Key result
Electrical pacing of adult rat ventricular myocytes sensitized them to beta-adrenergic receptor-stimulated apoptosis, with 0.1 microM norepinephrine causing equivalent cytotoxicity to 10 microM in quiescent cells.
Why the study?
Does electrical pacing modulate norepinephrine cytotoxicity and the cytoprotective effect of neuregulin-1beta in adult rat ventricular myocytes?
Does electrical pacing modulate norepinephrine cytotoxicity and the cytoprotective effect of neuregulin-1beta in adult rat ventricular myocytes?
Myocyte contractility sensitizes cells to norepinephrine-induced cytotoxicity and modulates the cytoprotective effects of neuregulin-1beta, highlighting the importance of using paced cardiomyocytes in survival signaling studies.
Electrical activity may modulate apoptotic responses in isolated myocytes; leaves open relevance to human myocardium.
The purpose of this study is to test the hypothesis that mechanical and electrical activity in adult rat ventricular myocytes (ARVM) alters responses to proapoptotic and prosurvival ligands. The effects of electrical stimulation on myocyte survival, stress signaling, response to beta-adrenergic receptor (beta-AR)-stimulated apoptosis, and neuregulin-1beta (NRG) were examined. Electrical stimulation (6.6 V/cm; 0, 2, and 5 Hz; 2-ms duration; alternating polarity) of ARVM resulted in more than 70% capture. Although ARVM paced for 48 h showed higher mitochondrial uptake of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (P < 0.05, 0 vs. 2 and 5 Hz), electrical stimulation had little effect on cell survival assessed by trypan blue uptake, CPK release, and terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling staining. Electrical stimulation for 24 h did not induce stress response (heat shock protein 70, 90) nor stress kinase (Erk, JNK, p38) activation. NRG stimulation of Erk and Akt was similar between paced and quiescent cells. Pacing sensitized myocytes to beta-AR-stimulated JNK phosphorylation and cell death with 0.1 microM norepinephrine (NE) in paced myocytes causing equivalent cytotoxicity to 10 microM NE in quiescent cells. NRG suppressed beta-AR-induced apoptosis through a phosphatidylinositol-3-kinase-dependent pathway in both paced and quiescent cells, although it is overwhelmed by high-NE concentration in paced cells. Thus myocyte contractility modulates both NE cytotoxicity as well as the cytoprotective effect of NRG. These results demonstrate the feasibility and importance of using electrically paced cardiomyocytes in primary culture when examining the signaling pathways of cell survival.
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Kuramochi et al. (2004) studied this question. Electrical stimulation (pacing) vs. Quiescent cells (0 Hz) was evaluated on Cell survival, stress signaling, and response to beta-AR-stimulated apoptosis. Electrical pacing of adult rat ventricular myocytes sensitized them to beta-adrenergic receptor-stimulated apoptosis, with 0.1 microM norepinephrine causing equivalent cytotoxicity to 10 microM in quiescent cells.
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