Enhanced Ca2+ influx through cardiac L-type Ca2+ channels maintains the systolic Ca2+ transient in early cardiac atrophy induced by mechanical unloading

2013 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Enhanced Ca2+ influx through cardiac L-type Ca2+ channels maintains the systolic Ca2+ transient in early cardiac atrophy induced by mechanical unloading​
Schwoerer, A. P.; Neef, S.; Broichhausen, I.; Jacubeit, J.; Tiburcy, M. ; Wagner, M. & Biermann, D. et al.​ (2013) 
Pflügers Archiv - European Journal of Physiology465(12) pp. 1763​-1773​.​ DOI: https://doi.org/10.1007/s00424-013-1316-y 

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Authors
Schwoerer, A. P.; Neef, S.; Broichhausen, I.; Jacubeit, J.; Tiburcy, M. ; Wagner, M.; Biermann, D.; Didié, M. ; Vettel, C. ; Maier, L. S. ; Zimmermann, W. H. ; Carrier, L.; Eschenhagen, T. ; Volk, T.; El-Armouche, A. ; Ehmke, H.
Abstract
Cardiac atrophy as a consequence of mechanical unloading develops following exposure to microgravity or prolonged bed rest. It also plays a central role in the reverse remodelling induced by left ventricular unloading in patients with heart failure. Surprisingly, the intracellular Ca2+ transients which are pivotal to electromechanical coupling and to cardiac plasticity were repeatedly found to remain unaffected in early cardiac atrophy. To elucidate the mechanisms underlying the preservation of the Ca2+ transients, we investigated Ca2+ cycling in cardiomyocytes from mechanically unloaded (heterotopic abdominal heart transplantation) and control (orthotopic) hearts in syngeneic Lewis rats. Following 2 weeks of unloading, sarcoplasmic reticulum (SR) Ca2+ content was reduced by similar to 55 %. Atrophic cardiac myocytes also showed a much lower frequency of spontaneous diastolic Ca2+ sparks and a diminished systolic Ca2+ release, even though the expression of ryanodine receptors was increased by similar to 30 %. In contrast, current clamp recordings revealed prolonged action potentials in endocardial as well as epicardial myocytes which were associated with a two to fourfold higher sarcolemmal Ca2+ influx under action potential clamp. In addition, Cav1.2 subunits which form the pore of L-type Ca2+ channels (LTCC) were upregulated in atrophic myocardium. These data suggest that in early cardiac atrophy induced by mechanical unloading, an augmented sarcolemmal Ca2+ influx through LTCC fully compensates for a reduced systolic SR Ca2+ release to preserve the Ca2+ transient. This interplay involves an electrophysiological remodelling as well as changes in the expression of cardiac ion channels.
Issue Date
2013
Journal
Pflügers Archiv - European Journal of Physiology 
Project
SFB 1002: Modulatorische Einheiten bei Herzinsuffizienz 
SFB 1002 | A02: Bedeutung des Phosphatase-Inhibitors-1 für die SR-spezifische Modulation der Beta- adrenozeptor-Signalkaskade 
SFB 1002 | A03: Bedeutung CaMKII-abhängiger Mechanismen für die Arrhythmogenese bei Herzinsuffizienz 
SFB 1002 | C04: Fibroblasten-Kardiomyozyten Interaktion im gesunden und erkrankten Herzen: Mechanismen und therapeutische Interventionen bei Kardiofibroblastopathien 
Working Group
RG El-Armouche 
RG L. Maier (Experimentelle Kardiologie) 
RG Tiburcy (Stem Cell Disease Modeling) 
RG Zimmermann (Engineered Human Myocardium) 
ISSN
0031-6768
eISSN
1432-2013
Language
English

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