3.8 Review

Advantages and disadvantages of biodegradable platforms in drug eluting stents

Journal

WORLD JOURNAL OF CARDIOLOGY
Volume 3, Issue 3, Pages 84-92

Publisher

BAISHIDENG PUBLISHING GROUP INC
DOI: 10.4330/wjc.v3.i3.84

Keywords

Polymers; Drug eluting stents; Biodegradable polymers; Stents; Thrombosis; Restenosis

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Coronary angioplasty with drug-eluting stent (DES) implantation is currently the most common stent procedure worldwide. Since the introduction of DES, coronary restenosis as well as the incidence of target vessel and target lesion revascularization have been significantly reduced. However, the incidence of very late stent thrombosis beyond the first year after stent deployment has more commonly been linked to DES than to baremetal stent (BMS) implantation. Several factors have been associated with very late stent thrombosis after DES implantation, such as delayed healing, inflammation, stent mal-apposition and endothelial dysfunction. Some of these adverse events were associated with the presence of durable polymers, which were essential to allow the elution of the immunosuppressive drug in the first DES designs. The introduction of erodable polymers in DES technology has provided the potential to complete the degradation of the polymer simultaneously or immediately after the release of the immunosuppressive drug, after which a BMS remains in place. Several DES designs with biodegradable (BIO) polymers have been introduced in preclinical and clinical studies, including randomized trials. In this review, we analyze the clinical results from 6 observational and randomized studies with BIO polymers and discuss advantages and disadvantages of this new technology. (C) 2011 Baishideng. All rights reserved.

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