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August 28, 2020Current Heart Failure Reports15 citationsOpen Access

The Emerging Role of Cardiac Conduction System Pacing as a Treatment for Heart Failure

NANadine AliMSMathew Shun ShinZWZachary I. Whinnett

Key Result

Cardiac conduction system pacing can deliver more effective ventricular resynchronization than biventricular pacing, potentially offering greater improvements in cardiac function for heart failure.

Structured PICO

Does cardiac conduction system pacing improve ventricular resynchronization and cardiac function in patients with heart failure and conduction abnormalities compared to biventricular pacing?

P
Population
Patients with heart failure and conduction abnormalities (such as left bundle branch block, PR prolongation, or right bundle branch block)
I
Intervention
Cardiac conduction system pacing (His bundle pacing and left conduction system pacing)
C
Comparator
Biventricular pacing (BVP)
O
Outcome
Ventricular resynchronization and improvement in cardiac function

Cardiac conduction system pacing, including His bundle and left bundle branch pacing, represents a promising physiological alternative to biventricular pacing for cardiac resynchronization therapy in heart failure.

Limitations

  • Lack of adequately powered randomized controlled trials comparing conduction system pacing to biventricular pacing
  • Technical challenges in implantation requiring more advanced tools
  • Potential need for lead reinterventions due to rises in capture threshold
  • Further data is required from adequately powered randomized trials to assess these promising pacing techniques
  • Current evidence is largely based on observational studies and small randomized trials with significant crossover

Abstract

PURPOSE OF REVIEW: The aim of cardiac resynchronization therapy (CRT) is to improve cardiac function by delivering more physiological cardiac activation to patients with heart failure and conduction abnormalities. Biventricular pacing (BVP) is the most commonly used method for delivering CRT; it has been shown in large randomized controlled trials to significantly improve morbidity and mortality in patients with heart failure. However, BVP delivers only modest reductions in ventricular activation time and is only beneficial in patients with prolonged QRS duration. In this review, we explore conduction system pacing as a method for delivering more effective ventricular resynchronization and to extend pacing therapy for heart failure to patients without left bundle branch block (LBBB). RECENT FINDINGS: The aim of conduction system pacing is to provide physiological ventricular activation by directly stimulating the conduction system. Current modalities include His bundle and left conduction system pacing. His bundle pacing is the most established method; it has the potential to correct left bundle branch block and deliver more effective ventricular resynchronization than BVP. This translates into greater acute haemodynamic improvements and observational data suggests that His-CRT results in improvements in cardiac function and symptoms. AV-optimized His bundle pacing is being investigated in patients with heart failure and long PR interval without LBBB, to see if this improves exercise capacity. More recently, a technique for pacing the left bundle branch has been developed. Early studies show potential advantages including low and stable capture thresholds. Conduction system pacing can deliver more effective ventricular resynchronization than BVP, which has the potential to deliver greater improvements in cardiac function. It may also provide the opportunity to extend pacing therapy for heart failure to patients who do not have LBBB. Further data is required from randomized trials to assess these promising pacing techniques.

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Cite This Study

Ali et al. (2020) conducted a review in Heart failure and conduction abnormalities. Cardiac conduction system pacing (His bundle and left bundle branch pacing) vs. Biventricular pacing was evaluated. Cardiac conduction system pacing can deliver more effective ventricular resynchronization than biventricular pacing, potentially offering greater improvements in cardiac function for heart failure.

synapsesocial.com/papers/6a1fdb753f3a87967f2e393ahttps://doi.org/10.1007/s11897-020-00474-y
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