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Development of a Shape-Memory Tube to Prevent Vascular Stenosis

Authors
Shin, Yong CheolLee, Jung BokKim, Dae-HyunKim, TaeyoungAlexander, GrantShin, Young MinPark, Ju YoungBaek, SewoomYoon, Jeong-KeeLee, Yong JaeSeon, Gyeung MiLee, Mi HeeKang, Mi-LanJang, Woo SoonPark, Jong-ChulJun, Ho-WookKim, YongTaeSung, Hak-Joon
Issue Date
Oct-2019
Publisher
WILEY-V C H VERLAG GMBH
Keywords
computational fluid dynamics; nitric oxide-releasing peptide; shape memory polymer; vascular graft; vascular remodeling
Citation
ADVANCED MATERIALS, v.31, no.41
Journal Title
ADVANCED MATERIALS
Volume
31
Number
41
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/70014
DOI
10.1002/adma.201904476
ISSN
0935-9648
1521-4095
Abstract
Inserting a graft into vessels with different diameters frequently causes severe damage to the host vessels. Poor flow patency is an unresolved issue in grafts, particularly those with diameters less than 6 mm, because of vessel occlusion caused by disturbed blood flow following fast clotting. Herein, successful patency in the deployment of an approximate to 2 mm diameter graft into a porcine vessel is reported. A new library of property-tunable shape-memory polymers that prevent vessel damage by expanding the graft diameter circumferentially upon implantation is presented. The polymers undergo seven consecutive cycles of strain energy-preserved shape programming. Moreover, the new graft tube, which features a diffuser shape, minimizes disturbed flow formation and prevents thrombosis because its surface is coated with nitric-oxide-releasing peptides. Improved patency in a porcine vessel for 18 d is demonstrated while occlusive vascular remodeling occurs. These insights will help advance vascular graft design.
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Yoon, Jeongkee
생명공학대학 (시스템생명공학과)
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