Rapidly self-expandable polymeric Stents with a shape-memory property

被引:125
作者
Chen, Mei-Chin
Tsai, Hung-Wen
Chang, Yen
Lai, Wei-Yun
Mi, Fwu-Long
Liu, Chin-Tang
Wong, Hen-Sheng
Sung, Hsing-Wen [1 ]
机构
[1] Natl Tsing Hua Univ, Dept Chem Engn, Bioengn Program, Hsinchu 30013, Taiwan
[2] Natl Yang Ming Univ, Coll Med, Taipei, Taiwan
[3] Vet Gen Hosp, Div Cardiovasc Surg, Taichung, Taiwan
[4] Vanung Univ, Dept Biotechnol, Tao Yuan, Taiwan
关键词
D O I
10.1021/bm7004615
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
A novel biodegradable stent, made of chitosan films cross-linked with an epoxy compound, with a shape-memory property was developed. To reduce their crystallinity, glycerol and poly(ethylene oxide) were blended in the chitosan films. The mechanical properties of the prepared stent were studied using a commercially available metallic stent as a control. After blending, the ductility of the chitosan films was improved, and the compressive strength of the stent was significantly enhanced. The metallic stent could tolerate elastic deformations of 10% before becoming irreversibly deformed, while the polymeric stent was able to withstand deformations up to 30% and still regain its original configuration. The developed stent could rapidly expand ( similar to 150 s) from its crimped (temporary) to fully expanded (permanent) states stimulated by hydration, which is advantageous considering avoiding its migration during in vivo deployment. In the preliminary animal study, the implanted stent was found to be intact, and no thrombus formation was seen in the stent-implanted vessel. This degradable stent can be an attractive alternative to metallic stents and may serve as a useful vehicle for local drug delivery.
引用
收藏
页码:2774 / 2780
页数:7
相关论文
共 36 条
[1]
Self-assembled shape-memory fibers of triblock liquid-crystal polymers [J].
Ahir, SV ;
Tajbakhsh, AR ;
Terentjev, EM .
ADVANCED FUNCTIONAL MATERIALS, 2006, 16 (04) :556-560
[2]
Altered coronary flow properties in diffuse coronary artery ectasia [J].
Akyürek, Ö ;
Berkalp, B ;
Sayin, T ;
Kumbasar, D ;
Kervancioglu, C ;
Oral, D .
AMERICAN HEART JOURNAL, 2003, 145 (01) :66-72
[3]
Coated stents for the prevention of restenosis: Part I [J].
Babapulle, MN ;
Eisenberg, MJ .
CIRCULATION, 2002, 106 (21) :2734-2740
[4]
Swelling and mechanical properties of biopolymer hydrogels containing chitosan and bovine serum albumin [J].
Butler, Michael F. ;
Clark, Allan H. ;
Adams, Sarah .
BIOMACROMOLECULES, 2006, 7 (11) :2961-2970
[5]
A genipin-crosslinked gelatin membrane as wound-dressing material:: in vitro and in vivo studies [J].
Chang, WH ;
Chang, Y ;
Lai, PH ;
Sung, HW .
JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2003, 14 (05) :481-495
[6]
Miconazole-loaded 6-oxychitin-chitosan microcapsules [J].
Genta, I ;
Perugini, P ;
Modena, T ;
Pavanetto, F ;
Castelli, F ;
Muzzarelli, RAA ;
Muzzarelli, C ;
Conti, B .
CARBOHYDRATE POLYMERS, 2003, 52 (01) :11-18
[7]
Biodegradation of the copolymeric polylactide stent -: Long-term follow-up in a rabbit aorta model [J].
Hietala, EM ;
Salminen, US ;
Ståhls, A ;
Välimaa, T ;
Maasilta, P ;
Törmälä, P ;
Nieminen, MS ;
Harjula, ALJ .
JOURNAL OF VASCULAR RESEARCH, 2001, 38 (04) :361-369
[8]
Synthesis and characterization of chitosan-poly(acrylic acid) nanoparticles [J].
Hu, Y ;
Jiang, XQ ;
Ding, Y ;
Ge, HX ;
Yuan, YY ;
Yang, CZ .
BIOMATERIALS, 2002, 23 (15) :3193-3201
[9]
JOLLES, 1996, LYSOZYMES MODEL ENZY
[10]
Three-year follow-up after implantation of metallic coronary-artery stents [J].
Kimura, T ;
Yokoi, H ;
Nakagawa, Y ;
Tamura, T ;
Kaburagi, S ;
Sawada, Y ;
Sato, Y ;
Yokoi, H ;
Hamasaki, N ;
Nosaka, H ;
Nobuyoshi, M .
NEW ENGLAND JOURNAL OF MEDICINE, 1996, 334 (09) :561-566