Clinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysis

Abstract Background Valve replacement surgery is the definitive management strategy for patients with severe valvular disease. However, valvular conduits currently in clinical use are associated with significant limitations. Tissue-engineered (decellularized) heart valves are alternative prostheses...

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Main Authors: Steve W. F. R. Waqanivavalagi, Sameer Bhat, Marcus B. Ground, Paget F. Milsom, Jillian Cornish
Format: Article
Language:English
Published: BMC 2020-09-01
Series:Journal of Cardiothoracic Surgery
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13019-020-01292-y
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spelling doaj-9960deaa2e4e48cdb46a9ab2edd586d92020-11-25T03:42:22ZengBMCJournal of Cardiothoracic Surgery1749-80902020-09-0115111310.1186/s13019-020-01292-yClinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysisSteve W. F. R. Waqanivavalagi0Sameer Bhat1Marcus B. Ground2Paget F. Milsom3Jillian Cornish4Department of Medicine, Faculty of Medical and Health Sciences, University of AucklandDepartment of Medicine, Faculty of Medical and Health Sciences, University of AucklandDepartment of Medicine, Faculty of Medical and Health Sciences, University of AucklandGreen Lane Cardiothoracic Surgical Unit, Auckland City Hospital, Auckland District Health BoardDepartment of Medicine, Faculty of Medical and Health Sciences, University of AucklandAbstract Background Valve replacement surgery is the definitive management strategy for patients with severe valvular disease. However, valvular conduits currently in clinical use are associated with significant limitations. Tissue-engineered (decellularized) heart valves are alternative prostheses that have demonstrated promising early results. The purpose of this systematic review and meta-analysis is to perform robust evaluation of the clinical performance of decellularized heart valves implanted in either outflow tract position, in comparison with standard tissue conduits. Methods Systematic searches were conducted in the PubMed, Scopus, and Web of Science databases for articles in which outcomes between decellularized heart valves surgically implanted within either outflow tract position of human subjects and standard tissue conduits were compared. Primary endpoints included postoperative mortality and reoperation rates. Meta-analysis was performed using a random-effects model via the Mantel-Haenszel method. Results Seventeen articles were identified, of which 16 were included in the meta-analysis. In total, 1418 patients underwent outflow tract reconstructions with decellularized heart valves and 2725 patients received standard tissue conduits. Decellularized heart valves were produced from human pulmonary valves and implanted within the right ventricular outflow tract in all cases. Lower postoperative mortality (4.7% vs. 6.1%; RR 0.94, 95% CI: 0.60–1.47; P = 0.77) and reoperation rates (4.8% vs. 7.4%; RR 0.55, 95% CI: 0.36–0.84; P = 0.0057) were observed in patients with decellularized heart valves, although only reoperation rates were statistically significant. There was no statistically significant heterogeneity between the analyzed articles (I 2 = 31%, P = 0.13 and I 2 = 33%, P = 0.10 respectively). Conclusions Decellularized heart valves implanted within the right ventricular outflow tract have demonstrated significantly lower reoperation rates when compared to standard tissue conduits. However, in order to allow for more accurate conclusions about the clinical performance of decellularized heart valves to be made, there need to be more high-quality studies with greater consistency in the reporting of clinical outcomes.http://link.springer.com/article/10.1186/s13019-020-01292-yDecellularizationTissue engineeringValve replacement
collection DOAJ
language English
format Article
sources DOAJ
author Steve W. F. R. Waqanivavalagi
Sameer Bhat
Marcus B. Ground
Paget F. Milsom
Jillian Cornish
spellingShingle Steve W. F. R. Waqanivavalagi
Sameer Bhat
Marcus B. Ground
Paget F. Milsom
Jillian Cornish
Clinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysis
Journal of Cardiothoracic Surgery
Decellularization
Tissue engineering
Valve replacement
author_facet Steve W. F. R. Waqanivavalagi
Sameer Bhat
Marcus B. Ground
Paget F. Milsom
Jillian Cornish
author_sort Steve W. F. R. Waqanivavalagi
title Clinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysis
title_short Clinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysis
title_full Clinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysis
title_fullStr Clinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysis
title_full_unstemmed Clinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysis
title_sort clinical performance of decellularized heart valves versus standard tissue conduits: a systematic review and meta-analysis
publisher BMC
series Journal of Cardiothoracic Surgery
issn 1749-8090
publishDate 2020-09-01
description Abstract Background Valve replacement surgery is the definitive management strategy for patients with severe valvular disease. However, valvular conduits currently in clinical use are associated with significant limitations. Tissue-engineered (decellularized) heart valves are alternative prostheses that have demonstrated promising early results. The purpose of this systematic review and meta-analysis is to perform robust evaluation of the clinical performance of decellularized heart valves implanted in either outflow tract position, in comparison with standard tissue conduits. Methods Systematic searches were conducted in the PubMed, Scopus, and Web of Science databases for articles in which outcomes between decellularized heart valves surgically implanted within either outflow tract position of human subjects and standard tissue conduits were compared. Primary endpoints included postoperative mortality and reoperation rates. Meta-analysis was performed using a random-effects model via the Mantel-Haenszel method. Results Seventeen articles were identified, of which 16 were included in the meta-analysis. In total, 1418 patients underwent outflow tract reconstructions with decellularized heart valves and 2725 patients received standard tissue conduits. Decellularized heart valves were produced from human pulmonary valves and implanted within the right ventricular outflow tract in all cases. Lower postoperative mortality (4.7% vs. 6.1%; RR 0.94, 95% CI: 0.60–1.47; P = 0.77) and reoperation rates (4.8% vs. 7.4%; RR 0.55, 95% CI: 0.36–0.84; P = 0.0057) were observed in patients with decellularized heart valves, although only reoperation rates were statistically significant. There was no statistically significant heterogeneity between the analyzed articles (I 2 = 31%, P = 0.13 and I 2 = 33%, P = 0.10 respectively). Conclusions Decellularized heart valves implanted within the right ventricular outflow tract have demonstrated significantly lower reoperation rates when compared to standard tissue conduits. However, in order to allow for more accurate conclusions about the clinical performance of decellularized heart valves to be made, there need to be more high-quality studies with greater consistency in the reporting of clinical outcomes.
topic Decellularization
Tissue engineering
Valve replacement
url http://link.springer.com/article/10.1186/s13019-020-01292-y
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