Abstract 4364434: Single Gene Plasmid Expressing Multiple C-terminal Gα Inhibitory Peptides Targeting Parasympathetic and Sympathetic Signaling in the Atria Prevents Atrial Fibrillation in a Canine Model

A Aleksei Mikhailov D David Johnson (Mitsubishi Chemical Methacrylates) W Wenwei Zhang (State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Materials Science and Engineering) J Jorge Otero (University of Chicago, Chicago, Illinois, United States) L Lauren Benson (University of Chicago, Chicago, Illinois, United States) W William Marszalec (University of Chicago, Chicago, Illinois, United States) S Shin Yoo (University of Chicago, Chicago, Illinois, United States) A Anna Pfenniger C Cian O'Donnell (University of Chicago, Chicago, Illinois, United States) A Asish Ghosh (University of Chicago, Chicago, Illinois, United States) N Noemi Nisini (University of Chicago, Chicago, Illinois, United States) M Markus Rottmann (University of Chicago, Chicago, Illinois, United States) M Md Karim Ullah (University of Chicago, Chicago, Illinois, United States) C Cevher Ozcan (The University of Chicago Medicine, Chicago, Illinois, United States) R Rongxue Wu (Univeristy of Chicago, Chicago, Illinois, United States) R Rishi Arora (University of Chicago, Chicago, Illinois, United States)

Abstract

Introduction: Atrial fibrillation (AF) is the most common arrhythmia and is a major risk factor for stroke. Existing therapies including ablation remain suboptimal. An increase in autonomic nerve signaling – both parasympathetic and sympathetic – is thought to contribute to AF genesis and progression. Therapies targeting atrial autonomic signaling may therefore attenuate arrhythmogenic substrate for AF. Hypothesis: Combined gene therapy targeting parasympathetic (Gαi and Gαo), and sympathetic (Gαs) signaling will attenuate autonomic effects on atrial electrophysiology (EP), delaying AF onset and progression. Methods: A polycistronic plasmid encoding inhibitory peptides for Gαi, Gαo, and Gαs (separated by P2A sequences) was injected in the canine (n=3) atria followed by electroporation to facilitate gene delivery. Controls included scrambled-sequence-injected and uninjected animals (n=10). Persistent AF (PersAF) was induced by rapid atrial pacing (RAP) over 12 weeks. Residual AF was evaluated at terminal EP study (Panel A). Results: Controls developed persAF (100% AF burden) after 3.6±1.4 weeks of RAP. Combined (Gαi+Gαo+Gαs) gene therapy attenuated AF development – two animals developed persAF at 8±3 weeks, one animal never reached 100% AF burden and was mainly in atrial flutter until the terminal. The last day of sinus rhythm was extended (54±27 vs 22±13 days, treatment vs control). AF burden was significantly reduced by 35±20% at all timepoints (Panel B, p<0.05). AF at the terminal experiment displayed lower frequency and less fractionation in gene therapy animals (panel C), with one animal spontaneously converting to sinus rhythm. Conclusion: Gene-based inhibition of parasympathetic and sympathetic signaling in the atria by expression of Gαi, Gαo, and Gαs inhibitory peptides successfully delays onset of AF and attenuates AF burden. These data emphasize an important mechanistic role for autonomic nerve activity in genesis and progression of AF. Future optimization of this multi-target gene therapy approach may offer promising novel treatments for AF.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (16)

A

Aleksei Mikhailov

D

David Johnson

Mitsubishi Chemical Methacrylates

W

Wenwei Zhang

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Materials Science and Engineering

J

Jorge Otero

University of Chicago, Chicago, Illinois, United States

L

Lauren Benson

University of Chicago, Chicago, Illinois, United States

W

William Marszalec

University of Chicago, Chicago, Illinois, United States

S

Shin Yoo

University of Chicago, Chicago, Illinois, United States

A

Anna Pfenniger

C

Cian O'Donnell

University of Chicago, Chicago, Illinois, United States

A

Asish Ghosh

University of Chicago, Chicago, Illinois, United States

N

Noemi Nisini

University of Chicago, Chicago, Illinois, United States

M

Markus Rottmann

University of Chicago, Chicago, Illinois, United States

M

Md Karim Ullah

University of Chicago, Chicago, Illinois, United States

C

Cevher Ozcan

The University of Chicago Medicine, Chicago, Illinois, United States

R

Rongxue Wu

Univeristy of Chicago, Chicago, Illinois, United States

R

Rishi Arora

University of Chicago, Chicago, Illinois, United States