| Literature DB >> 32523439 |
Cristina Balla1, Riccardo Cappato2.
Abstract
Atrial fibrillation (AF) and heart failure (HF) commonly coexist in the same patient and either condition predisposes to the other. Several mechanisms promote the pathophysiological relationship between AF and HF, reducing quality of life, increasing the risk of stroke, and worsening HF progression. Although restoration and maintenance of sinus rhythm would be ideal for those patients, several trials comparing rhythm and rate control failed to show a benefit of rhythm control strategy, achieved with pharmacological therapy, in terms of hospitalization for HF or death. Catheter ablation is a well-established option for symptomatic AF patients, resistant to drug therapy, with normal cardiac function. Several recent studies have shown an improvement in clinical outcomes after AF ablation in HF patients highlighting the emerging role of the invasive approach in this subset of patients. However, several concerns regarding patients' selection and standardization of the procedure still remain to be addressed. Published on behalf of the European Society of Cardiology.Entities:
Keywords: Ablation therapy; Atrial fibrillation; Heart failure; Risk of stroke
Year: 2020 PMID: 32523439 PMCID: PMC7270911 DOI: 10.1093/eurheartj/suaa059
Source DB: PubMed Journal: Eur Heart J Suppl ISSN: 1520-765X Impact factor: 1.803
Principal studies on AF ablation in HF published within the last 10 years
| Study | Patients | Aetiology and features of HF | AF pattern | Ablation strategy | Medical strategy | Ablation success rate | Results | Median follow-up (months) |
|---|---|---|---|---|---|---|---|---|
| PABA-CHF | 81 | 73% ischaemic CMEF < 40%NYHA II–III | 49% paroxysmal51% persistent | PVI ± additional linear lesions | AV node ablation + CRT | 88% | ↑ EF, 6MWT, and QoL in ablation arm | 6 |
| MacDonald | 41 | 50% ischaemic CMEF < 35%NYHA II–IV | 100% persistent | PVI ± additional linear lesions | Medical rate control | 50% | No differences in EF, 6MWT, and QoL in ablation arm | 6 |
| ARC-HF | 52 | 33% ischaemic CMEF < 35% | 100% persistent | Step wise: PVI, linear ablation at roof and mitral isthmus, CFE ablation | Medical rate control | 88% | ↑ Exercise performance and BNP in ablation arm | 12 |
| CAMTAF | 50 | 26% ischaemic CMEF < 50% | 100% persistent | PVI ± linear lesions ± CFE ablation | Medical rate control | 73% | ↑ EF, exercise performance, and QoL in ablation arm | 12 |
| AATAC | 203 | 62% ischaemic CMEF < 40%ICD or CRTD | 100% persistent | PVI ± linear lesions ± CFE ablation | Amiodarone | 70% | ↓ AF recurrences↑ Mortality and unplanned hospitalization in ablation arm | 24 |
| CAMERA-MRI | 68 | 100% idiopathic CMEF < 45% | 28% paroxysmal72% persistent | PVI ± additional linear lesions | Medical rate control | 75% | ↑ EF, in ablation arm, greater in LGE negative | 6 |
| CASTEL-AF | 363 | 46% ischaemic CMEF < 35%NYHA II–IVICD or CRT | 30% paroxysmal 70% persistent | PVI ± additional linear lesions | Medical rate control | 63.1% | ↑ Mortality and HF hospitalization in ablation arm | 37 |
6MWT, 6-min walking test; BNP, B-type natriuretic peptide; CFE, complex fractionated electrograms; CM, cardiomyopathy; CRT, cardiac resynchronization therapy; EF, ejection fraction; ICD, implantable cardioverter-defibrillator; LGE, late gadolinium enhancement; PVI, pulmonary vein isolation; QoL, quality of life.