Standalone Thoracoscopic Left Atrial Appendage Closure Versus Medical Therapy in Atrial Fibrillation
Ориентир для пациента и семьи
Простыми словами
Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.
- Что изучают
- В протоколе указаны: Video-assisted thoracoscopic closure of the left atrial appendage using a closure device and discontinuation of treatment if the patient is treated with OAC.
- Кому может быть актуально
- Состояния в реестре: ATRIAL APPENDAGE CLOSURE for ATRIAL FIBRILLATION, Oral Anticoagulation, Thoracotomy. Базовые параметры: от 18 лет · Все.
- Что важно проверить
- Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
- Где проводится
- Швеция
- Следующий шаг
- Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →
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Обзор
Surgical left atrial appendage closure (LAAC) has been associated with reduced rates of stroke in patients with atrial fibrillation (AF) who have undergone cardiac surgery. In recent time, procedures with catheter-based devices for LAAC have failed to achieve results that would make them considered a safe alternative to oral anticoagulation. Several concerns regarding catheter-based devices have been raised due to their contact with circulating blood, device migration and periprocedural complications. LAAC using an externally placed clip via thoracoscopy would elude some of these concerns and may therefore be a feasible alternative to oral anticoagulation in patients with AF. This study aims to assess whether thoracoscopic left atrial appendage closure (TLAAC) is noninferior to medical treatment in patients with AF and an elevated bleeding risk using or being planned to initiate OAC and in those patients with clinical contraindications to oral anticoagulants.
Подробное описание
Atrial fibrillation (AF) is the most common sustained arrhythmia worldwide and is associated with a markedly increased risk of ischemic stroke, heart failure, cognitive decline, systemic embolism, hospitalization, and mortality. AF-related strokes are often severe, disabling, and recurrent. Based on extrapolation of published regional Swedish data, 350-400 000 individuals in Sweden have atrial fibrillation, of whom 81% are treated with OAC:s. Despite major advances in anticoagulation, AF continues to represent one of the most important cardiovascular contributors to long-term disability and healthcare expenditure.
For decades, oral anticoagulation with vitamin K antagonists represented the cornerstone of stroke prevention. The introduction of direct anticoagulant (DOAC) treatment fundamentally altered the therapeutic landscape. Trials including RE-LY, ROCKET-AF and ARISTOTLE demonstrated that DOAC therapy provides excellent protection against stroke/systemic embolism while reducing intracranial hemorrhage compared with warfarin. Consequently, DOACs became the standard of care for most patients with nonvalvular AF and are supported as first line treatment for most patients with nonvalvular AF.
However, anticoagulation is not without its downsides. Despite modern OACs, treatment poses a significant bleeding risk and a lifelong treatment burden. Clinical decision making is complicated by patient frailty, renal dysfunction, liver disease and by patients with previous history of intracranial or gastrointestinal bleeding. Furthermore, long-term adherence is imperfect in real-world practice. In above mentioned trials, the annual bleeding risk ranged from 2.1-3.6% in patients treated with OAC, corresponding to 8400-14400 Swedish patients having major bleeding events from AF-related OAC treatment each year.
Long-term anticoagulation may be associated with treatment burden, fear of bleeding, reduced treatment satisfaction, and impaired quality of life in some patients. Thus, the concept of a nonpharmacological strategy to prevent stroke remains highly attractive.
Left atrial appendage closure While initial trials showed promising results of catheter based endocardial LAAC in the Warfarin era, the CLOSURE-AF trial recently showed that that endocardial devices, including the WATCHMAN™ and the Amplatzer™ Amulet™, do not achieve results making them a feasible replacement for modern OAC therapy in AF patients with elevated bleeding risk. The limitations of endocardial LAAC have several explanations. Implantation of a foreign body within the left atrium creates a potential substrate for thrombus formation. Device-related thrombi have been associated with increased risk of ischemic stroke and remain a recognized complication of endocardial LAAC. Incomplete sealing may allow persistent blood flow into the appendage, potentially preserving thromboembolic risk. In addition, many patients require OAC or dual antiplatelet therapy during the endothelialisation period. Procedure related risks include vascular complications, procedure-related stroke, device embolization and pericardial tamponade .
