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The functional consequences of sodium channel NaV 1.8 in human left ventricular hypertrophy
Ahmad, Shakil, Tirilomis, Petros, Pabel, Steffen, Dybkova, Nataliya, Hartmann, Nico, Molina, Cristina E.
, Tirilomis, Theodoros, Kutschka, Ingo, Frey, Norbert
, Maier, Lars S., Hasenfuss, Gerd, Streckfuss-Bömeke, Katrin und Sossalla, Samuel
(2018)
The functional consequences of sodium channel NaV 1.8 in human left ventricular hypertrophy.
ESC Heart Failure 2018, S. 1-10.
Veröffentlichungsdatum dieses Volltextes: 07 Nov 2018 13:39
Artikel
DOI zum Zitieren dieses Dokuments: 10.5283/epub.37933
Zusammenfassung
Aims In hypertrophy and heart failure, the proarrhythmic persistent Na+ current (I-NaL) is enhanced. We aimed to investigate the electrophysiological role of neuronal sodium channel Na(V)1.8 in human hypertrophied myocardium. Methods and results Myocardial tissue of 24 patients suffering from symptomatic severe aortic stenosis and concomitant significant afterload-induced hypertrophy with ...
Aims In hypertrophy and heart failure, the proarrhythmic persistent Na+ current (I-NaL) is enhanced. We aimed to investigate the electrophysiological role of neuronal sodium channel Na(V)1.8 in human hypertrophied myocardium. Methods and results Myocardial tissue of 24 patients suffering from symptomatic severe aortic stenosis and concomitant significant afterload-induced hypertrophy with preserved ejection fraction was used and compared with 12 healthy controls. We performed quantitative real-time PCR and western blot and detected a significant up-regulation of Na(V)1.8 mRNA (2.34-fold) and protein expression (1.96-fold) in human hypertrophied myocardium compared with healthy hearts. Interestingly, Na(V)1.5 protein expression was significantly reduced in parallel (0.60-fold). Using whole-cell patch-clamp technique, we found that the prominent I-NaL was significantly reduced after addition of novel Na(V)1.8-specific blockers either A-803467 (30 nM) or PF-01247324 (1 mu M) in human hypertrophic cardiomyocytes. This clearly demonstrates the relevant contribution of Na(V)1.8 to this proarrhythmic current. We observed a significant action potential duration shortening and performed confocal microscopy, demonstrating a 50% decrease in proarrhythmic diastolic sarcoplasmic reticulum (SR)-Ca2+ leak and SR-Ca2+ spark frequency after exposure to both Na(V)1.8 inhibitors. Conclusions We show for the first time that the neuronal sodium channel Na(V)1.8 is up-regulated on mRNA and protein level in the human hypertrophied myocardium. Furthermore, inhibition of Na(V)1.8 reduced augmented I-NaL, abbreviated the action potential duration, and decreased the SR-Ca2+ leak. The findings of our study suggest that Na(V)1.8 could be a promising antiarrhythmic therapeutic target and merits further investigation.
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| Dokumentenart | Artikel | ||||
| Titel eines Journals oder einer Zeitschrift | ESC Heart Failure | ||||
| Verlag: | Wiley | ||||
|---|---|---|---|---|---|
| Ort der Veröffentlichung: | SAN FRANCISCO | ||||
| Band: | 2018 | ||||
| Seitenbereich: | S. 1-10 | ||||
| Datum | 30 Oktober 2018 | ||||
| Institutionen | Medizin > Lehrstuhl für Innere Medizin II | ||||
| Identifikationsnummer |
| ||||
| Stichwörter / Keywords | HEART-FAILURE; DYSFUNCTION; MYOCARDIUM; EXPRESSION; MYOCYTES; BLOCKER; Left ventricular hypertrophy; Sodium channels; Late sodium current; HFpEF; Arrhythmias; Calcium; SR-Ca2+ leak | ||||
| Dewey-Dezimal-Klassifikation | 600 Technik, Medizin, angewandte Wissenschaften > 610 Medizin | ||||
| Status | Veröffentlicht | ||||
| Begutachtet | Ja, diese Version wurde begutachtet | ||||
| An der Universität Regensburg entstanden | Ja | ||||
| URN der UB Regensburg | urn:nbn:de:bvb:355-epub-379332 | ||||
| Dokumenten-ID | 37933 |
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