Key result
Central infusion of the ROCKII inhibitor fasudil significantly lowered resting heart rate and improved baroreflex gain in a rabbit model of chronic heart failure in an NO-dependent manner.
Why the study?
Does central ROCKII inhibition with fasudil improve sympathovagal imbalance and baroreflex sensitivity in a rabbit model of chronic heart failure?
Does central ROCKII inhibition with fasudil improve sympathovagal imbalance and baroreflex sensitivity in a rabbit model of chronic heart failure?
Central ROCKII inhibition with fasudil restores vagal and sympathetic tone and improves baroreflex sensitivity in a rabbit model of heart failure via an NO-dependent mechanism.
Central ROCKII inhibition may modulate autonomic tone in HF; leaves open translation from rabbit models to clinical practice.
The small GTPase RhoA and its associated kinase ROCKII are involved in vascular smooth muscle cell contraction and endothelial NO synthase mRNA destabilization. Overactivation of the RhoA/ROCKII pathway is implicated in several pathologies, including chronic heart failure (CHF), and may contribute to the enhanced sympathetic outflow seen in CHF as a result of decreased NO availability. Thus, we hypothesized that central ROCKII blockade would improve the sympathovagal imbalance in a pacing rabbit model of CHF in an NO-dependent manner. CHF was induced by rapid ventricular pacing and characterized by an ejection fraction of ≤45%. Animals were implanted with an intracerbroventricular cannula and osmotic minipump (rate, 1 μL/h) containing sterile saline, 1.5 µg/kg per day fasudil (Fas, a ROCKII inhibitor) for 4 days or Fas+100 µg/kg per day Nω-Nitro-l-arginine methyl ester hydrochloride, a NO synthase inhibitor. Arterial baroreflex control was assessed by intravenous infusion of sodium nitroprusside and phenylephrine. Fas infusion significantly lowered resting heart rate by decreasing sympathetic and increasing vagal tone. Furthermore, Fas improved baroreflex gain in CHF in an NO-dependent manner. In CHF Fas animals, the decrease in heart rate in response to intravenous metoprolol was similar to Sham and was reversed by Nω-Nitro-l-arginine methyl ester hydrochloride. Fas decreased angiotensin II type 1 receptor and phospho-ERM protein expression and increased endothelial NO synthase expression in the brain stem of CHF animals. These data strongly suggest that central ROCKII activation contributes to cardiac sympathoexcitation in the setting of CHF and that central Fas restores vagal and sympathetic tone in an NO-dependent manner. ROCKII may be a new central therapeutic target in the setting of CHF.
No takes yet. Share an insight, caveat, or question.
Haack et al. (2013) studied Chronic heart failure. Fasudil vs. Sterile saline or Fas+L-NAME was evaluated on Arterial baroreflex control and resting heart rate. Central infusion of the ROCKII inhibitor fasudil significantly lowered resting heart rate and improved baroreflex gain in a rabbit model of chronic heart failure in an NO-dependent manner.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: