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Levosimendan: a calcium-sensitizing agent for the treatment of patients with decompensated heart failure.

Levosimendan is a new inodilator. Its mechanism of action includes calcium sensitization of contractile proteins and the opening of adenosine triphosphate-dependent K channels. The combination of positive inotropy with anti-ischemic effects of K-channel opening offers potential benefits in comparison with currently available intravenous inotropes, which are contraindicated in patients with ongoing myocardial ischemia. Levosimendan has been extensively studied in various animal models of heart failure, in which the drug has increased contractility without adverse effects on diastolic function. These results have been repeated in patients with heart failure, in whom levosimendan dose-dependently increases cardiac output and reduces pulmonary capillary wedge pressure. The active metabolite of levosimendan (OR-1896) significantly prolongs the duration of the hemodynamic effects of the therapeutic 24-hour levosimendan infusion. Levosimendan has been studied in two major trials with decompensated patients (LIDO and RUSSLAN), in which it showed outcome benefits in comparison with dobutamine and placebo, respectively. A third comparative study (CASINO) recently suggested mortality benefits with levosimendan over placebo and dobutamine. Currently, two large prospective trials (SURVIVE and REVIVE) in patients who are hospitalized because of worsening heart failure are underway. These trials will conclusively prove whether levosimendan should be added to the standard treatment in patients who are hospitalized because of cardiac decompensation.

Dose-Response Relationship, Drug↗

Cardiac troponin C as a target protein for a novel calcium sensitizing drug, levosimendan.

The role of cardiac troponin C (cTnC) as a target protein for the calcium sensitization by levosimendan, pimobendan, MCI-154 and EMD 53998 was evaluated using purified recombinant human cTnC. For determination of calcium- and magnesium-dependent binding of the compounds to cTnC a new type of cTnC-HPLAC column was used. Furthermore, dansylated cTnC was utilized to study the effect of the calcium sensitizing compounds on calcium-induced conformation of cTnC. Only levosimendan showed calcium-dependent and to a lesser extent magnesium-dependent retention in the cTnC column. The findings indicate that levosimendan binds both to the N-terminal and C-terminal domains of cTnC. In agreement with this, only levosimendan shifted the calcium-induced fluorescence curve of dansylated cTnC to the left. In the control experiments Ca50 and KCa2+ were calculated to be 2.73 microM and 4 x 10(5) M-1, respectively. Levosimendan at 3 microM decreased the value of Ca50 to 1.19 microM. In conclusion, it is suggested that the mechanism of calcium sensitizing effect of levosimendan, unlike that of the other calcium sensitizers, is based on calcium-dependent binding to the N-terminal domain of cTnC. This is proposed to amplify the trigger of contraction induced by cTnC in the cardiac muscle.

Calcium↗

Cardiac electrophysiological effects of levosimendan, a new calcium sensitizer.

1. The conventional microelectrode and the patch-clamp techniques were used to study the electrophysiological effects of levosimendan, a new calcium-sensitizing cardiotonic drug, in cardiac ventricular muscle. 2. Levosimendan (5 microM) did not change the main repolarizing currents, such as the inward rectifier potassium, transient outward and the delayed rectifier outward potassium current, in rabbit ventricular myocytes. 3. In rabbit ventricular muscle, levosimendan, at relatively low concentrations (0.1-1 microM), did not change significantly the amplitude of the inward calcium current but increased the amplitude of the twitch tension. 4. In guinea pig ventricular muscle, levosimendan, at higher concentrations (1-5 microM), significantly increased the amplitude of the inward calcium current and the slow-response action potential parameters. 5. It is concluded that levosimendan, in addition to its calcium sensitizing properties characterized by "silent electrophysiology," exhibits cardiac electrophysiological effects similar to those of phosphodies-terase inhibitors.

Action Potentials↗

Levosimendan improves hemodynamics and coronary flow reserve after percutaneous coronary intervention in patients with acute myocardial infarction and left ventricular dysfunction.

