Pro-arrhythmic risk strongly limits the therapeutic value of current inotropic interventions. Istaroxime (previously PST2744) is a novel inotropic agent, significantly less pro-arrhythmic than digoxin that, in addition to block Na(+)/K(+) pump, stimulates sarcoplasmic reticulum (SR) Ca(2+) ATPase (SERCA2). Here we compare istaroxime and digoxin effects to further address the role of SR modulation in reducing the toxicity associated with Na(+)/K(+) pump blockade. In murine ventricular myocytes both compounds increased cell twitch (inotropy) in a concentration-dependent fashion. At high concentrations digoxin, but not istaroxime, induced unstimulated contractions, a sign of pro-arrhythmic toxicity. To evaluate the mechanism of this difference, we compared the two drugs at concentrations exerting equal inotropy but different toxicity. At these concentrations: (1) the two drugs equally inhibited the Na(+)/K(+) pump; (2) digoxin induced larger increases in resting Ca(2+) and in diastolic Ca(2+) during pacing; (3) neither drug affected the relationship between RyR-mediated SR Ca(2+) leak and Ca(2+) content; (4) istaroxime, but not digoxin, enhanced SR Ca(2+) reuptake rate. In conclusion, digoxin toxicity was associated to larger accumulation of cytosolic Ca(2+), which did not result from RyR facilitation, but which might ultimately induce it to promote unstimulated Ca(2+) release. The lower toxicity of Na(+)/K(+) pump blockade by istaroxime may thus reflect improved Ca(2+) confinement within the SR, likely to result from concomitant SERCA2 stimulation.

Alemanni, M., Rocchetti, M., Re, D., Zaza, A. (2011). Role and mechanism of subcellular Ca2+ distribution in the action of two inotropic agents with different toxicity. JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 50(5), 910-918 [10.1016/j.yjmcc.2011.02.008].

Role and mechanism of subcellular Ca2+ distribution in the action of two inotropic agents with different toxicity

ALEMANNI, MATTEO;ROCCHETTI, MARCELLA;ZAZA, ANTONIO
2011

Abstract

Pro-arrhythmic risk strongly limits the therapeutic value of current inotropic interventions. Istaroxime (previously PST2744) is a novel inotropic agent, significantly less pro-arrhythmic than digoxin that, in addition to block Na(+)/K(+) pump, stimulates sarcoplasmic reticulum (SR) Ca(2+) ATPase (SERCA2). Here we compare istaroxime and digoxin effects to further address the role of SR modulation in reducing the toxicity associated with Na(+)/K(+) pump blockade. In murine ventricular myocytes both compounds increased cell twitch (inotropy) in a concentration-dependent fashion. At high concentrations digoxin, but not istaroxime, induced unstimulated contractions, a sign of pro-arrhythmic toxicity. To evaluate the mechanism of this difference, we compared the two drugs at concentrations exerting equal inotropy but different toxicity. At these concentrations: (1) the two drugs equally inhibited the Na(+)/K(+) pump; (2) digoxin induced larger increases in resting Ca(2+) and in diastolic Ca(2+) during pacing; (3) neither drug affected the relationship between RyR-mediated SR Ca(2+) leak and Ca(2+) content; (4) istaroxime, but not digoxin, enhanced SR Ca(2+) reuptake rate. In conclusion, digoxin toxicity was associated to larger accumulation of cytosolic Ca(2+), which did not result from RyR facilitation, but which might ultimately induce it to promote unstimulated Ca(2+) release. The lower toxicity of Na(+)/K(+) pump blockade by istaroxime may thus reflect improved Ca(2+) confinement within the SR, likely to result from concomitant SERCA2 stimulation.
Articolo in rivista - Articolo scientifico
Sodium-Potassium-Exchanging ATPase; Animals; Calcium; Etiocholanolone; Cells, Cultured; Cardiotonic Agents; Mice, Inbred C57BL; Digoxin; Sarcoplasmic Reticulum; Mice; Electrophysiology; Female
English
2011
50
5
910
918
none
Alemanni, M., Rocchetti, M., Re, D., Zaza, A. (2011). Role and mechanism of subcellular Ca2+ distribution in the action of two inotropic agents with different toxicity. JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 50(5), 910-918 [10.1016/j.yjmcc.2011.02.008].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/43639
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