrinone caused significantly greater decreases in arterial end-systolic pressure than did amrinone (p less than 0.01). The amrinone-induced decrease in end-systolic volume exceeded that predicted for a pure vasodilator based on arterial end-systolic pressure and the nitroprusside-derived pressure-volume relation in 6 patients. In 3 patients, the decrease in end-systolic volume did not exceed that expected for a pure vasodilator. In conclusion, after amrinone treatment, afterload reduction occurs in all patients with severe CHF and is the sole effect in some.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Comparison of intravenous amrinone and dobutamine in congestive heart failure due to idiopathic dilated cardiomyopathy.

A prospective randomized study was performed in 46 consecutive patients with refractory congestive heart failure (CHF) due to idiopathic dilated cardiomyopathy to compare the hemodynamic responses to 48-hour infusions of amrinone and dobutamine. Both drugs substantially reduced pulmonary arterial wedge pressure, right atrial pressure and systemic vascular resistance and increased cardiac index. Amrinone caused a greater decrease in right atrial pressure than dobutamine (p less than 0.02) and had a positive chronotropic effect not observed with dobutamine (p less than 0.01). The increase in heart rate produced by amrinone correlated inversely with the changes in right atrial and pulmonary arterial wedge pressures, suggesting a baroreceptor response to reduced preload. Dobutamine produced a larger increase in stroke volume index than amrinone (p less than 0.01). Ninety-one percent of patients receiving amrinone and only 65% receiving dobutamine had reduction of greater than or equal to 30% in pulmonary arterial wedge pressure (p less than 0.05). Cardiac index increased greater than or equal to 30% in similar numbers of patients given amrinone (74%) and dobutamine (65%). Negative fluid balance was recorded in all patients receiving amrinone and in 78% of patients receiving dobutamine (p less than 0.05). Target hemodynamic criteria were achieved in 83% of patients receiving 10 micrograms/kg/min of amrinone. The effective maintenance dose of dobutamine was extremely variable. No clinically important adverse effects were observed with either drug regimen. Both amrinone and dobutamine are effective and safe agents for short-term parenteral therapy of patients with dilated cardiomyopathy in severe CHF that is unresponsive to oral medication.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Amrinone and dobutamine as primary treatment of low cardiac output syndrome following coronary artery surgery: a comparison of their effects on hemodynamics and outcome.

This study was undertaken in order to compare the effectiveness of amrinone and dobutamine as primary treatment of a low cardiac output (CO) after coronary artery bypass graft (CABG) surgery. Thirty patients with preoperative left ventricular dysfunction participated in this open-label randomized study. Patients were included if they failed to separate from cardiopulmonary bypass (CPB) without inotropic support or if they had a cardiac index (CI) less than 2.4 L/min/m2 after CPB regardless of the blood pressure, in the presence of adequate filling pressures. The treatment objectives were to separate from CPB and achieve a CI > or = 2.4 L/min/m2 and a mean arterial pressure > or = 70 mmHg. Patients treated with amrinone received 0.75 mg/kg followed by 10 micrograms/kg/min; when the objectives were not achieved within five minutes, another 0.75 mg/kg was given. Patients treated with dobutamine received an initial infusion of 5 micrograms/kg/min increased stepwise to 15 micrograms/kg/min if necessary. Eleven of 15 amrinone versus 6 of 15 dobutamine patients achieved the predefined treatment objectives with the test drug alone (P = NS). Comparisons of hemodynamics in patients treated solely with amrinone (n = 7) or dobutamine (n = 6) after CPB showed no significant differences between the treatment groups. The incidence of myocardial ischemia as detected by Holter monitor was 36% with amrinone and 33% with dobutamine. Two patients suffered ventricular fibrillation and two had significant supraventricular tachyarrhythmias (heart rate > 130/min) during treatment with dobutamine alone, whereas no significant arrhythmias occurred in the amrinone group (P = NS). Six dobutamine patients (40%) had postoperative myocardial infarction (MI) as opposed to none among the amrinone patients (P = 0.017). These results indicate that amrinone compares favorably with dobutamine as a primary treatment of low CO after CABG. Further study in a larger number of patients will be required in order to determine if the lower incidence of MI in the amrinone group was due to the treatment drug.

Amrinone

Pharmacokinetics of amrinone during cardiac surgery.

Amrinone is a nonglycosidic noncatecholamine with both vasodilator and positive inotropic effects that may be administered to patients undergoing cardiac surgery. As an initial step toward elucidating the optimal dosage of amrinone for cardiac surgical patients we studied the pharmacokinetics of amrinone during and after cardiac surgery requiring cardiopulmonary bypass. The study population comprised 35 adult patients, each receiving a single dose of amrinone (0.75, 1.5, 2.0, or 2.5 mg/kg) administered into the venous reservoir near the end of cardiopulmonary bypass. Additionally, 15 of the 35 patients also received intravenous infusions of either 5 or 10 micrograms.kg-1.min-1. Arterial blood was sampled over the next 22 h, and plasma concentrations of amrinone were determined by high-performance liquid chromatography. Protein binding of amrinone, assayed by equilibrium dialysis, was 21.6 +/- 2.5%. The decay of amrinone concentrations in plasma over time was fit to a biexponential equation by nonlinear least-squares regression. The manufacturer's recommended dose of 0.75 mg/kg followed by an infusion of 10 micrograms.kg-1.min-1 was inadequate to maintain the plasma concentration within the therapeutic range based on the pharmacodynamics of amrinone in patients with chronic congestive heart failure. This was due to significant redistribution of amrinone in the body after the loading dose. To maintain a therapeutic plasma concentration of 1.5-2.0 micrograms/ml, a larger loading dose or a supplemental loading dose as well as a continuous infusion is required.

