'Super Rehab': can we achieve coronary artery disease regression? A feasibility study protocol

John Graby1,2, Ali Khavandi1, Fiona Gillison2

  • 1Cardiology, Royal United Hospitals Bath NHS Foundation Trust, Bath, UK.

BMJ Open
|December 12, 2023
PubMed

Insights

This study tests the feasibility of a Super Rehab (SR) lifestyle intervention for coronary artery disease (CAD) patients in primary prevention. SR may improve symptoms and outcomes, potentially enabling CAD regression.

Area of Science:

  • Cardiology
  • Preventive Medicine
  • Clinical Trials

Background:

  • Coronary artery disease (CAD) patients face ongoing major adverse cardiovascular events (MACE) risk despite current treatments, especially those with metabolic syndrome (MetS).
  • Cardiac rehabilitation is standard post-revascularisation but lacks evidence for primary prevention of CAD.
  • Intensive lifestyle interventions may offer a novel approach to improve CAD outcomes and potentially reverse disease progression.

Purpose of the Study:

  • To assess the feasibility of a multicentre randomized controlled trial (RCT) for an intensive lifestyle intervention (Super Rehab, SR) in primary prevention for CAD patients.
  • To evaluate the potential of SR to improve symptoms, clinical outcomes, and enable CAD regression.

Main Methods:

  • A multicentre randomized controlled feasibility study comparing SR to usual care in 50 CAD patients (aged 18-75) across two centres.
  • Feasibility assessed via recruitment, retention, and adherence rates. Qualitative interviews explored participant and practitioner experiences.
  • Serial CT coronary angiography will assess changes in CAD, informing future RCT design.

Main Results:

  • This section is not available in the provided abstract.
  • This section is not available in the provided abstract.
  • This section is not available in the provided abstract.

Conclusions:

  • The feasibility of delivering a multicentre RCT for the Super Rehab intervention needs further investigation.
  • Findings will guide the design and power calculations for a future large-scale RCT evaluating SR's efficacy in primary prevention for CAD.
Abstract

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