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Headline
Exercise-based cardiac rehabilitation improved exercise capacity and health-related quality of life in people with heart failure regardless of severity, age and gender, but had no effect on mortality or hospitalisation.
Abstract
Background:
Current national and international guidelines on the management of heart failure (HF) recommend exercise-based cardiac rehabilitation (ExCR), but do not differentiate this recommendation according to patient subgroups.
Objectives:
(1) To obtain definitive estimates of the impact of ExCR interventions compared with no exercise intervention (control) on mortality, hospitalisation, exercise capacity and health-related quality of life (HRQoL) in HF patients; (2) to determine the differential (subgroup) effects of ExCR in HF patients according to their age, sex, left ventricular ejection fraction, HF aetiology, New York Heart Association class and baseline exercise capacity; and (3) to assess whether or not the change in exercise capacity mediates for the impact of the ExCR on final outcomes (mortality, hospitalisation and HRQoL), and determine if this is an acceptable surrogate end point.
Design:
This was an individual participant data (IPD) meta-analysis.
Setting:
An international literature review.
Participants:
HF patients in randomised controlled trials (RCTs) of ExCR.
Interventions:
ExCR for at least 3 weeks compared with a no-exercise control, with 6 months’ follow-up.
Main outcome measures:
All-cause and HF-specific mortality, all-cause and HF-specific hospitalisation, exercise capacity and HRQoL.
Data sources:
IPD from eligible RCTs.
Review methods:
RCTs from the Exercise Training Meta-Analysis of Trials for Chronic Heart Failure (ExTraMATCH/ExTraMATCH II) IPD meta-analysis and a 2014 Cochrane systematic review of ExCR (Taylor RS, Sagar VA, Davies EJ, Briscoe S, Coats AJ, Dalal H, et al. Exercise-based rehabilitation for heart failure. Cochrane Database Syst Rev 2014;4:CD003331).
Results:
Out of the 23 eligible RCTs (4398 patients), 19 RCTs (3990 patients) contributed data to this IPD meta-analysis. There was a wide variation in exercise programme prescriptions across included studies. Compared with control, there was no statistically significant difference in pooled time-to-event estimates in favour of ExCR, although confidence intervals (CIs) were wide: all-cause mortality had a hazard ratio (HR) of 0.83 (95% CI 0.67 to 1.04); HF-related mortality had a HR of 0.84 (95% CI 0.49 to 1.46); all-cause hospitalisation had a HR of 0.90 (95% CI 0.76 to 1.06); and HF-related hospitalisation had a HR of 0.98 (95% CI 0.72 to 1.35). There was a statistically significant difference in favour of ExCR for exercise capacity and HRQoL. Compared with the control, improvements were seen in the 6-minute walk test (6MWT) (mean 21.0 m, 95% CI 1.57 to 40.4 m) and Minnesota Living with Heart Failure Questionnaire score (mean –5.94, 95% CI –1.0 to –10.9; lower scores indicate improved HRQoL) at 12 months’ follow-up. No strong evidence for differential intervention effects across patient characteristics was found for any outcomes. Moderate to good levels of correlation (R2trial > 50% and p > 0.50) between peak oxygen uptake (VO2peak) or the 6MWT with mortality and HRQoL were seen. The estimated surrogate threshold effect was an increase of 1.6 to 4.6 ml/kg/minute for VO2peak.
Limitations:
There was a lack of consistency in how included RCTs defined and collected the outcomes: it was not possible to obtain IPD from all includable trials for all outcomes and patient-level data on exercise adherence was not sought.
Conclusions:
In comparison with the no-exercise control, participation in ExCR improved the exercise and HRQoL in HF patients, but appeared to have no effect on their mortality or hospitalisation. No strong evidence was found of differential intervention effects of ExCR across patient characteristics. VO2peak and 6MWT may be suitable surrogate end points for the treatment effect of ExCR on mortality and HRQoL in HF. Future studies should aim to achieve a consensus on the definition of outcomes and promote reporting of a core set of HF data. The research team also seeks to extend current policies to encourage study authors to allow access to RCT data for the purpose of meta-analysis.
Study registration:
This study is registered as PROSPERO CRD42014007170.
Funding:
The National Institute for Health Research Health Technology Assessment programme.
Contents
- Plain English summary
- Scientific summary
- Chapter 1. Background
- Chapter 2. Aims and objectives
- Chapter 3. Methods
- Chapter 4. Characteristics and quality of included studies
- Chapter 5. Impact of exercise-based cardiac rehabilitation on mortality and hospitalisation
- Chapter 6. Impact of exercise-based cardiac rehabilitation on health-related quality of life and exercise capacity
- Chapter 7. Results from the surrogate analyses
- Chapter 8. Discussion
- Acknowledgements
- References
- Appendix 1. Project management committees
- Appendix 2. Example database search strategy from the Cochrane 2014 review
- Appendix 3. Identified randomised controlled trials meeting inclusion criteria
- Appendix 4. ExTraMATCH II core data fields
- Appendix 5. Prediction of VO2peak in heart failure from submaximal exercise tests
- List of abbreviations
About the Series
Article history
The research reported in this issue of the journal was funded by the HTA programme as project number 15/80/30. The contractual start date was in November 2016. The draft report began editorial review in July 2018 and was accepted for publication in February 2019. The authors have been wholly responsible for all data collection, analysis and interpretation, and for writing up their work. The HTA editors and publisher have tried to ensure the accuracy of the authors’ report and would like to thank the reviewers for their constructive comments on the draft document. However, they do not accept liability for damages or losses arising from material published in this report.
Declared competing interests of authors
Rod S Taylor is currently co-chief investigator on a National Institute for Health Research (NIHR)-funded programme grant designing and evaluating the clinical effectiveness and cost-effectiveness of a home-based cardiac rehabilitation intervention for patients who have experienced heart failure (RP-PG-1210-12004). He is also a member of the NIHR Priority Research Advisory Methodology Group (August 2015–present). Previous roles include the NIHR South West Research for Patient Benefit Committee South West (2010–14); core group of methodological experts for the NIHR Programme Grants for Applied Research programme (2013–October 2017); NIHR Health Technology Assessment (HTA) Themed Call Board (2012–14); NIHR HTA General Board (2014–June 2017); and chairperson of the NIHR Health Services and Delivery Research Researcher-led Panel (March 2014–February 2018).
Last reviewed: July 2018; Accepted: February 2019.
- NLM CatalogRelated NLM Catalog Entries
- Impact of Exercise Rehabilitation on Exercise Capacity and Quality-of-Life in Heart Failure: Individual Participant Meta-Analysis.[J Am Coll Cardiol. 2019]Impact of Exercise Rehabilitation on Exercise Capacity and Quality-of-Life in Heart Failure: Individual Participant Meta-Analysis.Taylor RS, Walker S, Smart NA, Piepoli MF, Warren FC, Ciani O, Whellan D, O'Connor C, Keteyian SJ, Coats A, et al. J Am Coll Cardiol. 2019 Apr 2; 73(12):1430-1443.
- Review Impact of exercise-based cardiac rehabilitation in patients with heart failure (ExTraMATCH II) on mortality and hospitalisation: an individual patient data meta-analysis of randomised trials.[Eur J Heart Fail. 2018]Review Impact of exercise-based cardiac rehabilitation in patients with heart failure (ExTraMATCH II) on mortality and hospitalisation: an individual patient data meta-analysis of randomised trials.Taylor RS, Walker S, Smart NA, Piepoli MF, Warren FC, Ciani O, O'Connor C, Whellan D, Keteyian SJ, Coats A, et al. Eur J Heart Fail. 2018 Dec; 20(12):1735-1743. Epub 2018 Sep 26.
- Exercise-based cardiac rehabilitation for adults with heart failure.[Cochrane Database Syst Rev. 2019]Exercise-based cardiac rehabilitation for adults with heart failure.Long L, Mordi IR, Bridges C, Sagar VA, Davies EJ, Coats AJ, Dalal H, Rees K, Singh SJ, Taylor RS. Cochrane Database Syst Rev. 2019 Jan 29; 1(1):CD003331. Epub 2019 Jan 29.
- Exercise-based cardiac rehabilitation for adults with heart failure.[Cochrane Database Syst Rev. 2024]Exercise-based cardiac rehabilitation for adults with heart failure.Molloy C, Long L, Mordi IR, Bridges C, Sagar VA, Davies EJ, Coats AJ, Dalal H, Rees K, Singh SJ, et al. Cochrane Database Syst Rev. 2024 Mar 7; 3(3):CD003331. Epub 2024 Mar 7.
- Review Exercise-based rehabilitation for heart failure.[Cochrane Database Syst Rev. 2014]Review Exercise-based rehabilitation for heart failure.Taylor RS, Sagar VA, Davies EJ, Briscoe S, Coats AJ, Dalal H, Lough F, Rees K, Singh S. Cochrane Database Syst Rev. 2014 Apr 27; 2014(4):CD003331. Epub 2014 Apr 27.
- Exercise-based cardiac rehabilitation for chronic heart failure: the EXTRAMATCH ...Exercise-based cardiac rehabilitation for chronic heart failure: the EXTRAMATCH II individual participant data meta-analysis
- human_RLT_region_244human_RLT_region_244biosample
- SRX21637328 (1)SRA
- Aims and objectives - Exercise-based cardiac rehabilitation for chronic heart fa...Aims and objectives - Exercise-based cardiac rehabilitation for chronic heart failure: the EXTRAMATCH II individual participant data meta-analysis
- Discussion - Exercise-based cardiac rehabilitation for chronic heart failure: th...Discussion - Exercise-based cardiac rehabilitation for chronic heart failure: the EXTRAMATCH II individual participant data meta-analysis
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