The mechanistic rationale for left atrial appendage (LAA) exclusion originates from transoesophageal echocardiographic and autopsy studies demonstrating that the majority of intracardiac thrombi in nonvalvular AF arise from the LAA. The LAA is anatomically predisposed to thrombus formation because of reduced contractility, blood stasis, complex trabeculations, and impaired endothelial function during AF. This has led to the belief that mechanical elimination of the LAA may be a feasible alternative to systemic anticoagulation.
Therefore, epicardial LAAC may be a feasible option to endocardial devices in AF patients with increased bleeding risk. The LAAOS III trial demonstrated that surgical LAAC was associated with a 33% risk reduction of stroke in patients undergoing cardiac surgery, and current guidelines recommend LAAC in patients with AF undergoing cardiac procedures.
Thoracoscopic epicardial LAAC using devices including the AtriClip™ and Penditure™ may overcome several limitations of endocardial approaches. Firstly, no intracardiac foreign body is implanted, which reduces the risk of device-related thrombi. TLAAC requires no septal puncture and provides more complete anatomical exclusion of the appendage, with lower risk of residual leak. Cartledge and colleagues reported a series of 175 patients who underwent standalone TLAAC and demonstrated a 99.4% procedural success rate (defined as residual stump \<10mm) with low risk of procedural complications. One patient (0.6%) required conversion to sternotomy due to LAA bleeding. The cohort had a predicted annual stroke rate of 4.8% but no ischemic strokes were observed in study participants at a median follow up of 12.5 months, despite OACs being discontinued in 90.3% of patients at discharge.
Furthermore, evidence suggests that the AF triggers located in the LAA may contribute to maintenance of AF itself. As the epicardial devices also create an electrical isolation, epicardial exclusion may therefore provide both thromboembolic and electrophysiological benefits.
Вмешательства
- Процедура Video-assisted thoracoscopic closure of the left atrial appendage using a closure device and discontinuation of treatment if the patient is treated with OAC
Video-assisted thoracoscopic closure of the left atrial appendage using a closure device and discontinuation of treatment if the patient is treated with OAC. If indicated due to co-morbidities, patients will be prescribed platelet inhibitors instead.
Первичные конечные точки
- Number of participants strokes, major bleedings, other arterial thromboembolic events and cardiovascular or unknown death measured per 100 patient years. [Срок оценки: Mean follow up of 3 years]
Вторичные конечные точки (6)
- Analysis of risk ratio for primary endpoint [Срок оценки: Mean follow up of 3 years]
- Proportion of patients receiving OAC treatment [Срок оценки: Mean follow up of 3 years]
- Quality of life survey; 36-Item Short Form Survey Instrument (SF-36) [Срок оценки: Baseline, 2 months after inclusion and 1 and 2 years after inclusion]
- Number of patients with need for catheter ablation [Срок оценки: Mean follow up of 3 years]
- Proportion of patients with need for new class I or III antiarrhythmic drugs for AF symptom reduction [Срок оценки: Mean follow up of 3 years]
- Procedural success [Срок оценки: Day 60 postoperatively]
Критерии участия
Критерии включения
- Age ≥ 18 years and any of criteria 2-3
- AF with a CHA2DS2-VA score ≥2 and a HAS-BLED score ≥3 or other clinically significant bleeding condition and ongoing OAC treatment
- AF with a CHA2DS2-VA score ≥2 but deemed unfit for OAC by responsible physician due to clinical contraindications (e.g. amyloid angiopathy, previous intracranial haemorrhage or severe gastrointestinal bleeding).
Критерии исключения
- Clinical frailty score ≥5
- Indication for OAC other than AF
- Indication for dual antiplatelet therapy, if OAC is discontinued
- Previous open-heart surgery
- Present indication for cardiac surgery
- Present indication for ablation for atrial fibrillation
- Previous radiation therapy of the chest, due to malignancy
- Previous pericarditis or myocarditis
- Previous surgery including access to the left pleural space
- Documented FEV1<70% or other significant pulmonary disease (including but not restricted to fibrosis, pulmonary post-covid syndrome, cystic fibrosis)
- Ongoing treatment with corticosteroids or previous treatment for more than 3 consecutive months.