Amrinone

The cardiotonic agent amrinone does not increase anatomic infarct size.

The effect of the positive inotropic agent amrinone on anatomic infarct size induced by coronary artery occlusion and reperfusion in dogs is unknown, although previous studies have shown that amrinone increases indices of myocardial ischemia during very brief coronary artery occlusions. Thus, this study was performed to determine if amrinone changes anatomic infarct size and improves hemodynamics induced by 3 h of coronary occlusion and 3 h of reperfusion in anesthetized, open-chest dogs. Amrinone (1-mg/kg bolus followed by 6 mg/kg/h) or an equivalent volume of saline was administered intravenously for 3 h beginning 30 min postocclusion. The area at risk was 19.7 +/- 2.6% in the control group (n = 9) and 20.2 +/- 1.8% in the amrinone-treated group (n = 9; p = NS). The amount of the area at risk that developed infarction was 60.6 +/- 6.1% in the control group and 54.6 +/- 5.6% in the amrinone-treated group (p = NS). Pretreatment left ventricular end-diastolic pressure increased from 11.4 +/- 1.8 to 20.1 +/- 3.0 mm Hg (p less than 0.05) in the control group and from 10.8 +/- 1.3 to 17.3 +/- 1.3 mm Hg (p less than 0.05) in the amrinone-treated group following coronary artery occlusion. During coronary occlusion, amrinone administration significantly increased left ventricular maximum +dP/dt [+483 +/- 85 vs. -11 +/- 53 mm Hg/s (p less than 0.01) in amrinone vs. control group, respectively] and heart rate (+27 +/- 6 vs. -4 +/- 2 beats/min; p less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Amrinone

Inotropic interactions of dichloroacetate with amrinone and ouabain in isolated hearts from endotoxin-shocked rats.

The inotropic effects of ouabain and amrinone singly and in combination with dichloroacetate (DCA) were assessed using isolated working perfused hearts from endotoxin-shocked (LD50/6 h) rats, with glucose and free fatty acids as substrates. Amrinone (2.7 X 10(-4) M) and ouabain (10(-5) M) alone improved myocardial mechanical performance from 25 to 75%, depending on the preload. Amrinone was more effective than ouabain at all left atrial filling pressures tested. DCA enhanced the inotropic effect of both compounds, improving myocardial work greater than 65% in combination with ouabain (at low filling pressures) to 125% with amrinone (at high filling pressures). Glucose oxidation rose two- to threefold when DCA was present with either drug. Ouabain was without effect on pyruvate dehydrogenase (PDH) activity; however, when present with DCA, PDH activity increased fourfold. Amrinone alone augmented PDH activity 2.5 times as compared with controls, and 4.5 times when combined with DCA. All three compounds individually elevated myocardial ATP levels, but in contrast to the inotropic effects, when used in combination caused no further increase in ATP. Myocardial cyclic AMP (cyclic AMP) levels were augmented five times control values in the presence of amrinone. The simultaneous presence of DCA and amrinone did not further augment the myocardial concentration of cAMP. DCA alone enhanced the myocardial oxidation of glucose in isolated myocardial cells from endotoxin-shocked animals. In contrast, ouabain and amrinone did not affect cellular glucose oxidation. These data indicate that the provision of DCA can enhance the inotropic effect of amrinone and ouabain on the isolated working heart.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetates

Possible role of adenosine in the relaxant effect of amrinone on guinea-pig ileum.

In isolated segments of guinea-pig ileum, amrinone (0.3 mM-0.3 M) caused a transient contraction followed by a concentration-dependent relaxation. Theophylline (0.1-0.5 mM) mimicked the effects of amrinone but apparently inhibited relaxation induced by the latter. However the total decrease of muscle tension measured in preparations exposed to amrinone before and after theophylline treatment was quantitatively comparable. Dipyridamole (0.1 microM) potentiated the relaxing effect of amrinone. The stimulatory response of the ileum to high concentrations of adenosine (10-50 mM) was abolished by amrinone. In preparations treated with adenosine deaminase (10 U/ml) the basal tone was decreased and both amrinone and theophylline were ineffective. In rat ileum, amrinone exerted a marked relaxing effect that was abolished by adenosine deaminase. Thus amrinone appears to cause relaxation of intestinal smooth muscle from different species by hindering the stimulatory effect of endogenous adenosine. The possible intracellular localization of the amrinone-adenosine interaction site is discussed.

Acetylcholine