Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Simendan”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 217 records · Page 12Linked to original sources

Pharmacokinetics of levosimendan and its circulating metabolites in patients with heart failure after an extended continuous infusion of levosimendan.

AIMS: The purpose of the study was to characterize the pharmacokinetics of levosimendan and its metabolites OR-1855 and OR-1896 in patients with congestive heart failure. METHODS: Levosimendan was administered as a continuous intravenous infusion for 7 days. Twelve subjects received the drug at an infusion rate of 0.05 micro g kg(-1) min(-1) and 12 at a rate 0.1 micro g kg(-1) min(-1). RESULTS: Steady state concentrations of levosimendan were achieved within 4 h. Peak concentrations of the metabolites occurred after termination of the infusion. The mean (+/- SD) half-life of the active metabolite OR-1896 was 81 +/- 37 h after the lower dose and 81 +/- 28 h after the higher dose (P = 0.992, 95% confidence interval on the difference -27.5, 27.7). CONCLUSIONS: The metabolites of levosimendan, OR-1855 and OR-1896, were formed and eliminated slowly, their peak concentrations occurring after termination of the 7-day infusion of the drug.

Acetamides↗

Beneficial outcome after prostaglandin-induced post-partum cardiac arrest using levosimendan and extracorporeal membrane oxygenation.

BACKGROUND: Administration of high doses of prostaglandins is a frequently performed and effective method for the treatment of atonic uterine haemorrhage in order to increase uterine muscle tone. Rarely, however, these drugs may cause life-threatening complications including bronchospasm, acute pulmonary oedema and myocardial infarction caused by coronary spasms. METHODS: We discuss the management of a patient suffering post-partum atonic uterine bleeding, catecholamine-resistant cardiac arrest and fulminant pulmonary failure due to deleterious side-effects of treatment with prostaglandins. RESULTS: During therapy resistant cardiopulmonary resuscitation, the addition of levosimendan to standard medications resulted in a prompt stabilization of haemodynamics. Subsequent treatment of pulmonary failure was successfully managed with ECMO. CONCLUSION: Although levosimendan is not approved for pharmacological treatment of cardiopulmonary arrest, the beneficial effects in this patient suggest an important role of calcium sensitization and vasodilation during prostaglandin-induced cardiac arrest.

Adult↗

Levosimendan cardioprotection reduces the metabolic response during temporary regional coronary occlusion in an open chest pig model.

BACKGROUND: Inotropic and myocardial anti-ischemic effects have been demonstrated with levosimendan. The comparison of levosimendan started before an ischemia-reperfusion event as compared with levosimendan started during ischemia has not been studied. METHODS: In anesthetized pigs, a major branch of the circumflex artery was completely occluded for 30 min and then reperfused. The metabolism in the ischemic myocardium and in non-ischemic control myocardium was studied with microdialysis concomitantly with monitoring of global hemodynamics and coronary artery flow in the chosen artery. In the protection group (PRO, n= 6), a levosimendan infusion was started 30 min before coronary artery occlusion, and in the treatment group (TRE, n= 6), a levosimendan infusion was started 10 min after the coronary artery occlusion with a loading dose of 13.3 microg/kg followed by an infusion of 0.67 microg/kg/min. A two-way repeated measures ANOVA completed with Bonferroni's multiple comparison procedure was applied to the data. A P < 0.05 was considered significant. RESULTS: During the ischemic period, the cardiac output and contractility (dp/dt(max)) were higher in the PRO as compared with the TRE and the systemic vascular resistance was lower. The myocardial microdialysate glucose concentration in the ischemic area during ischemia was higher in the PRO as compared with the TRE, and the lactate/pyruvate ratio and the lactate concentration were lower. The differences in the metabolites persisted into the first 10 min of reperfusion. No differences were found for the non-ischemic areas. CONCLUSION: Levosimendan used throughout myocardial ischemia-reperfusion might have a cardioprotective affect on the response to myocardial ischemia as compared with levosimendan started during the ischemia.

Animals↗

A quantitative comparison of functional and anti-ischaemic effects of the phosphodiesterase-inhibitors, amrinone, milrinone and levosimendan in rabbit isolated hearts.

