Key result
Absorb bioresorbable vascular scaffolds were associated with a higher risk of definite/probable device thrombosis compared with everolimus-eluting stents (OR 2.93; 95% CI 1.37-6.26; P=0.01).
Why the study?
Does bioresorbable vascular scaffold increase the risk of device thrombosis and target lesion failure compared to everolimus-eluting stents in patients undergoing percutaneous coronary interventions?
Meta-Analysis (n=1,730)
Does bioresorbable vascular scaffold increase the risk of device thrombosis and target lesion failure compared to everolimus-eluting stents in patients undergoing percutaneous coronary interventions?
Odds Ratio: 2.93 (95% CI 1.37–6.26)
p-value: p=0.01
Compared with everolimus-eluting stents, the use of Absorb bioresorbable vascular scaffolds is associated with a significantly higher rate of device thrombosis, particularly very late device thrombosis occurring after the cessation of dual antiplatelet therapy.
Warrants strict caution against routine Absorb scaffold use; challenges early enthusiasm for bioresorbable.
AIMS: To compare the long-term safety and efficacy of bioresorbable vascular scaffold (BVS) with everolimus-eluting stent (EES) after percutaneous coronary interventions. METHODS AND RESULTS: A systematic review and meta-analysis of randomized clinical trials comparing clinical outcomes of patients treated with BVS and EES with at least 24 months follow-up was performed. Adjusted random-effect model by the Knapp-Hartung method was used to compute odds ratios (OR) and 95% confidence intervals (CI). The primary safety outcome of interest was the risk of definite/probable device thrombosis (DT). The primary efficacy outcome of interest was the risk of target lesion failure (TLF). Five randomized clinical trials (n = 1730) were included. Patients treated with Absorb BVS had a higher risk of definite/probable DT compared with patients treated with EES (OR 2.93, 95%CI 1.37-6.26, P = 0.01). Very late DT (VLDT) occurred in 13 patients [12/996 (1.4%, 95%CI: 0.08-2.5) Absorb BVS vs. 1/701 (0.5%, 95%CI: 0.2-1.6) EES; OR 3.04; 95%CI 1.2-7.68, P = 0.03], 92% of the VLDT in the BVS group occurred in the absence of dual antiplatelet therapy (DAPT). Patients treated with Absorb BVS had a trend towards higher risk of TLF (OR 1.48, 95%CI 0.90-2.42, P = 0.09), driven by a higher risk of target vessel myocardial infarction and ischaemia-driven target lesion revascularization. No difference was found in the risk of cardiac death. CONCLUSION: Compared with EES, the use of Absorb BVS was associated with a higher rate of DT and a trend towards higher risk of TLF. VLDT occurred in 1.4% of the patients, the majority of these events occurred in the absence of DAPT.
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Collet et al. (2017) conducted a meta-analysis in percutaneous coronary interventions (n=1,730). Absorb bioresorbable vascular scaffold (BVS) vs. everolimus-eluting stent (EES) was evaluated on definite/probable device thrombosis (DT) (OR 2.93, 95% CI 1.37-6.26, p=0.01). Absorb bioresorbable vascular scaffolds were associated with a higher risk of definite/probable device thrombosis compared with everolimus-eluting stents (OR 2.93; 95% CI 1.37-6.26; P=0.01).
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