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Design of a Biocompatible Drug-Eluting Tracheal Stent in Mice with Laryngotracheal Stenosis
Published on: January 21, 2020
Clinical evidence on polymer-based sirolimus and paclitaxel eluting stents
R Iijima1, J Mehilli, A Schömig
1Deutsches Herzzentrum, Technische Universität, Lazarettstrasse 36, 80636 Munich, Germany.
Abstract:
Percutaneous coronary interventions with the use of stents have become the mainstay treatment of patients with various clinical manifestations of coronary artery disease. Despite their remarkable success, restenosis has remained the major drawback and its prevention has absorbed intensive experimental and clinical research work. After the failure of multiple efforts with systemic use of various drugs, local application of antiproliferative and anti-inflammatory agents released by specially designed coated stents led to considerable suppression of neointima and opened new prospects in the prevention of restenosis. An increasing body of evidence is showing the advantages provided by drug-eluting stents (DES) in almost all subsets of patients with coronary artery disease with a drastic decrease in the need for reintervention. To date, the most commonly used and the only US Food and Drug Administration (FDA) approved DES are a sirolimus-eluting stent (Cypher) and a paclitaxel-eluting stent (Taxus), both of which are polymer-based DES and will constitute the focus of this review. Recent data demonstrate that DES are not equal in their safety and efficacy. A less optimistic aspect of DES technology are the reiterated concerns about a more prolonged risk of stent thrombosis. Although all agree on the need of a longer duration of dual antiplatelet therapy in patients treated with DES, its optimal length is still to be defined. Because polymers used for stent coating are often seen at the origin of the compromised long-term safety of DES, new technologies able to avoid permanent polymers may offer a valuable alternative.
Insights
Drug-eluting stents (DES) significantly reduce restenosis and reintervention in coronary artery disease. However, concerns remain regarding stent thrombosis and the optimal duration of dual antiplatelet therapy, prompting research into polymer-free DES alternatives.
Area of Science:
- Cardiovascular Medicine
- Biomaterials Science
- Interventional Cardiology
Background:
- Percutaneous coronary interventions (PCI) using stents are standard for coronary artery disease.
- Restenosis remains a significant challenge despite stent use.
- Systemic drug therapies have largely failed to prevent restenosis.
Purpose of the Study:
- To review the efficacy and safety of drug-eluting stents (DES) in preventing restenosis.
- To focus on polymer-based sirolimus-eluting (Cypher) and paclitaxel-eluting (Taxus) stents.
- To discuss concerns regarding DES, including stent thrombosis and polymer-related safety issues.
Main Methods:
- Review of existing clinical and experimental data on drug-eluting stents.
- Analysis of evidence regarding the effectiveness of antiproliferative and anti-inflammatory agents delivered via coated stents.
- Examination of safety profiles, particularly stent thrombosis and the need for dual antiplatelet therapy.
Main Results:
- DES demonstrate significant reduction in neointima formation and reintervention rates across patient subsets.
- Sirolimus-eluting and paclitaxel-eluting stents are the primary FDA-approved polymer-based DES.
- Concerns persist about increased long-term risk of stent thrombosis with current DES technology.
Conclusions:
- Drug-eluting stents have revolutionized PCI by drastically reducing restenosis and reintervention needs.
- Optimal duration of dual antiplatelet therapy for DES patients requires further definition.
- Development of polymer-free DES technologies may address long-term safety concerns associated with permanent polymers.
