Key result
Vericiguat ameliorated AF-associated structural and electrical remodeling, reversing enlarged atrium, reducing myocardial fibrosis, and preventing reduced atrial effective refractory periods.
Why the study?
The molecular etiology of AF and its treatment are poorly understood, and the effects of vericiguat on atrial structural and electrical remodeling in AF are unclear.
Does vericiguat reduce electrical and structural remodeling in a rabbit model of atrial fibrillation?
Does vericiguat reduce electrical and structural remodeling in a rabbit model of atrial fibrillation?
Vericiguat ameliorates AF-associated structural and electrical remodeling in a rabbit model, suggesting potential therapeutic value for AF.
Does not support vericiguat for clinical AF use; leaves open translation of rabbit remodeling benefits to humans.
Purpose: The molecular etiology of atrial fibrillation (AF) and its treatment are poorly understood. AF involves both electrical and structural features. Vericiguat can ameliorate cardiac remodeling in heart failure. The effects of vericiguat on AF, however, are unclear. Here, the actions of vericiguat on atrial structural and electrical remodeling in AF and its possible mechanisms were investigated. Methods and Results: Thirty-six rabbits were randomly allocated to four groups, namely, sham, RAP (pacing with 600 beats/min over three weeks), vericiguat-treated (three weeks’ pacing plus daily oral dose of 1.5 mg/kg of vericiguat), and vericiguat-treated only. HL-1 cells received rapid pacing with or without vericiguat. Parameters including electrophysiology, echocardiography, histology, Ca 2+ levels, and I CaL density, as well as levels of TRPC6, CaN, NFAT4, p-NFAT4, Cav1.2, collagen I, collagen III, and ST2 were measured. Significant changes of above proteins expression level, circulating biochemical indices, Ca 2+ concentrations, and I CaL density in both animals and cell models, these effects were significantly restored by vericiguat. Vericiguat also reversed the enlarged atrium and significantly reduced myocardial fibrosis, together with preventing reduced atrial effective refractory periods (AERPs) and AF induction rate. Conclusion: Vericiguat thus ameliorated AF-associated structural and electrical remodeling. These findings suggest the potential of vericiguat for treating AF.
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Lou et al. (2023) studied Atrial fibrillation (n=36). Vericiguat vs. Sham and rapid pacing without vericiguat was evaluated on Atrial structural and electrical remodeling. Vericiguat ameliorated AF-associated structural and electrical remodeling, reversing enlarged atrium, reducing myocardial fibrosis, and preventing reduced atrial effective refractory periods.
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