1. The functional and anti-ischaemic effects of the phosphodiesterase (PDE)-inhibitors, amrinone, milrinone and levosimendan, a new agent combining PDE-inhibitory with calcium-sensitizing properties, were investigated in rabbit isolated hearts (Langendorff, constant pressure: 70 cmH2O, Tyrode solution, Ca2+ 1.8 mmol l-1, 37 degrees C). Anti-ischaemic effects were studied in electrically-driven hearts (200 beats min-1). Acute regional ischaemia was induced by ligature of a branch of the circumflex coronary artery and quantified from epicardial NADH-fluorescence photography. 2. Cumulative concentration-response curves in spontaneously beating hearts in the presence of isoprenaline (10(-10) M), showed a higher inotropic and coronary vasodilator potency for levosimendan (EC50: 7 x 10(-7) M) compared to milrinone (EC50: 7.7 x 10(-6) M) or amrinone (EC50: 2 x 10(-5) M). Although the maximal coronary dilator activity was similar for the three agents, the maximal inotropic and chronotropic effects were lower for levosimendan than for amrinone or milrinone (P < 0.05). 3. In regionally ischaemic hearts, milrinone (10(-5) M) or levosimendan (5 x 10(-6) M) similarly enhanced the left ventricular pressure (+15-20%) (P < 0.05) and the global coronary flow (+40-50%) (P < 0.05). The epicardial NADH-fluorescence area was significantly diminished by milrinone or levosimendan (-20-30%) (P < 0.05) and there was no significant difference between the anti-ischaemic effects of either agent (P > 0.05). 4. It is concluded that amrinone and milrinone possess similar functional profiles in rabbit isolated hearts and a higher inotropic and chronotropic efficacy than levosimendan. At functionally equieffective concentrations, milrinone and levosimendan show similar anti-ischaemic effects, related to an improvement of myocardial perfusion. The calcium-sensitizing properties seem not to be relevant for cardioprotection by levosimendan at the concentration used.

Amrinone↗

Cardiovascular effects of the calcium sensitizer, levosimendan, in heart failure induced by rapid pacing in the presence of aortic constriction.

1. The haemodynamic effects of a novel cardiotonic drug, levosimendan, which has both calcium-sensitizing and phosphodiesterase III (PDE III) inhibitory properties, were studied in conscious dogs in which heart failure had been induced by prolonged cardiac pacing in the presence of aortic constriction. These effects were compared with those in sham-operated dogs with essentially normal cardiac function. 2. Eighteen mongrel dogs were instrumented for the measurement of left ventricular pressure (LVSP, LVEDP) and contractile function (dP/dt; dP/dt/P). In twelve dogs a balloon catheter, positioned in the thoracic aorta, was inflated producing an approximate 60% reduction in effective aortic diameter. Twenty min later rapid ventricular pacing (240 beats mean-1) was commenced and maintained for 48 h by means of a bipolar pacing electrode introduced into the right ventricle. This electrode served also for recording changes in the endocardial electrogram in the absence of pacing. Six of these dogs were used to evaluate the haemodynamic changes of pacing-induced heart failure; a further six of these dogs the haemodynamic changes elicited by levosimendan under these conditions. Six sham-operated dogs (group 2) served as controls. 3. In six dogs (group 1) the haemodynamic alterations were assessed after the development of heart failure. In the presence of aortic constriction, 48 h continuous rapid cardiac pacing resulted in a marked deterioration in left ventricular function which remained stable for at least 48 h after cessation of pacing. Thus, there was a marked reduction in LVSP (15%), +dP/dtmax (35%), -dP/dtmax (36%) and also in dP/dt/P (29%), whereas LVEDP was increased considerably (from 6.4 +/- 1.4 to 20.0 +/- 2.2 mmHg). A marked elevation occurred in endocardial ST-segment (138%), lasting for 20 min.4. Levosimendan was administered intravenously in doses of 0.005, 0.01 and 0.03 micromol kg-1 to 2 groups of conscious dogs. In the sham-operated dogs (group 2), only the higher dose (0.03 micromol kg-1)produced significant increases in LVSP (19%), + dP/dtmax (37%), and in dP/dt/P (32%). In dogs with heart failure (group 3) doses of 0.005, 0.01 and 0.03 micromol kg-1 levosimendan resulted in an improve mentin +dP/dtmax (26%, 38% and 49%), -dP/dtmax (20%, 25% and 38%) and in dP/dt/P (19%, 34%and 50%) and reduction in the elevated LVEDP (from 20 =/- 2.2 mmHg to 16 +/- 1.0, 10 +/- 1.3 and 9 +/- 1.0 mmHg, respectively).5. Levosimendan proved to be a potent cardiotonic drug at the doses used, and was approximately three times more effective under conditions of impaired left ventricular function than in normal hearts.

