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Atrial Remodeling After PFA Substrate Modification for Persistent AF (PeAF)

Pulsed-Field Ablation for Persistent Atrial Fibrillation: Impact of Atrial Remodeling After Substrate Modification

Status
Not yet recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07675395
Enrollment
30
Registered
2026-06-30
Start date
2026-07-01
Completion date
2028-12-31
Last updated
2026-07-02

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Atrial Fibrillation (AF), Atrial Remodeling, Persistent Atrial Fibrillation, Pulsed Field Ablation

Keywords

Pulsed Field Ablation, Persistent Atrial Fibrillation, Atrial Fibrillation, Atrial Remodeling, Substrate Modification, Atrial Fibrosis, Cardiac MRI, Posterior Wall Isolation

Brief summary

Atrial fibrillation (AF) is associated with both electrical and structural remodeling of the left atrium. While successful catheter ablation has been shown to reverse some aspects of atrial remodeling, the impact of pulsed-field ablation (PFA) - a non-thermal ablation technology that selectively targets cardiomyocytes while sparing surrounding structures - on atrial remodeling in patients with persistent AF undergoing extensive substrate modification remains unclear. This is a prospective, single-center, single-arm observational study conducted at Taipei Veterans General Hospital. The study will enroll 30 patients with persistent atrial fibrillation who undergo pulmonary vein isolation (PVI) and extensive substrate modification using the FARAWAVE / FARADRIVE Catheter and FARASTAR System. The primary objective is to evaluate left atrial structural remodeling following PFA, including changes in LA size, atrial strain, extent of atrial fibrosis, and atrial hemodynamic function. The secondary objective is to assess AF-free survival between 3 and 12 months after the procedure, and its relationship to atrial remodeling. All participants will be followed for 12 months, with an interim analysis conducted once all subjects complete their 6-month follow-up.

Detailed description

Background and Rationale Atrial fibrillation (AF) is associated with progressive electrical and structural remodeling of the left atrium. Electrical remodeling typically reverses within a week after restoration of sinus rhythm, whereas structural remodeling takes longer - generally 2 to 4 months - and successful ablation has been shown to improve left atrial transport function. Pre-procedural assessment with echocardiographic left atrial strain and delayed-enhancement MRI may help predict the extent of reverse remodeling after ablation. Pulsed-field ablation (PFA) is a non-thermal ablation technology that uses pulsed electric fields to create focal lesions selectively targeting cardiomyocytes, while largely sparing surrounding structures such as the esophagus, phrenic nerve, and blood vessels. Compared with radiofrequency ablation (RFA), PFA can create larger and deeper lesions with fewer applications, with a potentially reduced risk of collateral injury. Beyond pulmonary vein isolation (PVI), PFA has also been applied to other atrial substrates, including the posterior wall and mitral line. A recent study suggested that mean pulmonary arterial pressure did not worsen in patients with pre-existing pulmonary hypertension undergoing repeat PFA for recurrent AF. However, the impact of PFA on atrial remodeling in patients with persistent AF undergoing extensive substrate modification remains unknown. This study aims to characterize changes in atrial function and structural remodeling 3 to 12 months after PFA for PVI and extensive substrate modification, and to explore its relationship with procedural outcomes. Study Design This is a prospective, single-center, single-arm observational clinical investigation conducted at Taipei Veterans General Hospital. Thirty patients with persistent AF will undergo the index ablation procedure using the FARAWAVE Catheter, FARADRIVE Catheter, and FARASTAR System (Boston Scientific). Enrollment will cease once approximately 30 subjects have been accrued. An interim endpoint analysis will be performed once all subjects have completed their 6-month follow-up. All participants will be followed for up to 12 months. Procedure Pre-procedural care will follow the standard institutional protocol for AF ablation cases, with AF classification (paroxysmal vs. non-paroxysmal) defined according to the 2024 HRS consensus on catheter ablation of AF. Pre-procedural evaluation includes transthoracic echocardiography (TTE), transesophageal echocardiography (TEE), cardiac CT and MRI, and 14-day Holter monitoring. The ablation procedure is performed under deep sedation or general anesthesia, with PFA targeting pulmonary vein isolation and posterior wall isolation. Additional substrate modification may be performed using PFA at the physician's discretion. Conventional invasive hemodynamic assessment of left atrial function - including mean pulmonary artery pressure (mPAP), pulmonary arterial wedge pressure, cardiac output, vascular resistance, and right atrial pressure - will be performed before and after PFA during the procedure. Post-procedural assessments include 12-lead ECG and in-hospital Holter monitoring within 3 days following PFA. At 3 to 12 months after the procedure, participants will undergo repeat echocardiography, cardiac CT and MRI, ECG, and 14-day Holter monitoring. Invasive hemodynamic assessment will be repeated approximately 3 months after the procedure. Endpoints The primary endpoint is left atrial structural remodeling, including changes in LA size, atrial strain, extent of atrial fibrosis, and other atrial hemodynamic functions. The secondary endpoint is AF-free survival within 3 to 12 months following PFA. The main scientific question is to elucidate atrial remodeling following non-thermal ablation with PFA and its relationship to ablation outcomes. Safety Monitoring All adverse events (AEs) and serious adverse events (SAEs) will be captured and classified by the investigator according to relatedness (procedure-related, device-related, cardiovascular-related, arrhythmia-related, heart failure-related), seriousness, timing (pre-procedure, during ablation, post-ablation), and diagnosis. Pre-specified serious adverse events of interest include cardiac tamponade or perforation, death, esophageal perforating complications, gastric motility / pyloric spasm disorders, heart block, myocardial infarction, hospitalization due to cardiovascular or pulmonary PFA system- or procedure-related events, pericarditis, peripheral or organ thromboembolism, pulmonary vein stenosis, severe hemolysis with subsequent renal failure or significant anemia, stroke, transient ischemic attack, unresolved phrenic nerve palsy or paresis, and vascular access complications.

