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Crack prevention of biodegradable polymer coating on metal facilitated by a nano-coupled interlayer

Authors
Cho, YoungjinBach Quang VuBedair, Tarek M.Park, Bang JuJoung, Yoon KiHan, Dong Keun
Issue Date
Sep-2014
Publisher
SAGE PUBLICATIONS LTD
Keywords
Drug-eluting stent; cobalt-chromium; surface modification; polymer brush; nano-coupling; poly(D,L-lactide-co-glycolide)
Citation
JOURNAL OF BIOACTIVE AND COMPATIBLE POLYMERS, v.29, no.5, pp.515 - 526
Journal Title
JOURNAL OF BIOACTIVE AND COMPATIBLE POLYMERS
Volume
29
Number
5
Start Page
515
End Page
526
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/12360
DOI
10.1177/0883911514547094
ISSN
0883-9115
Abstract
Crack prevention of biodegradable polymer coatings on drug-eluting stents was investigated by introducing a nano-coupled layer at the interface between the metal surface and the polymer coating layer using surface-initiated ring-opening polymerization of e-caprolactone. Poly(D,L-lactide-co-glycolide) coating on cobalt-chromium control and ricinoleic acid-poly(caprolactone)grafted cobalt-chromium was carried out using electrospraying. The cracking of the biodegradable polymer coating on drug-eluting stents during ballooning was addressed by introducing a nano-coupled interlayer on the cobalt-chromium surface. The ricinoleic acid-poly(caprolactone) nano-coupled interlayer and poly(D,L-lactide-co-glycolide)-coated top layer were characterized using attenuated total reflection Fourier transform infrared, contact angle, ellipsometry, X-ray photoelectron spectroscopy, and atomic force microscopy. Based on scratch tests, the nano-coupled samples had stronger interfacial adhesion compared to the control sample without the nano-coupled layer. Scanning electron microscope images indicated that the cracking on the poly(D,L-lactide-co-glycolide) coating was addressed. Introducing a nano-coupling interlayer may be an important strategy to preventing polymer coating cracking on drug-eluting stents.
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반도체대학 (반도체·전자공학부)
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