Analysis of Variance↗

Influence of levosimendan, pimobendan, and milrinone on the regional distribution of cardiac output in anaesthetized dogs.

1. The distribution of cardiac output during administration of levosimendan, a new myofilament calcium sensitizer, is unknown. We examined and compared the effects of levosimendan, pimobendan, and milrinone on regional tissue perfusion by use of the radioactive microsphere technique in barbiturate-anaesthetized dogs. 2. Haemodynamics and regional blood flow were determined before and during infusions of levosimendan (0.75, 1.5, and 3.0 micrograms kg-1 min-1), pimobendan (10, 20, and 40 micrograms kg-1 min-1), or milrinone (1.0, 2.0, and 4.0 micrograms kg-1 min-1). 3. All three drugs caused similar increases in heart rate, cardiac output, and left ventricular +dP/dt and decreases in end-diastolic pressure and systemic vascular resistance. No changes in subendocardial, midmyocardial, and subepicardial blood flow occurred during administration of levosimendan. However, a redistribution of blood flow from subendocardium to subepicardium was observed. Pimobendan increased midmyocardial and subepicardial blood flow and reduced the endo/epi ratio to a greater degree than levosimendan. Milrinone did not affect myocardial perfusion. 4. Levosimendan increased blood flow to the renal medulla and decreased renal medullary and cortical vascular resistance. Levosimendan increased blood flow to the small intestine and liver and reduced vascular resistance in these organs. Pimobendan increased hepatic blood flow to a greater degree than levosimendan but did not alter small intestinal perfusion. All three drugs decreased splenic blood flow to similar degrees. Levosimendan and pimobendan reduced cerebral vascular resistance. Levosimendan and milrinone reduced skeletal muscle vascular resistance. 5. The results indicate that levosimendan, pimobendan, and milrinone cause subtlety different alterations in regional tissue perfusion while producing similar haemodynamic effects.

Anesthesia↗

Pharmacological mechanisms contributing to the clinical efficacy of levosimendan.

Acute decompensation of chronic heart failure is a direct life-threatening situation with short-term mortality approaching 30%. A number of maladaptive changes are amplified within the cardiovascular system during the progression of chronic heart failure that makes the decompensation phase difficult to handle. Levosimendan is a new Ca2+-sensitizer for the treatment of acutely decompensated heart failure that has proved to be effective during the decompensation of chronic heart failure and acute myocardial infarction. Levosimendan differs from other cardiotonic agents that are used for acute heart failure in that it utilizes a unique dual mechanism of action: Ca2+-sensitization through binding to troponin C in the myocardium, and the opening of ATP-sensitive K+ channels in vascular smooth muscle. In general, these mechanisms evoke positive inotropy and vasodilation. Clinical studies suggested long-term benefits on mortality following short-term administration. It may, therefore, be inferred that levosimendan has additional effects on the cardiovascular system that are responsible for the prolongation of survival. Results of preclinical and clinical investigations suggest that the combination of levosimendan-induced cardiac and vascular changes has favorable effects on the coronary, pulmonary and peripheral circulations. Redistribution of the circulating blood offers an improved hemodynamic context for the development of a positive inotropic effect through Ca2+-sensitization of the contractile filaments, without a proportionate increase in myocardial oxygen consumption or the development of arrhythmias. Activation of ATP-sensitive K+ channels, both on sarcolemma and mitochondria, may protect against myocardial ischemia, and decreased levels of cytokines may prevent the development of further myocardial remodeling. Collectively, these effects of levosimendan shift the disturbed cardiovascular parameters towards normalization, thereby halting the perpetuation of the vicious cycle of heart failure progression. This may contribute to stabilization of the circulation and improved life expectancy of patients with chronic heart failure.

