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A new resorbable magnesium scaffold for de novo coronary lesions (DREAMS 3): one-year results of the BIOMAG-I firstin- human study

  • Michael Haude
  • , Adrian Wlodarczak
  • , René J. van der Schaaf
  • , Jan Torzewski
  • , Bert Ferdinande
  • , Javier Escaned
  • , Juan F. Iglesias
  • , Johan Bennett
  • , Gabor Toth
  • , Michael Joner
  • , Ralph Toelg
  • , Marcus Wiemer
  • , Göran Olivecrona
  • , Paul Vermeersch
  • , Hector M. Garcia-Garcia
  • , Ron Waksman
  • Lukaskrankenhaus Neuss
  • Miedziowe Centrum Zdrowia
  • Department of Internal Medicine
  • Cardiovascular Center Oberallgäu-Kempten
  • Ziekenhuis Oost-Limburg
  • Universidad Complutense de Madrid
  • Geneva University Hospitals
  • Leuven University Center for Metabolic Bone Diseases
  • Medical University of Graz
  • Partner Site Munich Heart Alliance
  • Segeberger Kliniken
  • Johannes Wesling Klinikum Minden
  • Lunds University Hospital
  • Interventional Cardiology ZNA Middelheim
  • Washington Hospital Center

Research output: Contribution to journalArticlepeer-review

60 Scopus citations

Abstract

Background: The third-generation coronary sirolimus-eluting magnesium scaffold, DREAMS 3G, is a further development of the DREAMS 2G (commercial name Magmaris), aiming to provide performance outcomes similar to drug-eluting stents (DES). Aims: The BIOMAG-I study aims to assess the safety and performance of this new-generation scaffold. Methods: This is a prospective, multicentre, first-in-human study with clinical and imaging follow-up scheduled at 6 and 12 months. The clinical follow-up will continue for 5 years. Results: A total of 116 patients with 117 lesions were enrolled. At 12 months, after completion of resorption, in-scaffold late lumen loss was 0.24±0.36 mm (median 0.19, interquartile range 0.06-0.36). The minimum lumen area was 4.95±2.24 mm by intravascular ultrasound and 4.68±2.32 mm by optical coherence tomography. Three target lesion failures were reported (2.6%, 95% confidence interval: 0.9-7.9), all clinically driven target lesion revascularisations. Cardiac death, target vessel myocardial infarction and definite or probable scaffold thrombosis were absent. Conclusions: Data at the end of the resorption period of DREAMS 3G showed that the third-generation bioresorbable magnesium scaffold is clinically safe and effective, making it a possible alternative to DES.

Original languageEnglish
Pages (from-to)E414-E422
JournalEuroIntervention
Volume19
Issue number5
DOIs
StatePublished - 2023

Keywords

  • NSTEMI
  • bioresorbable scaffolds
  • drug-eluting stent
  • stable angina

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