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Published on: October 17, 2013
Hemodynamic performance of stentless versus stented valves: a systematic review and meta-analysis
Darrin M Payne1, H Pavan Koka, Paul J Karanicolas
1London Health Sciences Centre, University of Western Ontario, London, Ontario, Canada. dmpayne@uwo.ca
Insights
Stentless aortic valves (AVR) show no significant hemodynamic benefit over stented valves for LV mass or mean gradients. However, stentless valves demonstrate lower peak gradients, suggesting potential advantages. Further research is needed.
Area of Science:
- Cardiovascular Surgery
- Biomaterials Science
- Medical Device Engineering
Background:
- Aortic valve replacement (AVR) frequently involves comparing stentless and stented prosthetic valves.
- Previous trials have yielded mixed results regarding the hemodynamic advantages of stentless valves.
Purpose of the Study:
- To systematically review and meta-analyze randomized trials comparing stentless versus stented valves after AVR.
- To determine if stentless valves offer improved cardiac hemodynamics compared to stented valves.
Main Methods:
- Comprehensive literature search across major databases (PubMed, EMBASE, Cochrane) and conference abstracts.
- Inclusion of randomized controlled trials in adults undergoing AVR comparing stentless and stented valves.
- Random effects modeling for quantitative synthesis of postoperative, early, and late outcomes, with heterogeneity assessment.
Main Results:
- Eight studies were included in the primary meta-analysis.
- No significant differences were found in left ventricular (LV) mass regression or mean transvalvular gradients between stentless and stented valves.
- Stentless valves demonstrated significantly lower peak transvalvular gradients.
Conclusions:
- Stentless valves do not offer a clear hemodynamic advantage in terms of LV mass or mean gradients post-AVR.
- Superiority in peak gradient reduction suggests a potential hemodynamic benefit for stentless valves.
- Additional high-quality, adequately powered randomized trials are necessary to definitively establish the hemodynamic benefits of stentless valves.
Background:
Several trials have compared stentless with stented valves following aortic valve replacement (AVR). The goal of this review was to systematically locate, critically appraise, and quantitatively combine results to determine if stentless valves improve cardiac hemodynamics.
Methods:
We performed an unrestricted search of Pubmed Medline, EMBASE, CINAHL, the Cochrane databases, and EBM reviews. Article reference lists and online abstracts from major North American conferences were also searched. We included randomized trials of adults undergoing AVR that compared stentless and stented valves. Blinded reviewers performed assessment of trials for inclusion and trial quality. Two individuals performed data extraction independently. Kappa statistics were used to assess reviewer agreement. A random effects model was employed for statistical analyses. Assessments were made for postoperative, early, and late outcomes. Heterogeneity was explored with sensitivity analyses.
Results:
Eight studies were identified for inclusion in the primary analysis, with four others included in sensitivity analyses. Baseline comparisons between groups revealed no differences. Our primary analyses revealed no differences between groups for assessments of LV mass or mean transvalvular gradients. Secondary analyses showed stentless valves to have lower peak gradients. Sensitivity analyses were supportive of our primary results. Heterogeneity was observed in some comparisons and sensitivity analyses failed to completely explain this heterogeneity.
Conclusions:
Stentless valves did not display hemodynamic benefit in terms of LV mass regression or postoperative mean gradients, but do appear to display superior hemodynamics in terms of peak gradients. Further well-designed and adequately powered trials are required to fully address this question.
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