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Outcomes After Orbital Atherectomy of Severely Calcified Left Main Lesions: Analysis of the ORBIT II Study Comparison of 2 Different Drug-Coated Balloons in In-Stent Restenosis: The RESTORE ISR China Randomized Trial Orbital atherectomy for the treatment of small (2.5mm) severely calcified coronary lesions: ORBIT II sub-analysis Drug-Coated Balloon for De Novo Coronary Artery Disease: JACC State-of-the-Art Review A Notch3-Marked Subpopulation of Vascular Smooth Muscle Cells Is the Cell of Origin for Occlusive Pulmonary Vascular Lesions. In vivo comparison of lipid-rich plaque on near-infrared spectroscopy with histopathological analysis of coronary atherectomy specimens Effect of orbital atherectomy in calcified coronary artery lesions as assessed by optical coherence tomography One-Year Outcomes of Orbital Atherectomy of Long, Diffusely Calcified Coronary Artery Lesions Right ventricular expression of NT-proBNP adds predictive value to REVEAL score in patients with pulmonary arterial hypertension Healed coronary plaque rupture as a cause of rapid lesion progression: a case demonstrated with in vivo histopathology by directional coronary atherectomy

Original Research2017 Apr 1;119(7):978-982.

JOURNAL:Am J Cardiol. Article Link

Incidence and Management of Restenosis After Treatment of Unprotected Left Main Disease With Second-Generation Drug-Eluting Stents (from Failure in Left Main Study With 2nd Generation Stents-Cardiogroup III Study)

D'Ascenzo F, Chieffo A, Cerrato E et al. Keywords: Incidence; Restenosis; unprotected left main; second-generation drug-eluting stents

ABSTRACT


Incidence, predictors, and impact on prognosis of target lesion revascularization (TLR) for patients treated with second-generation drug-eluting stents (DESs) on unprotected left main (ULM) remain to be defined. The present study is a multicenter study including patients treated with a second-generation DES on ULM from June 2007 to January 2015. Rate of TLR was the primary end point. All cause death, myocardial infarction, target vessel revascularization, and stent thrombosis were the secondary end points. A total of 1,270 patients were enrolled: after a follow-up of 650 days (230 to 1,170), 47 (3.7%) of them underwent a re-percutaneous coronary intervention TLR on the left main, 22 during a planned angiographic follow-up. Extent of coronary artery disease was similar among groups (median value of Syntax of 27 ± 10 vs 26 ± 9, p = 0.45), as localization of the lesion in the ULM. Of patients reporting with TLR on ULM, 56% presented with a focal restenosis, 33% diffuse and 10% proliferative. At multivariate analysis, insulin-dependent diabetes mellitus increased risk of TLR (hazard ratio [HR] 2.0: 1.1 to 3.6, p = 0.04), whereas use of intravascular ultrasound resulted protective (HR 0.5: 0.3 to 0.9, p = 0.02). At follow-up, rates of cardiovascular death did not differ among the 2 groups (4% vs 4%, p = 0.95). At multivariate analysis, TLR on LM did not increase risk of all cause death (HR 0.4: 0.1 to 1.6, p = 0.22), whereas cardiogenic shock and III tertile of Syntax portended a worse prognosis (HR 4.5: 2.1 to 10.2, p = 0.01 and HR 1.4: 1.1 to 1.6, p = 0.03, respectively). In conclusion, repeated revascularization after implantation of second-generation DES on ULM represents an unfrequent event, being increased in insulin-dependent patients and reduced by intravascular ultrasound. Impact on prognosis remains neutral, being related to clinical presentation and extent of coronary artery disease.