Clinical Trials Directory

Trials / Completed

CompletedNCT01477983

Kansai Plus Atrial Fibrillation Trial

Kansai Plus Atrial Fibrillation Trial; UNmasking Dormant Electrical Reconduction by Adenosine TriPhosphate Trial; Efficacy of Antiarrhythmic Drugs Short-Term Use After Catheter Ablation for Atrial Fibrillation Trial

Status
Completed
Phase
Phase 4
Study type
Interventional
Enrollment
2,113 (actual)
Sponsor
Kyoto University, Graduate School of Medicine · Academic / Other
Sex
All
Age
21 Years – 79 Years
Healthy volunteers
Not accepted

Summary

This is a 2x2 factorial randomized controlled trial (KPAF Trial), evaluating two different pharmacological approaches to improve long-term outcome of catheter ablation for atrial fibrillation (AF). The study is composed of UNmasking Dormant Electrical Reconduction by Adenosine TriPhosphate (UNDER-ATP) Trial and Efficacy of Antiarrhythmic Drugs Short-Term Use after Catheter Ablation for Atrial Fibrillation (EAST-AF) Trial. Patients with paroxysmal or persistent AF will be randomized to ATP guide ablation or control group in a 1:1 ratio before the procedure (UNDER-ATP Trial). Excluding those with severe procedural complications or substantial bradycardia identified first after ablation for persistent AF, patients will be randomized in a 1:1 ratio to antiarrhythmic-drug (AAD) or control group after the procedure (EAST-AF Trial).

Detailed description

Atrial fibrillation (AF) is a common tachyarrhythmia causing disabling symptoms and stroke. Although catheter ablation has been developed as curative therapy for AF, it is still associated with considerably high rate of AF recurrence, approximately 30-40% in patients with paroxysmal AF and 50-80% among those with persistent AF. Because most ectopic beats triggering AF originate from myocardial sleeves in pulmonary veins (PVs), the mainstay of catheter ablation for AF is PV isolation. The major cause of early and late AF recurrence following successful PV isolation is considered to be electrical reconnection between left atrium (LA) and PVs. Therefore, it is important to establish permanent LA-PV disconnection, although high energy application is associated with increased risk of procedural complications, including cardiac tamponade, PV stenosis/occlusion and LA-esophageal fistula. Adenosine or adenosine triphosphate (ATP) has been reported to unmask dormant electrical conduction between LA and PVs after successful PV isolation. Thus, adenosine or ATP guide additional ablation until disappearance of dormant electrical conduction has been proposed as adjunctive approach to establish permanent LA-PV disconnection and thereby decrease AF recurrence post ablation. However, only several small observational studies showed the efficacy of adenosine or ATP guide ablation, and this approach is not recognized as standard therapy. On the other hand, sizable portion of AF recurrence early after ablation is considered to be due to irritability in LA from the ablation. Thus, short term use of antiarrhythmic drugs (AADs) after ablation has been proposed as adjunctive approach not only to prevent early AF recurrence, but also to improve long-term outcome by promoting reverse remodeling of LA through maintenance of sinus rhythm during the first 2-3 months period after ablation. The 5A study, a recently reported single-center study, randomized 110 patients with paroxysmal AF to AAD or control group. In the AAD group, AAD was used for 6 weeks after ablation. Although AAD significantly reduced early AF recurrence during the first 6 weeks, discontinuation of the drug resulted in similar AF-free rates at 6 months. Considering the small number of patients enrolled in the 5A study, the results were not conclusive, lacking statistical power to determine the effect of short-tem use of AAD following successful ablation for AF on long-term clinical outcome. Also, this approach is expected to be more effective in patients with persistent AF rather than those with 'self-terminating' paroxysmal AF. In addition, 6 weeks may have been too short to promote reverse remodeling of LA. Accordingly, we planned a 2x2 factorial randomized controlled trial (KPAF trial), evaluating the efficacy of ATP guide additional ablation and 90 days use of AADs post ablation. Approximately 2,000 patients with paroxysmal or persistent AF will be randomized to ATP guide ablation or control group in a 1:1 ratio before the procedure (UNDER-ATP trial). Excluding those with severe procedural complications or those with substantial bradycardia identified first after ablation for persistent AF, patients will be randomized in a 1:1 ratio to AAD or control group after the procedure (EAST-AF trial). Approximately 5% of the patients are expected to be excluded from the EAST-AF trial after ablation, but those patients will not be excluded from the UNDER-ATP trial, whose data will be analyzed by intention-to-treat manner. The follow-up duration is one year.

Conditions

Interventions

TypeNameDescription
PROCEDUREATP guide additional ablation.Following successful PV isolation, intravenous ATP of 0.4 mg/body-weight-kg is rapidly is injected, and dormant LA-PV conduction is evaluated. If dormant LA-PV conduction is unmasked, then additional radiofrequency energy applications are delivered to the conduction gaps until disappearance of dormant LA-PV conduction.
DRUGAntiarrhythmic drug (AAD)Following successful ablation, AAD (Vaughan Williams class I or III) is administered for 90 days. The recommended drugs are flecainide, propafenone, sotalol and amiodarone, but the final choice of drug and dosage is left to the discretion of the attending physician.
PROCEDUREATP guide additional ablation.Following successful PV isolation, intravenous ATP of 0.4 mg/body-weight-kg is rapidly is injected, and dormant LA-PV conduction is evaluated. If dormant LA-PV conduction is unmasked, then additional radiofrequency energy applications are delivered to the conduction gaps until disappearance of dormant LA-PV conduction.
DRUGControlFollowing successful ablation, AAD (Vaughan Williams class I or III) including flecainide, propafenone, sotalol and amiodarone is not used during the period of 0 - 90 days.
PROCEDUREControlFollowing successful PV isolation, intravenous ATP is not administered.
DRUGAntiarrhythmic drug (AAD)Following successful ablation, AAD (Vaughan Williams class I or III) is administered for 90 days. The recommended drugs are flecainide, propafenone, sotalol and amiodarone, but the final choice of drug and dosage is left to the discretion of the attending physician.
PROCEDUREControlFollowing successful PV isolation, intravenous ATP is not administered.
DRUGControlFollowing successful ablation, AAD (Vaughan Williams class I or III) including flecainide, propafenone, sotalol and amiodarone is not used during the period of 0 - 90 days.

Timeline

Start date
2011-11-01
Primary completion
2017-07-01
Completion
2017-07-01
First posted
2011-11-23
Last updated
2017-08-18

Locations

1 site across 1 country: Japan

Source: ClinicalTrials.gov record NCT01477983. Inclusion in this directory is not an endorsement.