1. Academic Validation
  2. Levosimendan: molecular mechanisms and clinical implications: consensus of experts on the mechanisms of action of levosimendan

Levosimendan: molecular mechanisms and clinical implications: consensus of experts on the mechanisms of action of levosimendan

  • Int J Cardiol. 2012 Aug 23;159(2):82-7. doi: 10.1016/j.ijcard.2011.07.022.
Zoltán Papp 1 István Édes Sonja Fruhwald Stefan G De Hert Markku Salmenperä Heli Leppikangas Alexandre Mebazaa Giovanni Landoni Elena Grossini Philippe Caimmi Andrea Morelli Fabio Guarracino Robert H G Schwinger Sven Meyer Lars Algotsson Bernt Gerhard Wikström Kirsten Jörgensen Gerasimos Filippatos John T Parissis Martín J García González Alexander Parkhomenko Mehmet Birhan Yilmaz Matti Kivikko Piero Pollesello Ferenc Follath
Affiliations

Affiliation

  • 1 Institute of Cardiology, Medical and Health Science Center, University of Debrecen, Mórics Zs krt 22, 4032 Debrecen, Hungary. [email protected]
Abstract

The molecular background of the Ca(2+)-sensitizing effect of levosimendan relates to its specific interaction with the Ca(2+)-sensor troponin C molecule in the cardiac myofilaments. Over the years, significant preclinical and clinical evidence has accumulated and revealed a variety of beneficial pleiotropic effects of levosimendan and of its long-lived metabolite, OR-1896. First of all, activation of ATP-sensitive sarcolemmal K(+) channels of smooth muscle cells appears as a powerful vasodilator mechanism. Additionally, activation of ATP-sensitive K(+) channels in the mitochondria potentially extends the range of cellular actions towards the modulation of mitochondrial ATP production and implicates a pharmacological mechanism for cardioprotection. Finally, it has become evident, that levosimendan possesses an isoform-selective phosphodiesterase-inhibitory effect. Interpretation of the complex mechanism of levosimendan action requires that all potential pharmacological interactions are analyzed carefully in the framework of the currently available evidence. These data indicate that the cardiovascular effects of levosimendan are exerted via more than an isolated drug-receptor interaction, and involve favorable energetic and neurohormonal changes that are unique in comparison to other types of inodilators.

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