- Allergy to contrast media
- Patient already included in another interventional clinical trial
- Patient listed abroad, which would render them to be lost to follow-up after discharge
- Patient does not understand study information given in the local language or, for other reasons, is deemed unfit to participate according to the investigators
Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.
Здоровые добровольцы: Нет
Дизайн исследования
- Распределение
- Рандомизированное
- Модель
- Параллельные группы
- Маскирование
- Открытое
- Основная цель
- Лечение
Центры проведения
Швеция · 1 центр
- Skånes universitetssjukhus — Lund
Публикации
- Fox KAA, Virdone S, Bassand JP, Camm AJ, Goto S, Goldhaber SZ, Haas S, Kayani G, Koretsune Y, Misselwitz F, Oh S, Piccini JP, Parkhomenko A, Sawhney JPS, Stepinska J, Turpie AGG, Verheugt FWA, Kakkar AK; GARFIELD-AF investigators*. Do baseline characteristics and treatments account for geographical disparities in the outcomes of patients with newly diagnosed atrial fibrillation? The prospective GA PMID 34996784
- Romero J, Michaud GF, Avendano R, Briceno DF, Kumar S, Carlos Diaz J, Mohanty S, Trivedi C, Gianni C, Della Rocca D, Proietti R, Perrotta L, Bordignon S, Chun JKR, Schmidt B, Garcia M, Natale A, Di Biase L. Benefit of left atrial appendage electrical isolation for persistent and long-standing persistent atrial fibrillation: a systematic review and meta-analysis. Europace. 2018 Aug 1;20(8):1268-127 PMID 29342299
- Di Biase L, Burkhardt JD, Mohanty P, Sanchez J, Mohanty S, Horton R, Gallinghouse GJ, Bailey SM, Zagrodzky JD, Santangeli P, Hao S, Hongo R, Beheiry S, Themistoclakis S, Bonso A, Rossillo A, Corrado A, Raviele A, Al-Ahmad A, Wang P, Cummings JE, Schweikert RA, Pelargonio G, Dello Russo A, Casella M, Santarelli P, Lewis WR, Natale A. Left atrial appendage: an underrecognized trigger site of atrial PMID 20606120
- Cartledge R, Suwalski G, Witkowska A, Gottlieb G, Cioci A, Chidiac G, Ilsin B, Merrill B, Suwalski P. Standalone epicardial left atrial appendage exclusion for thromboembolism prevention in atrial fibrillation. Interact Cardiovasc Thorac Surg. 2022 Mar 31;34(4):548-555. doi: 10.1093/icvts/ivab334. PMID 34871377
- Blackshear JL, Odell JA. Appendage obliteration to reduce stroke in cardiac surgical patients with atrial fibrillation. Ann Thorac Surg. 1996 Feb;61(2):755-9. doi: 10.1016/0003-4975(95)00887-X. PMID 8572814
- Saw J, Holmes DR, Cavalcante JL, Freeman JV, Goldsweig AM, Kavinsky CJ, Moussa ID, Munger TM, Price MJ, Reisman M, Sherwood MW, Turi ZG, Wang DD, Whisenant BK. SCAI/HRS Expert Consensus Statement on Transcatheter Left Atrial Appendage Closure. JACC Cardiovasc Interv. 2023 Jun 12;16(11):1384-1400. doi: 10.1016/j.jcin.2023.01.011. Epub 2023 Mar 27. PMID 36990858
- Saw J. Long-Term Results With Left Atrial Appendage Closure: Watching the Watchman. J Am Coll Cardiol. 2017 Dec 19;70(24):2976-2978. doi: 10.1016/j.jacc.2017.10.056. Epub 2017 Nov 2. No abstract available. PMID 29104013
- Dukkipati SR, Kar S, Holmes DR, Doshi SK, Swarup V, Gibson DN, Maini B, Gordon NT, Main ML, Reddy VY. Device-Related Thrombus After Left Atrial Appendage Closure: Incidence, Predictors, and Outcomes. Circulation. 2018 Aug 28;138(9):874-885. doi: 10.1161/CIRCULATIONAHA.118.035090. PMID 29752398
Идентификаторы
NCT: NCT07705282 · 2026-527335-34-00