Published January 2017 | Version v1
Journal article

Evaluation of a Bioabsorbable Self-Expandable Vein Stent-Base Made of Poly(l-lactide) In Vitro and In Vivo

  • 1. Technical University of Denmark, Department of Micro- and Nanotechnology (Denmark)
  • 2. Purdue University, Weldon School of Biomedical Engineering (United States)
  • 3. Cook Research Incorporated (United States)
  • 4. Institut für Radiologie, Kantonsspital Winterthur (Switzerland)
  • 5. William Cook Europe (Denmark)

Description

PurposeThis study was designed to evaluate performance and tissue response to a self-expandable bioabsorbable vein stent-base cut from a tube with enhanced stiffness and strength in vitro and in vivo.MethodsA diamond-shaped stent-base was cut from a sequential biaxially strained poly(l-lactide) (PLLA) tube for optimized performance. The performance of the stent-base was evaluated in a finite element analysis model, and validation was attempted in vitro through a cyclic flat-plate compression and radial force measurement. The performance of the stent-base was tested in vivo using 3 sheep with 2 implants each for 2 and 3½ weeks, respectively.ResultsIn vitro the stent-base showed an elliptical deformation but no fractures. In vivo the stent-base showed adequate radial force and no migration. All implanted stent-bases showed multiple fractures not only at the predicted stress zones but at all connecting points. Fragments of the caudal stent-base stayed in the vein wall indicating sufficient tissue coverage to avoid embolization of the fractured stent pieces, whereas fragments from the cranial device remaining were few. Neointima formation was confirmed histologically at 2 and 3½ weeks.ConclusionA bioabsorbable self-expandable stent-base made from PLLA for large veins seems feasible, but over time, the PLLA used in this study appears too stiff and lacks the sufficient flexibility to move with the vena cava, causing multiple fractures.

Additional details

Identifiers

Publishing Information

Journal Title
Cardiovascular and Interventional Radiology
Journal Volume
40
Journal Issue
1
Journal Page Range
p. 112-119
ISSN
0174-1551
CODEN
CAIRDG

Conference

Title
Britisch Society of Interventional Radiology 2016 annual meeting
Acronym
BSIR 2016
Dates
15-17 Nov 2016
Place
Manchester (United Kingdom)

Optional Information

Copyright
Copyright (c) 2017 Springer Science+Business Media New York and the Cardiovascular and Interventional Radiological Society of Europe (CIRSE)
Notes
http://www.springer-ny.com