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Updated: Jan 30, 2026

Sterile Pericarditis in Aachener Minipigs As a Model for Atrial Myopathy and Atrial Fibrillation
Published on: September 24, 2021
Histone deacetylase inhibition attenuates atrial arrhythmogenesis in sterile pericarditis
Chien-Jung Chang1, Shao-Jung Li2, Yao-Chang Chen3
1Division of Cardiology, Tungs' Taichung MetroHarbor Hospital, Taichung, Taiwan.
Insights
Histone deacetylase (HDAC) inhibition prevents atrial fibrillation (AF) after pericardiotomy. This study shows HDAC inhibition reduces fibrosis and arrhythmogenesis in pulmonary veins and atria, mitigating AF triggers.
Area of Science:
- Cardiology
- Pharmacology
- Molecular Biology
Background:
- Atrial fibrillation (AF) is a common complication following cardiac surgery.
- Histone deacetylase (HDAC) inhibition has shown promise in reducing AF occurrence.
- Pericarditis may influence AF triggers and substrates, suggesting a role for HDAC inhibition.
Purpose of the Study:
- To investigate the effects of HDAC inhibition on AF-related arrhythmogenesis and fibrosis in a rabbit model of pericardiotomy.
- To assess the impact of MPT0E014, an HDAC inhibitor, on electrophysiological properties and structural changes in the atria and pulmonary veins.
Main Methods:
- Electrocardiograms and intracellular action potentials were recorded in control and pericardiotomic rabbits.
- Rabbits received either a vehicle or MPT0E014 (HDAC inhibitor) intraperitoneally.
- Histological analysis (Masson's trichrome) was performed to evaluate collagen fiber content (fibrosis).
Main Results:
- Pericardiotomy induced frequent atrial premature contractions and spontaneous burst firings in pulmonary veins.
- MPT0E014 treatment decreased beating rates in pulmonary veins and reduced spontaneous burst firings.
- Fibrosis was prevalent in the pulmonary veins and left atrium of pericardiotomic rabbits, but this was attenuated by MPT0E014 treatment.
Conclusions:
- Pericardiotomy leads to increased fibrosis and arrhythmogenesis in pulmonary veins and the left atrium.
- HDAC inhibition effectively prevents these detrimental changes, suggesting a therapeutic potential for preventing AF post-cardiac surgery.
Abstract:
Cardiac surgery is complicated with atrial fibrillation (AF). Histone deacetylase (HDAC) inhibition reduces AF occurrence. In pericarditis, HDAC inhibition may modulate AF trigger and substrate. We recorded electrocardiograms in control and pericardiotomic (op) rabbits without and with an intraperitoneal injection of MPT0E014 (HDAC inhibitor). Conventional microelectrodes recorded action potentials (APs) in pulmonary veins (PVs), the right and left atrium (LA). Masson's trichrome was used to identify collagen fibers in PVs and the LA. Electrocardiograms showed frequent atrial premature contractions in op rabbits, but not in the other 3 groups. The beating rates in PVs and opPVs were decreased by MPT0E014 treatment. Spontaneous burst firings occurred in opPVs (36.4%), but not in control PVs. H2O2 induced greater burst firings in opPVs (72.7%) than in control PVs (11.1%), MPT0E014-treated PVs (16.7%), and MPT0E014-treated opPVs (12.5%). The AP duration at a repolarization extent of 90% (APD90) was shorter in the opLA than that in the control LA. In the presence of isoproterenol (1 μM), rapid atrial pacing (RAP, 20 Hz) induced a higher incidence of burst firings in the opLA (90%) than in the other groups. In contrast, acetylcholine (5 mM) and RAP induced a lower incidence of burst firing in the MPT0E014-treated LA (33.3%) than in the other groups. Fibrosis prevailed in opPVs and the opLA compared to the respective control PVs and LA, which was attenuated in those that received MPT0E014. In conclusion, a pericardiotomy increased fibrosis and arrhythmogenesis in PVs and the LA, which were prevented by HDAC inhibition.
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