Literature DB >> 27639735

Bioresorbable vascular scaffold radial expansion and conformation compared to a metallic platform: insights from in vitro expansion in a coronary artery lesion model.

Nicolas Foin1, Renick Lee, Christos Bourantas, Alessio Mattesini, Nicole Soh, Jie En Lim, Ryo Torii, Jaryl Ng, Leo Hwa Liang, Gianluca Caiazzo, Enrico Fabris, Ismail Dogu Kilic, Yoshinobu Onuma, Adrian F Low, Sukh Nijjer, Sayan Sen, Ricardo Petraco, Rasha Al Lamee, Justin E Davies, Carlo Di Mario, Philip Wong, Patrick W Serruys.   

Abstract

AIMS: This study aimed to compare the acute expansion behaviour of a polymer-based bioresorbable scaffold and a second-generation metallic DES platform in a realistic coronary artery lesion model. Experimental mechanical data with conventional methods have so far shown little difference between metallic stents and currently available polymer-based bioresorbable scaffolds (BRS). Nevertheless, differences in acute results have been observed in clinical studies comparing BRS directly with metallic DES platforms. METHODS AND
RESULTS: We examined the expansion behaviour of the bioresorbable vascular scaffold (3.0×18 mm Absorb BVS; Abbott Vascular, Santa Clara, CA, USA) and a metallic DES (3.0×18 mm XIENCE Prime; Abbott Vascular) after expansion at 37°C using identical coronary artery stenosis models (in total 12 experiments were performed). Device expansion was compared during balloon inflation and after deflation using microscopy to allow assessment of plaque recoil. Minimal lumen diameter (MLD) and minimal lumen area (MLA) and stent eccentricity were quantified from optical coherence tomography (OCT) imaging at nominal diameter and after post-dilation at 18 atm. The MLA in the models with BVS deployed was 4.92±0.17 mm² while in the metallic DES it was 5.40±0.13 mm2 (p=0.02) at nominal pressure (NP), and 5.41±0.20 and 6.07±0.25 mm2 (p=0.02), respectively, after expansion at 18 atm. Stent eccentricity index at the MLA was 0.71±0.02 in BVS compared to 0.81±0.02 in the metal stent at NP (p=0.004), and 0.73±0.03 compared to 0.75±0.02 at 18 atm (p=0.39).
CONCLUSIONS: Results obtained in this in vitro lesion model were comparable to the results in randomised clinical trials comparing BVS and XIENCE stents in vivo. Such models may be useful in future BRS developments to predict their acute response in vivo in eccentric lesions.

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Year:  2016        PMID: 27639735     DOI: 10.4244/EIJV12I7A138

Source DB:  PubMed          Journal:  EuroIntervention        ISSN: 1774-024X            Impact factor:   6.534


  4 in total

Review 1.  Mechanical behavior of polymer-based vs. metallic-based bioresorbable stents.

Authors:  Hui Ying Ang; Ying Ying Huang; Soo Teik Lim; Philip Wong; Michael Joner; Nicolas Foin
Journal:  J Thorac Dis       Date:  2017-08       Impact factor: 2.895

Review 2.  Bioresorbable Vascular Scaffold Korean Expert Panel Report.

Authors:  Jung Min Ahn; Duk Woo Park; Sung Jin Hong; Young Keun Ahn; Joo Yong Hahn; Won Jang Kim; Soon Jun Hong; Chang Wook Nam; Do Yoon Kang; Seung Yul Lee; Woo Jung Chun; Jung Ho Heo; Deok Kyu Cho; Jin Won Kim; Sung Ho Her; Sang Wook Kim; Sang Yong Yoo; Myeong Ki Hong; Seung Jea Tahk; Kee Sik Kim; Moo Hyun Kim; Yangsoo Jang; Seung Jung Park
Journal:  Korean Circ J       Date:  2017-11-06       Impact factor: 3.243

3.  Mechanical performance and healing patterns of the novel sirolimus-eluting bioresorbable Fantom scaffold: 6-month and 9-month follow-up by optical coherence tomography in the FANTOM II study.

Authors:  Jo Krogsgaard Simonsen; Emil Nielsen Holck; Didier Carrié; Norbert Frey; Matthias Lutz; Joachim Weber-Albers; Dariusz Dudek; Bernard Chevalier; Joost Daemen; Jouke Dijkstra; Camilla Fox Maule; Omeed Neghabat; Jens Flensted Lassen; Jeffrey Anderson; Evald Høj Christiansen; Alexandre Abizaid; Niels Ramsing Holm
Journal:  Open Heart       Date:  2019-02-28

4.  Mechanical properties of the drug-eluting bioresorbable magnesium scaffold compared with polymeric scaffolds and a permanent metallic drug-eluting stent.

Authors:  Trine Ø Barkholt; Bruce Webber; Niels R Holm; John A Ormiston
Journal:  Catheter Cardiovasc Interv       Date:  2019-11-11       Impact factor: 2.692

  4 in total

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