BACKGROUND: Positive inotropic agents may be associated with increasing myocardial ischemia or malignant arrhythmias. Levosimendan, a new calcium sensitizer, with its little effect on myocardial oxygen demand is better tolerated by patients with acute coronary syndromes. We evaluated the acute effects of levosimendan on hemodynamics and coronary flow velocities in patients with left ventricular (LV) dysfunction undergoing percutaneous coronary interventions (PCIs) for an acute myocardial infarction (AMI). METHODS: Patients with AMI and LV dysfunction undergoing primary PCI were randomized to intravenous infusion of levosimendan (10 minutes bolus with 12 microg/kg followed by 0.1 microg/kg per minute for 24 hours) or placebo, 10 minutes after a primary PCI. Evaluation of hemodynamics and of coronary flow reserve (CFR) were performed at baseline and after bolus. RESULTS: Twenty-six consecutive patients (mean age 57 +/- 5.4 years, 18 males) were included into the study. At baseline, mean values of hemodynamics and coronary flow velocities were comparable between groups. After bolus, patients with levosimendan (n = 12) showed a significant decrease of pulmonary capillary wedge pressure (from 24 to 19 mm Hg) and a significant increase of cardiac index (from 1.8 to 2.4 L/m2 per minute) resulting in a significant decrease of systemic vascular resistance (from 1366 to 1075 [dyne . s]/cm2). Moreover, CFR on infarct-related artery and on reference vessel significantly improved in patients treated with levosimendan (from 1.6 to 2.0 and from 2.1 to 2.4, respectively). On the other hand, no statistically significant changes have been observed in the placebo group (n = 14). CONCLUSIONS: Levosimendan, given intravenously after a PCI procedure in patients with AMI and LV dysfunction, significantly improves hemodynamics and CFR, compared with placebo.

Angioplasty, Balloon, Coronary↗

Optimizing outcomes in the patient with acute decompensated heart failure.

Heart failure (HF) and episodes of acute decompensated HF (ADHF) continue to pose a substantial clinical challenge in the United States and represent a significant source of morbidity, mortality, and health care resource use. Recent therapeutic advances have shifted ADHF treatment paradigms from diuretic management with or without inotrope use to therapy where intravenous vasodilators are the central component, above a background of diuretics. This shift in treatment has resulted in more rapid symptomatic improvements as well as in decreases in overall morbidity and mortality. Elevated left ventricular filling pressure has become an important clinical target for resolution during ADHF, as this parameter most closely correlates with degree of symptoms, extent of ischemic complications, and the deleterious neurohormonal activation in response to ADHF. Therapies that lead to rapid improvements in left ventricular filling pressure, including the use of nesiritide, a recombinant analog of B-type natriuretic peptide, have been shown to provide rapid symptomatic relief, but effects on long-term morbidity and mortality are as yet unclear. In addition to new treatments, new technologies--including assays based on cardiac biomarkers and techniques such as impedance cardiography for noninvasive monitoring of hemodynamic parameters--are contributing to improvements in care that will ultimately reduce the sizeable clinical and economic burden that HF represents.

Biomarkers↗

Effects of levosimendan on circulating pro-inflammatory cytokines and soluble apoptosis mediators in patients with decompensated advanced heart failure.

This randomized, placebo-controlled trial showed that levosimendan administration causes a significant reduction of circulating proinflammatory cytokine interleukin-6 and soluble apoptosis mediators, such as soluble Fas and Fas ligand in patients with decompensated heart failure. These immunomodulatory effects may lead to improvement of symptoms and echocardiographic markers of cardiac contractile performance in these patients.

Adjuvants, Immunologic↗

Hemodynamic effects of levosimendan added to dobutamine in patients with decompensated advanced heart failure refractory to dobutamine alone.

A 24-hour infusion of levosimendan was added to dobutamine in 18 patients (aged 63 +/- 9 years) hospitalized for management of decompensated New York Heart Association functional class IV heart failure refractory to a continuous 24-hour infusion of dobutamine (10 microg/kg/min) and furosemide (10 mg/hour); the primary study end point was a >or=40% increase in cardiac index and a >or=25% decrease in pulmonary capillary wedge pressure compared with pretreatment measurements. The primary end point was reached in one of the patients treated with dobutamine alone versus 7 patients (39%) treated with levosimendan and dobutamine combined (p = 0.008), whereas at 24 hours, the combined treatment was associated with a 0.76 +/- 0.78 L/min/m(2) (p = 0.001) mean increase in cardiac index and a 6.4 +/- 7.3 mm Hg (p = 0.002) mean decrease in pulmonary capillary wedge pressure compared with measurements obtained after 24 hours of dobutamine infusion alone. Symptoms were alleviated in all patients, and all but 3 were discharged from the hospital.

Administration, Oral↗

Efficacy and safety of intermittent, long-term, concomitant dobutamine and levosimendan infusions in severe heart failure refractory to dobutamine alone.

Thirty-six consecutive patients in New York Heart Association functional class IV, who were resistant to 24-hour continuous dobutamine infusion, were treated with continuous infusions of dobutamine 10 microg/kg/min for > or =48 hours (group I, n = 18), followed by weekly intermittent 8-hour infusions or more often if needed. In group II (n = 18), after the initial 24-hour infusion of dobutamine, a 24-hour levosimendan infusion was added followed by biweekly 24-hour infusions. The addition of intermittent levosimendan infusions prolonged the survival of patients with advanced heart failure refractory to intermittent dobutamine infusions (45-day survival rates were 6% and 61% in groups I and II, respectively; p = 0.0002, log-rank test).

