Background: The newly developed Nobori coronary stent coated with a bioresorbable polymer, polylactic acid, and the antiproliferative agent Biolimus A9 has the potential to reduce restenosis by suppressing neointima formation.
Methods And Results: We conducted a randomized (2:1), controlled trial comparing the Biolimus A9-eluting stent Nobori and the paclitaxel-eluting stent Taxus Liberté, in 243 patients (153 Nobori and 90 Taxus) at 29 centers in Europe, Asia, and Australia. Patients with previously untreated lesions in up to 2 native coronary arteries were considered for enrollment. The primary end point was in-stent late loss at 9 months, whereas secondary end points included other quantitative coronary angiography parameters, such as in-segment late loss and the rate of restenosis as well as key intravascular ultrasound parameters. Clinical secondary end points were stent thrombosis and composite of major adverse cardiac events comprising death, myocardial infarction, and target vessel revascularization. At 9 months, the in-stent late loss was significantly lower in the Nobori group compared with the Taxus group (0.11+/-0.30 mm versus 0.32+/-0.50 mm) reaching both the primary hypothesis of noninferiority of Nobori stent versus Taxus Liberté stent (P<0.001) and the secondary hypothesis of superiority (P=0.001). This finding was confirmed by a significant reduction in binary restenosis from 6.2% in Taxus to 0.7% in Nobori (P=0.02) and neointimal volume obstruction, detected by intravascular ultrasound, from 5.5+/-7.2% in Taxus to 1.8+/-5.2% in Nobori (P=0.01). The major adverse cardiac events rate was 4.6% in the Nobori and 5.6% in the Taxus cohort of patients. The stent thrombosis rate was 0% in the Nobori arm and 4.4% in the Taxus arm.
Conclusions: The NOBORI 1 clinical trial confirmed its primary hypothesis--noninferiority of the Nobori Biolimus A9-eluting stent versus the Taxus Liberté stent in reducing neointimal proliferation. Both stents showed a low major adverse cardiac events rate in the studied population.
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http://dx.doi.org/10.1161/CIRCINTERVENTIONS.108.823443 | DOI Listing |
Neurol Sci
January 2025
Neuroradiology Unit, Azienda Unità Sanitaria Locale-IRCCS di Reggio Emilia, Via Amendola 2, Reggio Emilia, 42122, Italy.
Introduction: Large artery atherosclerosis is a relevant cause of ischemic stroke. Beyond carotid artery stenosis ≥ 50%, causative in etiological classification of stroke, non-stenosing plaques are an increasingly reported cause of stroke with embolic pattern.
Methods: We are presenting the case of a 56 years old woman presenting with a first symptomatic multifocal ischemic stroke in the right internal carotid artery (ICA) territory on 2018 and a finding of asymptomatic past vascular injury in the same vascular territory on neuroimaging studies.
Prog Cardiovasc Dis
December 2024
University of Virginia, Division of Cardiovascular Medicine, Department of Medicine, Charlottesville, VA 22901, United States of America. Electronic address:
Revascularization has been demonstrated to be clearly superior to medical therapy for significant unprotected left main coronary artery (LMCA) disease. Coronary artery bypass graft surgery (CABG) has a class 1 indication in both the American and European society guidelines for the treatment of LMCA disease. However, for the population of patients who are declined CABG after a heart team evaluation, percutaneous coronary interventional (PCI) may be an efficacious alternative.
View Article and Find Full Text PDFCatheter Cardiovasc Interv
January 2025
Center for Structural Heart Disease, Henry Ford Health System, Detroit, Michigan, USA.
Background: Protruding coronary artery stents can adversely affect transcatheter aortic valve replacement (TAVR) procedure. Current evidence on the topic is limited.
Aims: We aim to study the clinical feasibility and safety of flaring of protruding coronary artery stents before TAVR to reduce interaction with transcatheter heart valves.
Front Bioeng Biotechnol
December 2024
School of Aeronautic Science and Engineering, Beihang University, Beijing, China.
Introduction: In-stent restenosis remains a significant challenge in coronary artery interventions. This study aims to explore the relationship between exercise intensity and stent design, focusing on the coupled response of the stent structure and hemodynamics at different exercise intensities.
Methods: A coupled balloon-stent-plaque-artery model and a fluid domain model reflecting structural deformation were developed to investigate the interaction between coronary stents and stenotic vessels, as well as their impact on hemodynamics.
The broad spectrum of clinical manifestations caused by peripheral arterial disease [PAD] and the morphologic heterogeneity of associated atherosclerotic lesions present a considerable management challenge. Endovascular interventions are recognized an effective treatment for PAD. Within this revascularization strategy the role of atherectomy debulking modalities continue to evolve.
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