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Intracoronary stenting and angiographic results: strut thickness effect on restenosis outcome (ISAR-STEREO) trial
A Kastrati1, J Mehilli, J Dirschinger
1Deutsches Herzzentrum, Munich, Germany. kastrati@dhm.mhn.de
Insights
Using thinner coronary stents significantly reduces restenosis after stenting procedures. This finding offers improved outcomes for patients undergoing percutaneous coronary intervention.
Area of Science:
- Cardiovascular Medicine
- Interventional Cardiology
- Biomedical Engineering
Background:
- Coronary stenting is limited by thrombogenicity and smooth muscle cell proliferation from metal struts.
- Evaluating reduced strut thickness in coronary stents may improve clinical and angiographic outcomes.
Purpose of the Study:
- To assess if thinner coronary stent struts are associated with better follow-up results.
- To compare angiographic and clinical outcomes between thin-strut and thick-strut coronary stents.
Main Methods:
- A randomized, multicenter study involving 651 patients with coronary lesions.
- Patients received either a thin-strut (50 microm) or thick-strut (140 microm) stent.
- Primary endpoint: angiographic restenosis; Secondary endpoints: reintervention rates and death/myocardial infarction rates at 1 year.
Main Results:
- Angiographic restenosis was lower in the thin-strut group (15.0%) compared to the thick-strut group (25.8%).
- Clinical restenosis, indicated by reintervention rates, was also significantly reduced with thin-strut stents (8.6% vs. 13.8%).
- No significant difference was found in the combined rate of death and myocardial infarction at 1 year.
Conclusions:
- Thin-strut coronary stents significantly decrease both angiographic and clinical restenosis.
- These findings have important implications for percutaneous coronary interventions, suggesting thinner struts improve patient outcomes.
Background:
Increased thrombogenicity and smooth muscle cell proliferative response induced by the metal struts compromise the advantages of coronary stenting. The objective of this randomized, multicenter study was to assess whether a reduced strut thickness of coronary stents is associated with improved follow-up angiographic and clinical results.
Methods And Results:
A total of 651 patients with coronary lesions situated in native vessels >2.8 mm in diameter were randomly assigned to receive 1 of 2 commercially available stents of comparable design but different thickness: 326 patients to the thin-strut stent (strut thickness of 50 microm) and 325 patients to the thick-strut stent (strut thickness of 140 microm). The primary end point was the angiographic restenosis (>/=50% diameter stenosis at follow-up angiography). Secondary end points were the incidence of reinterventions due to restenosis-induced ischemia and the combined rate of death and myocardial infarctions at 1 year. The incidence of angiographic restenosis was 15.0% in the thin-strut group and 25.8% in the thick-strut group (relative risk, 0.58; 95% CI, 0.39 to 0.87; P=0.003). Clinical restenosis was also significantly reduced, with a reintervention rate of 8.6% among thin-strut patients and 13.8% among thick-strut patients (relative risk, 0.62; 95% CI, 0.39 to 0.99; P=0.03). No difference was observed in the combined 1-year rate of death and myocardial infarction.
Conclusions:
The use of a thinner-strut device is associated with a significant reduction of angiographic and clinical restenosis after coronary artery stenting. These findings may have relevant implications for the currently most widely used percutaneous coronary intervention.
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