Interventions

DEVICEPulsed-Field Ablation with FARAWAVE Catheter System

Pulsed-field ablation is performed using the FARAWAVE / FARADRIVE Catheter and FARASTAR System (Boston Scientific) under deep sedation or general anesthesia. PFA is delivered to achieve pulmonary vein isolation and posterior wall isolation, with additional substrate modification at the operator's discretion. Invasive hemodynamic assessment is performed pre- and post-PFA during the index procedure and repeated at approximately 3 months.

Sponsors

Taipei Veterans General Hospital, Taiwan
Lead SponsorOTHER_GOV
Boston Scientific Corporation
CollaboratorINDUSTRY

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Masking description

This is an open-label, single-arm study. All participants and investigators are aware of the treatment assignment, and no masking or blinding procedures are implemented.

Intervention model description

Single-arm, single-center, prospective observational cohort. All enrolled subjects with persistent atrial fibrillation will undergo the index ablation procedure using pulsed-field ablation (FARAWAVE / FARADRIVE Catheter and FARASTAR System) for pulmonary vein isolation and extensive substrate modification, and will be followed for 12 months. An interim analysis will be performed once all subjects complete their 6-month follow-up.

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Diagnosis of persistent atrial fibrillation * Left atrial anteroposterior (AP) diameter greater than 4 cm and less than 6 cm * Anti-arrhythmic medications (except amiodarone) discontinued for at least 5 half-lives before the procedure * No use of beta-blockers or diuretics before or after the ablation procedure * Willing and able to provide written informed consent

Exclusion criteria

* Paroxysmal atrial fibrillation * Previous left atrial surgery or catheter ablation procedure, including left atrial appendage closure * Atrial fibrillation due to reversible causes, such as thyroid disorders, acute alcohol intoxication, or other major surgeries within the 90 days preceding the procedure * Myocardial infarction, acute coronary syndrome, percutaneous coronary intervention, or coronary artery bypass grafting within 90 days of the procedure * Known presence of cardiac thrombus * Stroke or transient ischemic attack within the last 90 days * Any other anatomical or comorbid condition that, in the investigator's opinion, could limit the patient's ability to participate in the clinical trial, comply with follow-up requirements, or impact the scientific validity of the clinical trial results

