Abstract 4369312: NOX2 Knockdown Attenuates Atrial Fibrillation-Induced Senescence Marker Upregulation and Atrial Fibrillation Burden in Canine Atria

C Cian O'Donnell (University of Chicago, Chicago, Illinois, United States) A Asish Ghosh (University of Chicago, Chicago, Illinois, United States) K karim ullah (University of Chicago, Chicago, Illinois, United States) A Aleksei Mikhailov S Shin Yoo (University of Chicago, Chicago, Illinois, United States) L Lauren Benson (University of Chicago, Chicago, Illinois, United States) W Wenwei Zhang (State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Materials Science and Engineering) D David Johnson (Mitsubishi Chemical Methacrylates) W William Marszalec (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) 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

Background: Atrial fibrillation (AF) is associated with aging and increased expression of senescence-associated secretory phenotype (SASP) markers. It remains unclear whether AF directly exacerbates atrial aging and whether inhibition of oxidative pathways can reverse this effect. Hypothesis: We hypothesized that persistent AF (persAF) increases atrial SASP expression and that targeted knockdown of NADPH oxidase 2 (NOX2) – a major enzymatic source of oxidative injury - mitigates these increases and attenuates AF development. Methods: Canines underwent rapid atrial pacing (RAP, 600 bpm) to induce persAF (93-160 days; n=6), with non-paced animals as controls (n=7). Additional animals received either plasmids expressing NOX2 shRNA (n=7) or scramble shRNA (n=5) delivered to the atrial myocardium via direct injection and electroporation. Expression of senescence markers (IL-1β, IL-6, p16, p21, p53, and PAI-1) was assessed in atrial regions left atrial appendage (LAA), left atrial free wall (LAFW), posterior left atrium (PLA), right atrial appendage (RAA), posterior left atrium (PLA), right atrial free wall (RAFW) and posterior right atrium (PRA) via quantitative RT-PCR. Ganglionated plexi (fat pads) from RAP (n=5) and control animals (n=3) were similarly analyzed. Results: PersAF significantly elevated SASP markers in atrial tissue, notably IL-1β, IL-6, and p21 (p<0.001 in LAA). Upregulation was widespread across atrial regions but particularly pronounced in the left atrial appendage (LAA) (panel A). NOX2 knockdown significantly blunted senescence marker expression, especially p21, across multiple atrial regions compared to scramble controls (p<0.01 in LAA, PLA, RAFW; p<0.001 in LAFW) (panel B, C). In atrial fat pads, persAF significantly increased IL-1β and IL-6 (p<0.05), consistent with the atrial tissue findings (panel D). NOX2 knockdown also significantly delayed AF onset and reduced AF burden (Fig. 2). Conclusion: Persistent AF markedly upregulates senescence markers across atrial myocardium, implicating a pro-aging phenotype induced by AF. Targeted NOX2 knockdown effectively rescues this SASP marker upregulation – along with a significant decrease in AF burden - highlighting NOX2 as a potential therapeutic target for slowing cardiac aging associated with 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 (14)

C

Cian O'Donnell

University of Chicago, Chicago, Illinois, United States

A

Asish Ghosh

University of Chicago, Chicago, Illinois, United States

K

karim ullah

University of Chicago, Chicago, Illinois, United States

A

Aleksei Mikhailov

S

Shin Yoo

University of Chicago, Chicago, Illinois, United States

L

Lauren Benson

University of Chicago, Chicago, Illinois, United States

W

Wenwei Zhang

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

D

David Johnson

Mitsubishi Chemical Methacrylates

W

William Marszalec

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

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