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Cardiac sympathetic activation circumvents high-dose beta blocker therapy in part through release of neuropeptide Y
Jonathan D. Hoang, Siamak Salavatian, Naoko Yamaguchi, Mohammed Amer Swid, David Hamon, Marmar Vaseghi
Jonathan D. Hoang, Siamak Salavatian, Naoko Yamaguchi, Mohammed Amer Swid, David Hamon, Marmar Vaseghi
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Research Article Cardiology

Cardiac sympathetic activation circumvents high-dose beta blocker therapy in part through release of neuropeptide Y

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Abstract

The sympathetic nervous system plays an important role in the occurrence of ventricular tachycardia (VT). Many patients, however, experience VT despite maximal doses of beta blocker therapy, possibly due to the effects of sympathetic cotransmitters such as neuropeptide Y (NPY). The purpose of this study was to determine, in a porcine model, whether propranolol at doses higher than clinically recommended could block ventricular electrophysiological effects of sympathoexcitation via stellate ganglia stimulation, and if any residual effects are mediated by NPY. Greater release of cardiac NPY was observed at higher sympathetic stimulation frequencies (10 and 20 vs. 4 Hz). Despite treatment with even higher doses of propranolol (1.0 mg/kg), electrophysiological effects of sympathetic stimulation remained, with residual shortening of activation recovery interval (ARI), a surrogate of action potential duration (APD). Adjuvant treatment with the NPY Y1 receptor antagonist BIBO 3304, however, reduced these electrophysiological effects while augmenting inotropy. These data demonstrate that high-dose beta blocker therapy is insufficient to block electrophysiological effects of sympathoexcitation, and a portion of these electrical effects in vivo are mediated by NPY. Y1 receptor blockade may represent a promising adjuvant therapy to beta-adrenergic receptor blockade.

Authors

Jonathan D. Hoang, Siamak Salavatian, Naoko Yamaguchi, Mohammed Amer Swid, David Hamon, Marmar Vaseghi

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Figure 5

Expression of NPY1R in the porcine ventricular myocardium and the effects of infusion of BIBO 3304 on hemodynamic parameters and ARIs.

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Expression of NPY1R in the porcine ventricular myocardium and the effect...
(A) NPY1R expression was confirmed in the porcine heart. High expression of NPY1R (green) is evident in the vascular smooth muscle, with moderate expression in intracardiac ganglia and myocardium. NPY-immunoreactive nerve fibers (red) directly appose the NPY1R-immunoreactive vessels and myocardium. (B) The presence of NPY1R is confirmed by Western blot analysis of ventricular whole cell lysate and shows no regional differences in expression. BIBO 3304 had no significant effect on resting (C) HR or (D) dP/dtmax, while a modest reduction in (E) LVSP (101.6 ± 4.1 to 94.7 ± 5.7 mmHg) was observed. (F) Representative polar maps comparing the effects of BIBO 3304 on raw ARIs. (G) Global corrected ventricular ARIs were significantly prolonged following the administration of BIBO 3304. Scale bars: 10 μm. A and B: n = 3 animals for all comparisons; comparisons were performed using 1-way ANOVA with post hoc analysis. C–F: n = 7 animals for all comparisons; comparisons were performed using 2-sided paired Student’s t test. “Before BIBO” refers to data recorded just before infusion of BIBO 3304 but after infusion of 1.0 mg/kg propranolol for protocol 3, while “After BIBO” represents data taken after 20 minutes of BIBO 3304 infusion.

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