Design outcomes

Primary

MeasureTime frameDescription
Change in Right Atrial PressurePre-procedure, immediately post-procedure, and 3 months post-procedureChange from baseline in right atrial pressure. Invasively measured during cardiac catheterization, performed immediately before and after PFA during the index procedure, and repeated approximately 3 months post-procedure.
Change in Cardiac OutputPre-procedure, immediately post-procedure, and 3 months post-procedureChange from baseline in cardiac output. Invasively measured during cardiac catheterization, performed immediately before and after PFA during the index procedure, and repeated approximately 3 months post-procedure.
Change in Pulmonary Vascular ResistancePre-procedure, immediately post-procedure, and 3 months post-procedureChange from baseline in pulmonary vascular resistance. Invasively measured during cardiac catheterization, performed immediately before and after PFA during the index procedure, and repeated approximately 3 months post-procedure.
Change in Left Atrial Anteroposterior DiameterBaseline, 3 months, 6 months, and 12 months post-procedureChange from baseline in left atrial anteroposterior (AP) diameter measured by transthoracic echocardiography.
Change in Left Atrial Volume IndexBaseline, 3 months, 6 months, and 12 months post-procedureChange from baseline in left atrial volume index measured by transthoracic echocardiography.
Change in Left Atrial Reservoir StrainBaseline, 3 months, 6 months, and 12 months post-procedureChange from baseline in left atrial reservoir strain assessed by transthoracic echocardiography with speckle-tracking analysis.
Change in Left Atrial Conduit StrainBaseline, 3 months, 6 months, and 12 months post-procedureChange from baseline in left atrial conduit strain assessed by transthoracic echocardiography with speckle-tracking analysis.
Change in Left Atrial Contractile StrainBaseline, 3 months, 6 months, and 12 months post-procedureChange from baseline in left atrial contractile strain assessed by transthoracic echocardiography with speckle-tracking analysis.
Change in Extent of Left Atrial FibrosisBaseline and 3 to 12 months post-procedureChange from baseline in the extent of left atrial fibrosis assessed by delayed-enhancement cardiac magnetic resonance imaging (MRI), expressed as the percentage of fibrotic left atrial wall relative to total left atrial wall area.
Change in Mean Pulmonary Artery Pressure (mPAP)Pre-procedure, immediately post-procedure, and 3 months post-procedureChange from baseline in mean pulmonary artery pressure. Invasively measured during cardiac catheterization, performed immediately before and after PFA during the index procedure, and repeated approximately 3 months post-procedure.
Change in Pulmonary Arterial Wedge Pressure (PAWP)Pre-procedure, immediately post-procedure, and 3 months post-procedureChange from baseline in pulmonary arterial wedge pressure. Invasively measured during cardiac catheterization, performed immediately before and after PFA during the index procedure, and repeated approximately 3 months post-procedure.

Secondary

MeasureTime frameDescription
Correlation Between Atrial Remodeling and Ablation Outcome3 to 12 months post-procedureCorrelation between post-procedural atrial structural remodeling parameters (left atrial size, atrial strain, extent of atrial fibrosis on delayed-enhancement cardiac MRI, and invasively measured atrial hemodynamic function) and atrial fibrillation-free survival following pulsed-field ablation. Each parameter's association with recurrence is expressed as a correlation coefficient. This analysis aims to identify imaging- and hemodynamic-based predictors of ablation success and to characterize the relationship between reverse atrial remodeling and clinical outcome.
Atrial Fibrillation-Free Survival3 to 12 months post-procedureProportion of subjects free from any documented atrial tachyarrhythmia (atrial fibrillation, atrial flutter, or atrial tachycardia) lasting ≥30 seconds following a 90-day blanking period after the index pulsed-field ablation procedure. Recurrence is assessed by 12-lead ECG and 14-day Holter monitoring performed between 3 and 12 months post-procedure.

Countries

Taiwan

Contacts

CONTACTFa-Po Dr. Chung, MD, PhD
marxtaiji@gmail.com886-2-28712121
CONTACTDr. Chiang, PhD
qqsnoopy0223@gmail.com886-2-28712121

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jul 3, 2026