Adult↗

Effects of levosimendan on markers of left ventricular diastolic function and neurohormonal activation in patients with advanced heart failure.

In this randomized, placebo-controlled study, it was found that a 24-hour levosimendan infusion improves echocardiographic markers of abnormal left ventricular diastolic function (transmitral flow patterns and mitral annulus velocities, as assessed by transthoracic pulse-wave Doppler and tissue Doppler imaging, respectively) and reduces substances of excessive neurohormonal activation (plasma B-type natriuretic peptide and interleukin-6) in patients with advanced heart failure. Moreover, levosimendan-treated patients had fewer events and longer progression-free survival during a 5-month follow-up compared with those who received placebo. Thus, levosimendan seems to be effective in improving left ventricular diastolic function and reducing neurohormonal activation in patients with severe heart failure.

Aged↗

Cardioprotection: a new paradigm in the management of acute heart failure syndromes.

The management of acute heart failure syndromes (AHFS) focuses primarily on improving hemodynamic function and alleviating symptoms. Emerging evidence has raised the possibility that patients with AHFS may be susceptible to progressive myocardial failure because of the accelerated loss of cardiac myocytes. Although there are circumstantial data to suggest that the choice of therapeutic agent may affect long-term outcomes in such patients, the responsible mechanism is not known. Activation of mitochondrial adenosine triphosphate-dependent potassium (K(ATP)) channels in cardiac myocytes is a potent cardioprotective mechanism. We studied cardiac myocytes in culture to determine whether levosimendan can protect against apoptotic cell death in response to oxidative stress, a stimulus that appears to mediate myocyte loss in response to hemodynamic overload and beta-adrenergic stimulation, conditions commonly encountered in acute HF. Levosimendan, at concentrations below the therapeutic range in humans, protected myocytes from hydrogen peroxide-induced apoptosis. This effect was prevented by K(ATP) channel inhibitors. The demonstration that levosimendan can oppose myocyte apoptosis via the activation of mitochondrial K(ATP) channels provides a potential mechanism by which this agent might protect cardiac myocytes during episodes of acute HF. Although the alleviation of symptoms should remain an important goal of therapy in acute HF, a therapeutic approach that includes a cardioprotective strategy may be able to exert a clinically meaningful benefit on disease progression. This speculation, if proved true, would mandate a fundamental paradigm shift in the acute management of acute HF.

Acute Disease↗

Pharmacology of new agents for acute heart failure syndromes.

Current therapies for acute heart failure syndromes (AHFS) target hemodynamics by decreasing congestion or increasing myocardial contraction. Several new agents for AHFS use novel mechanisms of action that focus on new treatment targets, such as those providing anti-ischemic and anti-stunning effects, blocking vasopressin receptors, or blocking endothelin-1 receptors. For example, levosimendan acts as a calcium sensitizer and adenosine triphosphate-dependent potassium (K(ATP)) channel opener that increases contraction, causes vasodilation, and provides cardioprotective effects. This is accomplished by its dual mechanism of action. Levosimendan binds to cardiac troponin C, thereby enhancing calcium myofilament responsiveness and increasing myocardial contraction without increasing intracellular calcium levels. Thus, contraction is increased with no significant increase in myocardial oxygen consumption. The opening of K(ATP) channels by levosimendan causes vasodilation and exerts anti-ischemic and anti-stunning effects on the myocardium. Other new agents target neurohormonal pathways. Tezosentan is an antagonist of endothelin-1 receptors A and B. By inhibiting endothelin-1 receptors, tezosentan may counteract the activities of endothelin-1, which include vasoconstriction, proarrhythmic activities, potentiation of other neurohormones, and mediation of increased vascular permeability. Tolvaptan is a vasopressin V2-receptor antagonist that functions as an aquaretic (ie, it increases urine volume and serum sodium with little or no sodium loss). Therefore, by using novel mechanisms of action, these agents may provide new opportunities for helping patients with AHFS.

Acute Disease↗

Randomized clinical trials with levosimendan.

There are important unmet needs in the treatment of acute heart failure syndromes (AHFS). The unique dual mechanism of action of levosimendan suggests that this new agent may help fill some of these unmet needs. A review of randomized, controlled clinical trials with levosimendan demonstrated that it is well tolerated, and its use results in significantly reduced pulmonary capillary wedge pressure (PCWP) and increased cardiac output. Effects of levosimendan on PCWP and cardiac output are more pronounced than those observed with dobutamine. Levosimendan treatment is also associated with significantly improved clinical symptoms. Moreover, data from 3 trials indicate that levosimendan treatment was associated with improved 6-month survival compared with dobutamine treatment or placebo. Emerging data suggest that levosimendan is beneficial for patients with acute myocardial ischemia. Thus, early clinical indicators suggest that levosimendan may help prevent myocardial injury during hospitalization for AHFS and may be well suited for first-line therapy for AHFS.