Animals↗

Functional and antiischaemic effects of the phosphodiesterase inhibitor levosimendan in isolated rabbit hearts.

UNLABELLED: Several phosphodiesterase inhibitors have been reported to possess antiischaemic properties by improving myocardial oxygen demand/supply balance. Levosimendan is a new phosphodiesterase inhibitor with calcium-sensitizing properties. We investigated the functional and antiischaemic properties of levosimendan in isolated electrically-driven rabbit hearts (Langendorff, constant perfusion pressure: 70 cm H2O, Tyrode solution, Ca++ 1.8 mmol/l, 37 degrees, 200 beats/min.). Acute regional myocardial ischaemia was induced by ligature of a circumflex artery branch and quantified from epicardial NADH-fluorescence photography. RESULTS: The left ventricular pressure was similarly enhanced by levosimendan 10(-7) M or 5 x 10(-6) M (+15%) (P < 0.05). The global coronary flow was increased more markedly by levosimendan 5 x 10(-6) M (+35-50%) compared to 10(-7) M (+25%) (P < 0.05). The relative coronary flow (= global coronary flow/pressure-rate-product) was significantly enhanced only by levosimendan 5 x 10(-6) M (+20-35%) (P < 0.05), but not by levosimendan 10(-7) M (+10-15%) (P > 0.05). Epicardial NADH-fluorescence area and intensity were significantly diminished by levosimendan (-20%) (P < 0.05), and there was no significant difference between myocardial ischaemia reduction by levosimendan 10(-7) M and 5 x 10(-6) M (P > 0.05). CONCLUSION: Levosimendan is an inotrope with coronary dilator activity, showing antiischaemic effects in isolated rabbit hearts. These may be caused by (1) phosphodiesterase-inhibition and improvement of myocardial perfusion and/or (2) by oxygen-sparing effects, related to calcium sensitization of myofilaments, particularly at lower concentrations associated with a lower coronary dilator activity.

Animals↗

Pharmacological therapy of acute cardiogenic pulmonary oedema in the emergency department.

This paper critically reviews the major drug types that are currently used in the management of acute cardiogenic pulmonary oedema. As decompensated heart failure becomes an increasingly common problem in emergency departments in the developed world, optimization of emergency drug therapy for these critically ill patients is essential. The evidence base for 'routine therapy' in the ED is considered. The review also briefly considers emerging pharmacological therapies that may have an impact on future management of cardiogenic pulmonary oedema.

Acute Disease↗

Levosimendan interacts with potassium channel blockers in human saphenous veins.

The involvement of potassium channels in the venodilating capacity of the inodilator levosimendan in human saphenous vein preparations was investigated. Levosimendan caused relaxation with 50% effective concentration (EC50) of 0.32 +/- 0.04 microM in isolated veins contracted by 5-hydroxytryptamine. Fifteen microM glibenclamide, a blocker of the ATP-sensitive potassium channels (K(ATP)), partially inhibited the relaxing effect of the inodilator. In the presence of iberiotoxin, the selective blocker of large conductance calcium-activated potassium channels (BK(Ca)), levosimendan induced contraction with EC50 of 0.21 +/- 0.06 microM. We presume that levosimendan dilates human saphenous veins by interacting with hyperpolarizing potassium channels (K(ATP) and BK(Ca)).

Drug Interactions↗

Positive inotropic effect of levosimendan is correlated to its stereoselective Ca2+-sensitizing effect but not to stereoselective phosphodiesterase inhibition.