Acute Disease↗

European experience on the practical use of levosimendan in patients with acute heart failure syndromes.

The novel calcium sensitizer and ATP-dependent potassium channel opener levosimendan has been introduced for routine use in several European countries. Recent reports on clinical experience confirm the positive hemodynamic results and beneficial clinical effects described in the initial dose-finding and randomized comparative therapeutic trials in patients with severe low-output heart failure. In addition, studies in small series of patients with cardiogenic shock after myocardial infarction and/or surgical interventions and post-interventional myocardial dysfunction (stunning) indicate that the inotropic and vasodilating actions of levosimendan may be of value in a wider range of indications. Dose recommendations, combination with other drugs, and potential side effects are discussed in this overview.

Acute Disease↗

Effects of levosimendan versus dobutamine on inflammatory and apoptotic pathways in acutely decompensated chronic heart failure.

A single levosimendan administration has recently been shown to result in clinical and hemodynamic improvement in patients with decompensated heart failure (HF), but without survival benefits. In this study, the effects of levosimendan and dobutamine on plasma levels of proinflammatory and proapoptotic mediators in decompensated HF were compared and correlated with the concomitant effects on cardiac function and prognosis. Sixty-nine patients were randomized to received 24-hour intravenous infusions of levosimendan (n = 23), dobutamine (n = 23), or placebo (n = 23). Echocardiographic, hemodynamic, and biochemical assessments were performed at baseline, immediately after treatment, and 48 hours later. Patients were subsequently followed for 4 months for disease progression. End-systolic wall stress, the left ventricular ejection fraction, pulmonary capillary wedge pressure, and cardiac index were significantly improved in the levosimendan group but remained practically unaffected in the other groups. Plasma N-terminal-pro-B-type natriuretic peptide, tumor necrosis factor-alpha, and soluble Fas ligand levels were significantly decreased only in the levosimendan group (from 1,900 +/- 223 to 1,378 +/- 170 pg/ml, 13.4 +/- 1.0 to 12.3 +/- 1.2 pg/ml, and 68.2 +/- 3.7 to 59.8 +/- 3.6 pg/ml, respectively; p <0.05 for all); interleukin-6 was also borderline reduced (p = 0.051). Levosimendan-induced reduction in end-systolic wall stress was significantly correlated with respective decreases in N-terminal-pro-B-type natriuretic peptide (r = 0.671, p <0.01), tumor necrosis factor-alpha (r = 0.586, p <0.01), soluble Fas (r = 0.441, p <0.05), and soluble Fas ligand (r = 0.614, p <0.01). Event-free survival was significantly longer in the levosimendan group (p <0.05). In conclusion, the superiority of levosimendan over dobutamine in improving central hemodynamics and left ventricular performance in decompensated HF seems to be related to its anti-inflammatory and antiapoptotic effects.

Aged↗

Effects of levosimendan on right ventricular function in patients with advanced heart failure.

Right ventricular (RV) dysfunction frequently complicates advanced left ventricular heart failure and contributes to an unfavorable prognosis. Levosimendan is a novel inodilator that beneficially affects hemodynamics and left ventricular systolic and diastolic function in patients with advanced heart failure. However, its effects on RV function have not yet been properly assessed in these patients. In this randomized trial, the impact of levosimendan or placebo on various echocardiographic parameters of RV systolic and diastolic function was investigated in 54 patients with advanced heart failure due to left ventricular systolic dysfunction. Tissue Doppler imaging maximal systolic tricuspid annular velocity (S wave) increased significantly only in the levosimendan group (8.2 +/- 3.2 vs 9.0 +/- 3.0 cm/s, p <0.03). Tissue Doppler imaging RV early diastolic velocity (E wave) and the ratio of early to late diastolic velocities (E/A) also increased significantly after levosimendan administration (p <0.01 and p <0.05, respectively). Systolic pulmonary arterial pressure decreased significantly (54 +/- 11 vs 43 +/- 11 mm Hg, p <0.01) in the levosimendan-treated patients. Levosimendan beneficially modulated neurohormonal and inflammatory status by decreasing B-type natriuretic peptide levels (p <0.05) and by altering the ratio of interleukin-6 to interleukin-10 in favor of the latter (p <0.05). In conclusion, levosimendan could offer further therapeutic advantages in patients with advanced heart failure by improving systolic and diastolic RV function.

Blood Pressure↗