In order to clarify the mechanisms of the positive inotropic actions of levosimendan and its optical isomer, dextrosimendan, we compared their concentration-dependent effects in intact papillary muscles, permeabilized cardiomyocytes and in purified phosphodiesterase enzyme preparations of guinea-pig hearts. In papillary muscles twitch tension increased with EC50 values of 60 nM and 2.8 microM for levosimendan and dextrosimendan, respectively. Hence, the two enantiomers exhibited a 47 times potency difference in their positive inotropic effects in a preparation where theoretically Ca2+-sensitization and phosphodiesterase inhibition could both contribute to the positive inotropic effects. In guinea-pig cardiomyocytes, levosimendan and dextrosimendan increased isometric force production (at pCa 6.2) due to Ca2+-sensitization with EC50 values of 8.4 nM and 0.64 microM, respectively, with a similar relative potency difference of 76. A major difference appeared in their relative pharmacological potencies, however, when the inhibitory effects of the two enantiomers were assayed on phosphodiesterase III, purified from guinea pig left ventricle (i.e. the phosphodiesterase isoenzyme which is dominant in that tissue). Levosimendan was a 427 times more potent phosphodiesterase inhibitor than dextrosimendan, with IC50 values of 7.5 nM, and 3.2 microM, respectively. Taken together, our data support the hypothesis that levosimendan and dextrosimendan exert their positive inotropic effects via a stereoselective Ca2+-sensitizing mechanism and not via stereoselective inhibition of phosphodiesterase III in the myocardium.

3',5'-Cyclic-AMP Phosphodiesterases↗

The effect of levosimendan during long-term amiodarone treatment in dogs.

The haemodynamic and electrophysiological effects of levosimendan were studied in conscious dogs receiving long-term oral amiodarone treatment. Instrumented dogs were administered increasing doses of levosimendan (up to 0.9 microg/kg/min. intravenously) in three successive 30 min. infusions. This schedule was repeated on the 21st day of treatment with oral amiodarone 100 mg/kg/day. The extent of increase in left ventricular systolic pressure (LVSP) and the decrease in left ventricular end-diastolic pressure (LVEDP) seen with levosimendan were similar before and after long-term treatment with amiodarone. The levosimendan-induced increases in isovolumic contraction (+dP/dt) and in left ventricular contractility (dP/dt/P) seen prior to amiodarone administration were augmented during amiodarone treatment, an effect that was statistically significant (P<0.05) at the highest doses of levosimendan. A tendency towards a shortening of the QT interval and a rise in heart rate was observed for levosimendan alone but they did not exceed the physiological range when the drug was given in combination with amiodarone. QTc value was unaffected by levosimendan either alone or with amiodarone. These effects were apparent in animals with therapeutically meaningful plasma levels of levosimendan, amiodarone and desethylamiodarone levels. The results of this study show that the improvement in ventricular contractile performance usually associated with administration of levosimendan was somewhat enhanced by chronic oral treatment with amiodarone. It seems reasonable to infer that the inotropic potency and electrophysiological safety of parenteral levosimendan will be maintained in patients with heart failure during long-term treatment with oral amiodarone.

Amiodarone↗

Effect of levosimendan on myocardial contractility, coronary and peripheral blood flow, and arrhythmias during coronary artery ligation and reperfusion in the in vivo pig model.

OBJECTIVE: To determine whether levosimendan, a calcium sensitiser that facilitates the activation of the contractile apparatus by calcium, improves myocardial contractile function during severe ischaemia and reperfusion without exacerbating the incidence of arrhythmias. DESIGN: Pigs were pretreated orally twice daily for 10 days with 0.08 mg/kg levosimendan or placebo. On day 11 the left main coronary artery was ligated for 30 minutes, followed by 30 minutes of reperfusion. A bolus dose of levosimendan, 11.2 microg/kg intravenously, or placebo was given 30 minutes before coronary ligation, followed by a continuous infusion of 0.2 microg/kg/min levosimendan or placebo for the remainder of the experiment. RESULTS: During the ischaemic period, cardiac output was higher in the levosimendan group than in the placebo group (mean (SD): 2.6 (0.5) v 2.0 (0.2) l/min, p < 0.05) and systemic vascular resistance was lower (2024 (188) v 2669 (424) dyne.s(-1).cm(-5), p < 0.005). During reperfusion, cardiac output and contractility (LV(max)dP/dt (pos), 956 (118) v 784 (130) mm Hg/s, p < 0.05) were increased by levosimendan. The incidence of ischaemic ventricular fibrillation and tachycardia was similar in the two groups but there were more arrhythmic events (ventricular tachycardia and ventricular fibrillation) in the levosimendan treated group (8/12 levosimendan v 1/9 control p = 0.05). CONCLUSIONS: Levosimendan improved cardiac output and myocardial contractility during coronary artery ligation and reperfusion. However, it increased the number of arrhythmic events during ischaemia in this model of in vivo regional ischaemia.

Animals↗